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2020 | OriginalPaper | Buchkapitel

2. Research Background and Literature Review

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Abstract

MBR is a wastewater treatment equipment that combining membrane filtration process and activated sludge technology. Owning to its compact structure, high treatment efficiency and excellent effluent quality, MBR is widely used in urban sewage and industrial wastewater treatment.

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Literatur
1.
Zurück zum Zitat Abegglen C, Ospelt M, Siegrist H (2008) Biological nutrient removal in a small-scale MBR treating household wastewater. Water Res 42(1):338–346CrossRef Abegglen C, Ospelt M, Siegrist H (2008) Biological nutrient removal in a small-scale MBR treating household wastewater. Water Res 42(1):338–346CrossRef
2.
Zurück zum Zitat Abels C, Carstensen F, Wessling M (2013) Membrane processes in biorefinery applications. J Membr Sci 444:285–317CrossRef Abels C, Carstensen F, Wessling M (2013) Membrane processes in biorefinery applications. J Membr Sci 444:285–317CrossRef
3.
Zurück zum Zitat Agana BA, Reeve D, Orbell J (2012) The influence of an applied electric field during ceramic ultrafiltration of post-electrodeposition rinse wastewater. Water Res 46(11):3574–3584CrossRef Agana BA, Reeve D, Orbell J (2012) The influence of an applied electric field during ceramic ultrafiltration of post-electrodeposition rinse wastewater. Water Res 46(11):3574–3584CrossRef
4.
Zurück zum Zitat Ahmed Z, Lim B-R, Cho J, Song K-G, Kim K-P, Ahn K-H (2008) Biological nitrogen and phosphorus removal and changes in microbial community structure in a membrane bioreactor: effect of different carbon sources. Water Res 42(1):198–210CrossRef Ahmed Z, Lim B-R, Cho J, Song K-G, Kim K-P, Ahn K-H (2008) Biological nitrogen and phosphorus removal and changes in microbial community structure in a membrane bioreactor: effect of different carbon sources. Water Res 42(1):198–210CrossRef
5.
Zurück zum Zitat Akamatsu K, Lu W, Sugawara T, Nakao S (2010) Development of a novel fouling suppression system in membrane bioreactors using an intermittent electric field. Water Res 44(3):825–830CrossRef Akamatsu K, Lu W, Sugawara T, Nakao S (2010) Development of a novel fouling suppression system in membrane bioreactors using an intermittent electric field. Water Res 44(3):825–830CrossRef
6.
Zurück zum Zitat Akamatsu K, Yoshida Y, Suzaki T, Sakai Y, Nagamoto H, Nakao S (2012a) Development of a membrane–carbon cloth assembly for submerged membrane bioreactors to apply an intermittent electric field for fouling suppression. Sep Purif Technol 88:202–207 Akamatsu K, Yoshida Y, Suzaki T, Sakai Y, Nagamoto H, Nakao S (2012a) Development of a membrane–carbon cloth assembly for submerged membrane bioreactors to apply an intermittent electric field for fouling suppression. Sep Purif Technol 88:202–207
7.
Zurück zum Zitat Akamatsu K, Yoshida Y, Suzaki T, Sakai Y, Nagamoto H, Nakao Si (2012b) Development of a membrane–carbon cloth assembly for submerged membrane bioreactors to apply an intermittent electric field for fouling suppression. Sep Sci Technol 88:202–207 Akamatsu K, Yoshida Y, Suzaki T, Sakai Y, Nagamoto H, Nakao Si (2012b) Development of a membrane–carbon cloth assembly for submerged membrane bioreactors to apply an intermittent electric field for fouling suppression. Sep Sci Technol 88:202–207
8.
Zurück zum Zitat Al-Malack MH, Anderson GK (1996) Formation of dynamic membranes with crossflow microfiltration. J Membr Sci 112(2):287–296CrossRef Al-Malack MH, Anderson GK (1996) Formation of dynamic membranes with crossflow microfiltration. J Membr Sci 112(2):287–296CrossRef
9.
Zurück zum Zitat Al-Malack MH, Anderson GK, Almasi A (1998) Treatment of anoxic pond effluent using crossflow microfiltration. Water Res 32(12):3738–3746CrossRef Al-Malack MH, Anderson GK, Almasi A (1998) Treatment of anoxic pond effluent using crossflow microfiltration. Water Res 32(12):3738–3746CrossRef
10.
Zurück zum Zitat Ali MB, Rakib M, Laborie S, Viers P, Durand G (2004) Coupling of bipolar membrane electrodialysis and ammonia stripping for direct treatment of wastewaters containing ammonium nitrate. J Membr Sci 244(1–2):89–96CrossRef Ali MB, Rakib M, Laborie S, Viers P, Durand G (2004) Coupling of bipolar membrane electrodialysis and ammonia stripping for direct treatment of wastewaters containing ammonium nitrate. J Membr Sci 244(1–2):89–96CrossRef
11.
Zurück zum Zitat Alibardi L, Cossu R, Saleem M, Spagni A (2014) Development and permeability of a dynamic membrane for anaerobic wastewater treatment. Bioresour Technol 161:236–244CrossRef Alibardi L, Cossu R, Saleem M, Spagni A (2014) Development and permeability of a dynamic membrane for anaerobic wastewater treatment. Bioresour Technol 161:236–244CrossRef
12.
Zurück zum Zitat Asatekin A, Menniti A, Kang S, Elimelech M, Morgenroth E, Mayes AM (2006) Antifouling nanofiltration membranes for membrane bioreactors from self-assembling graft copolymers. J Membr Sci 285(1–2):81–89CrossRef Asatekin A, Menniti A, Kang S, Elimelech M, Morgenroth E, Mayes AM (2006) Antifouling nanofiltration membranes for membrane bioreactors from self-assembling graft copolymers. J Membr Sci 285(1–2):81–89CrossRef
13.
Zurück zum Zitat Bacchin P, Aimar P, Field RW (2006) Critical and sustainable fluxes: theory, experiments and applications. J Membr Sci 281(1–2):42–69CrossRef Bacchin P, Aimar P, Field RW (2006) Critical and sustainable fluxes: theory, experiments and applications. J Membr Sci 281(1–2):42–69CrossRef
14.
Zurück zum Zitat Bae J, Shin C, Lee E, Kim J, McCarty PL (2014) Anaerobic treatment of low-strength wastewater: a comparison between single and staged anaerobic fluidized bed membrane bioreactors. Bioresour Technol 165:75–80CrossRef Bae J, Shin C, Lee E, Kim J, McCarty PL (2014) Anaerobic treatment of low-strength wastewater: a comparison between single and staged anaerobic fluidized bed membrane bioreactors. Bioresour Technol 165:75–80CrossRef
15.
Zurück zum Zitat Bae T, Tak T (2005a) Effect of TiO2 nanoparticles on fouling mitigation of ultrafiltration membranes for activated sludge filtration. J Membr Sci 249(1):1–8 Bae T, Tak T (2005a) Effect of TiO2 nanoparticles on fouling mitigation of ultrafiltration membranes for activated sludge filtration. J Membr Sci 249(1):1–8
16.
Zurück zum Zitat Bae T, Tak T (2005b) Preparation of TiO2 self-assembled polymeric nanocomposite membranes and examination of their fouling mitigation effects in a membrane bioreactor system. J Membr Sci 266(1):1–5 Bae T, Tak T (2005b) Preparation of TiO2 self-assembled polymeric nanocomposite membranes and examination of their fouling mitigation effects in a membrane bioreactor system. J Membr Sci 266(1):1–5
17.
Zurück zum Zitat Bani-Melhem K, Elektorowicz M (2010a) Development of a novel submerged membrane electro-bioreactor (SMEBR): performance for fouling reduction. Environ Sci Technol 44(9):3298–3304CrossRef Bani-Melhem K, Elektorowicz M (2010a) Development of a novel submerged membrane electro-bioreactor (SMEBR): performance for fouling reduction. Environ Sci Technol 44(9):3298–3304CrossRef
18.
Zurück zum Zitat Bani-Melhem K, Elektorowicz M (2010b) Development of a novel submerged membrane electro-bioreactor (SMEBR): performance for fouling reduction. Environ Sci Technol 44(9):3298–3304CrossRef Bani-Melhem K, Elektorowicz M (2010b) Development of a novel submerged membrane electro-bioreactor (SMEBR): performance for fouling reduction. Environ Sci Technol 44(9):3298–3304CrossRef
19.
Zurück zum Zitat Bani-Melhem K, Elektorowicz M (2011) Performance of the submerged membrane electro-bioreactor (SMEBR) with iron electrodes for wastewater treatment and fouling reduction. J Membr Sci 379(1):434–439CrossRef Bani-Melhem K, Elektorowicz M (2011) Performance of the submerged membrane electro-bioreactor (SMEBR) with iron electrodes for wastewater treatment and fouling reduction. J Membr Sci 379(1):434–439CrossRef
20.
Zurück zum Zitat Bani-Melhem K, Smith E (2012) Grey water treatment by a continuous process of an electrocoagulation unit and a submerged membrane bioreactor system. Chem Eng J 198:201–210CrossRef Bani-Melhem K, Smith E (2012) Grey water treatment by a continuous process of an electrocoagulation unit and a submerged membrane bioreactor system. Chem Eng J 198:201–210CrossRef
21.
Zurück zum Zitat Belongia B, Haworth P, Baygents JC, Raghavan S (1999) Treatment of alumina and silica chemical mechanical polishing waste by electrodecantation and electrocoagulation. J Electrochem Soc 146(11):4124–4130CrossRef Belongia B, Haworth P, Baygents JC, Raghavan S (1999) Treatment of alumina and silica chemical mechanical polishing waste by electrodecantation and electrocoagulation. J Electrochem Soc 146(11):4124–4130CrossRef
22.
Zurück zum Zitat Blanpain-Avet P, Faille C, Delaplace G, Bénézech T (2011) Cell adhesion and related fouling mechanism on a tubular ceramic microfiltration membrane using Bacillus cereus spores. J Membr Sci 385–386:200–216CrossRef Blanpain-Avet P, Faille C, Delaplace G, Bénézech T (2011) Cell adhesion and related fouling mechanism on a tubular ceramic microfiltration membrane using Bacillus cereus spores. J Membr Sci 385–386:200–216CrossRef
23.
Zurück zum Zitat Böhm L, Drews A, Prieske H, Bérubé PR, Kraume M (2012) The importance of fluid dynamics for MBR fouling mitigation. Bioresour Technol 122:50–61CrossRef Böhm L, Drews A, Prieske H, Bérubé PR, Kraume M (2012) The importance of fluid dynamics for MBR fouling mitigation. Bioresour Technol 122:50–61CrossRef
24.
Zurück zum Zitat Borole AP, Reguera G, Ringeisen B, Wang ZW, Feng YJ, Kim BH (2011) Electroactive biofilms: current status and future research needs. Energy Environ Sci 4(12):4813–4834CrossRef Borole AP, Reguera G, Ringeisen B, Wang ZW, Feng YJ, Kim BH (2011) Electroactive biofilms: current status and future research needs. Energy Environ Sci 4(12):4813–4834CrossRef
25.
Zurück zum Zitat Brans G, Kromkamp J, Pek N, Gielen J, Heck J, van RCJM, van dSRGM, Schroën CGPH, Boom RM (2006) Evaluation of microsieve membrane design. J Membr Sci 278(1):344–348 Brans G, Kromkamp J, Pek N, Gielen J, Heck J, van RCJM, van dSRGM, Schroën CGPH, Boom RM (2006) Evaluation of microsieve membrane design. J Membr Sci 278(1):344–348
26.
Zurück zum Zitat Brown P, Ong SK, Lee Y-W (2011) Influence of anoxic and anaerobic hydraulic retention time on biological nitrogen and phosphorus removal in a membrane bioreactor. Desalination 270(1–3):227–232CrossRef Brown P, Ong SK, Lee Y-W (2011) Influence of anoxic and anaerobic hydraulic retention time on biological nitrogen and phosphorus removal in a membrane bioreactor. Desalination 270(1–3):227–232CrossRef
27.
Zurück zum Zitat Cao X, Huang X, Liang P, Xiao K, Zhou YJ, Zhang XY, Logan BE (2009) A new method for water desalination using microbial desalination cells. Environ Sci Technol 43(18):7148–7152CrossRef Cao X, Huang X, Liang P, Xiao K, Zhou YJ, Zhang XY, Logan BE (2009) A new method for water desalination using microbial desalination cells. Environ Sci Technol 43(18):7148–7152CrossRef
28.
Zurück zum Zitat Cha J, Choi S, Yu H, Kim H, Kim C (2010) Directly applicable microbial fuel cells in aeration tank for wastewater treatment. Bioelectrochemistry 78(1):72–79CrossRef Cha J, Choi S, Yu H, Kim H, Kim C (2010) Directly applicable microbial fuel cells in aeration tank for wastewater treatment. Bioelectrochemistry 78(1):72–79CrossRef
29.
Zurück zum Zitat Chae S, Ahn Y, Kang S, Shin H (2006) Mitigated membrane fouling in a vertical submerged membrane bioreactor (VSMBR). J Membr Sci 280(1):572–581CrossRef Chae S, Ahn Y, Kang S, Shin H (2006) Mitigated membrane fouling in a vertical submerged membrane bioreactor (VSMBR). J Membr Sci 280(1):572–581CrossRef
30.
Zurück zum Zitat Chen JP, Yang CZ, Zhou JH (2007) The effect of pulsed direct current field on the membrane flux of a new style of membrane bioreactor. Chem Eng Technol 30(9):1262–1265CrossRef Chen JP, Yang CZ, Zhou JH (2007) The effect of pulsed direct current field on the membrane flux of a new style of membrane bioreactor. Chem Eng Technol 30(9):1262–1265CrossRef
31.
Zurück zum Zitat Chen JP, Yang CZ, Zhou JH, Wang XY (2007) Study of the influence of the electric field on membrane flux of a new type of membrane bioreactor. Chem Eng J 128(2–3):177–180CrossRef Chen JP, Yang CZ, Zhou JH, Wang XY (2007) Study of the influence of the electric field on membrane flux of a new type of membrane bioreactor. Chem Eng J 128(2–3):177–180CrossRef
32.
Zurück zum Zitat Chen NK, Wintgens T, Melin T, Pronk F (2008) Microfiltration with silicon nitride microsieves and high frequency backpulsing. Desalination 224(1):88–97 Chen NK, Wintgens T, Melin T, Pronk F (2008) Microfiltration with silicon nitride microsieves and high frequency backpulsing. Desalination 224(1):88–97
33.
Zurück zum Zitat Chen X, Deng H (2012) Removal of humic acids from water by hybrid titanium-based electrocoagulation with ultrafiltration membrane processes. Desalination 300:51–57CrossRef Chen X, Deng H (2012) Removal of humic acids from water by hybrid titanium-based electrocoagulation with ultrafiltration membrane processes. Desalination 300:51–57CrossRef
34.
Zurück zum Zitat Cheng J, Zhu XP, Ni JR, Borthwick A (2010) Palm oil mill effluent treatment using a two-stage microbial fuel cells system integrated with immobilized biological aerated filters. Bioresour Technol 101(8):2729–2734CrossRef Cheng J, Zhu XP, Ni JR, Borthwick A (2010) Palm oil mill effluent treatment using a two-stage microbial fuel cells system integrated with immobilized biological aerated filters. Bioresour Technol 101(8):2729–2734CrossRef
35.
Zurück zum Zitat Cheong WS, Lee CH, Moon YH, Oh HS, Kim SR, Lee SH, Lee CH, Lee JK (2013) Isolation and identification of indigenous quorum quenching bacteria, Pseudomonas sp. 1A1, for biofouling control in MBR. Ind Eng Chem Res 52(31):10554–10560 Cheong WS, Lee CH, Moon YH, Oh HS, Kim SR, Lee SH, Lee CH, Lee JK (2013) Isolation and identification of indigenous quorum quenching bacteria, Pseudomonas sp. 1A1, for biofouling control in MBR. Ind Eng Chem Res 52(31):10554–10560
36.
Zurück zum Zitat Choi J, Ng H (2008) Effect of membrane type and material on performance of a submerged membrane bioreactor. Chemosphere 71(5):853–859CrossRef Choi J, Ng H (2008) Effect of membrane type and material on performance of a submerged membrane bioreactor. Chemosphere 71(5):853–859CrossRef
37.
Zurück zum Zitat Chu H, Cao D, Dong B, Qiang Z (2010) Bio-diatomite dynamic membrane reactor for micro-polluted surface water treatment. Water Res 44(5):1573–1579CrossRef Chu H, Cao D, Dong B, Qiang Z (2010) Bio-diatomite dynamic membrane reactor for micro-polluted surface water treatment. Water Res 44(5):1573–1579CrossRef
38.
Zurück zum Zitat Chu H, Zhang Y, Zhou X, Zhao Y, Dong B, Zhang H (2014) Dynamic membrane bioreactor for wastewater treatment: Operation, critical flux, and dynamic membrane structure. J Membr Sci 450:265–271CrossRef Chu H, Zhang Y, Zhou X, Zhao Y, Dong B, Zhang H (2014) Dynamic membrane bioreactor for wastewater treatment: Operation, critical flux, and dynamic membrane structure. J Membr Sci 450:265–271CrossRef
39.
Zurück zum Zitat Chu Y, Zhang D, Liu L, Qian Y, Li L (2013) Electrochemical degradation of m-cresol using porous carbon-nanotube-containing cathode and Ti/SnO2–Sb2O5–IrO2 anode: Kinetics, byproducts and biodegradability. J Hazard Mater 252:306–312CrossRef Chu Y, Zhang D, Liu L, Qian Y, Li L (2013) Electrochemical degradation of m-cresol using porous carbon-nanotube-containing cathode and Ti/SnO2–Sb2O5–IrO2 anode: Kinetics, byproducts and biodegradability. J Hazard Mater 252:306–312CrossRef
40.
Zurück zum Zitat Chuang CJ, Wu CY, Wu CC (2008) Combination of crossflow and electric field for microfiltration of protein/microbial cell suspensions. Desalination 233(1–3):295–302CrossRef Chuang CJ, Wu CY, Wu CC (2008) Combination of crossflow and electric field for microfiltration of protein/microbial cell suspensions. Desalination 233(1–3):295–302CrossRef
41.
Zurück zum Zitat Coats ER, Mockos A, Loge FJ (2011) Post-anoxic denitrification driven by PHA and glycogen within enhanced biological phosphorus removal. Bioresour Technol 102(2):1019–1027CrossRef Coats ER, Mockos A, Loge FJ (2011) Post-anoxic denitrification driven by PHA and glycogen within enhanced biological phosphorus removal. Bioresour Technol 102(2):1019–1027CrossRef
42.
Zurück zum Zitat Ćurko J, Matošić M, Korajlija Jakopović H, Mijatović I (2010) Nitrogen removal in submerged MBR with intermittent aeration. Desalin Water Treat 24(1–3):7–19CrossRef Ćurko J, Matošić M, Korajlija Jakopović H, Mijatović I (2010) Nitrogen removal in submerged MBR with intermittent aeration. Desalin Water Treat 24(1–3):7–19CrossRef
43.
Zurück zum Zitat Cusick RD, Kim Y, Logan BE (2012) Energy capture from thermolytic solutions in microbial reverse-electrodialysis cells. Science 335(6075):1474–1477CrossRef Cusick RD, Kim Y, Logan BE (2012) Energy capture from thermolytic solutions in microbial reverse-electrodialysis cells. Science 335(6075):1474–1477CrossRef
44.
Zurück zum Zitat Cusick RD, Logan BE (2012) Phosphate recovery as struvite within a single chamber microbial electrolysis cell. Bioresour Technol 107:110–115CrossRef Cusick RD, Logan BE (2012) Phosphate recovery as struvite within a single chamber microbial electrolysis cell. Bioresour Technol 107:110–115CrossRef
45.
Zurück zum Zitat Cusick RD, Ullery ML, Dempsey BA, Logan BE (2014) Electrochemical struvite precipitation from digestate with a fluidized bed cathode microbial electrolysis cell. Water Res 54:297–306CrossRef Cusick RD, Ullery ML, Dempsey BA, Logan BE (2014) Electrochemical struvite precipitation from digestate with a fluidized bed cathode microbial electrolysis cell. Water Res 54:297–306CrossRef
46.
Zurück zum Zitat de Lannoy C-Fo, Jassby D, Gloe K, Gordon AD, Wiesner MR (2013) Aquatic biofouling prevention by electrically charged nanocomposite polymer thin film membranes. Environ Sci Technol 47(6):2760–2768 de Lannoy C-Fo, Jassby D, Gloe K, Gordon AD, Wiesner MR (2013) Aquatic biofouling prevention by electrically charged nanocomposite polymer thin film membranes. Environ Sci Technol 47(6):2760–2768
47.
Zurück zum Zitat Dereli RK, Ersahin ME, Ozgun H, Ozturk I, Jeison D, van der Zee F, van Lier JB (2012) Potentials of anaerobic membrane bioreactors to overcome treatment limitations induced by industrial wastewaters. Bioresour Technol 122:160–170CrossRef Dereli RK, Ersahin ME, Ozgun H, Ozturk I, Jeison D, van der Zee F, van Lier JB (2012) Potentials of anaerobic membrane bioreactors to overcome treatment limitations induced by industrial wastewaters. Bioresour Technol 122:160–170CrossRef
48.
Zurück zum Zitat Donaghue A, Chaplin BP (2013) Effect of select organic compounds on perchlorate formation at boron-doped diamond film anodes. Environ Sci Technol 47(21):12391–12399CrossRef Donaghue A, Chaplin BP (2013) Effect of select organic compounds on perchlorate formation at boron-doped diamond film anodes. Environ Sci Technol 47(21):12391–12399CrossRef
49.
Zurück zum Zitat Drogui P, Elmaleh S, Rumeau M, Bernard C, Rambaud A (2001) Hydrogen peroxide production by water electrolysis: application to disinfection. J Appl Electrochem 31(8):877–882CrossRef Drogui P, Elmaleh S, Rumeau M, Bernard C, Rambaud A (2001) Hydrogen peroxide production by water electrolysis: application to disinfection. J Appl Electrochem 31(8):877–882CrossRef
50.
Zurück zum Zitat Duca M, Koper MT (2012) Powering denitrification: the perspectives of electrocatalytic nitrate reduction. Energy Environ Sci Technol 5(12):9726–9742CrossRef Duca M, Koper MT (2012) Powering denitrification: the perspectives of electrocatalytic nitrate reduction. Energy Environ Sci Technol 5(12):9726–9742CrossRef
51.
Zurück zum Zitat Enevoldsen AD, Hansen EB, Jonsson G (2007) Electro-ultrafiltration of industrial enzyme solutions. J Membr Sci 299(1–2):28–37CrossRef Enevoldsen AD, Hansen EB, Jonsson G (2007) Electro-ultrafiltration of industrial enzyme solutions. J Membr Sci 299(1–2):28–37CrossRef
52.
Zurück zum Zitat Ersahin ME, Ozgun H, Dereli RK, Ozturk I, Roest K, van Lier JB (2012) A review on dynamic membrane filtration: Materials, applications and future perspectives. Bioresour Technol 122:196–206CrossRef Ersahin ME, Ozgun H, Dereli RK, Ozturk I, Roest K, van Lier JB (2012) A review on dynamic membrane filtration: Materials, applications and future perspectives. Bioresour Technol 122:196–206CrossRef
53.
Zurück zum Zitat Ersahin ME, Ozgun H, Tao Y, van Lier JB (2014) Applicability of dynamic membrane technology in anaerobic membrane bioreactors. Water Res 48:420–429CrossRef Ersahin ME, Ozgun H, Tao Y, van Lier JB (2014) Applicability of dynamic membrane technology in anaerobic membrane bioreactors. Water Res 48:420–429CrossRef
54.
Zurück zum Zitat Estrada AL, Li YY, Wang A (2012) Biodegradability enhancement of wastewater containing cefalexin by means of the electro-Fenton oxidation process. J Hazard Mater 227:41–48CrossRef Estrada AL, Li YY, Wang A (2012) Biodegradability enhancement of wastewater containing cefalexin by means of the electro-Fenton oxidation process. J Hazard Mater 227:41–48CrossRef
55.
Zurück zum Zitat Fan B, Huang X (2002) Characteristics of a self-forming dynamic membrane coupled with a bioreactor for municipal wastewater treatment. Environ Sci Technol 36(23):5245–5251CrossRef Fan B, Huang X (2002) Characteristics of a self-forming dynamic membrane coupled with a bioreactor for municipal wastewater treatment. Environ Sci Technol 36(23):5245–5251CrossRef
56.
Zurück zum Zitat Fan F, Zhou H (2007) Interrelated effects of aeration and mixed liquor fractions on membrane fouling for submerged membrane bioreactor processes in wastewater treatment. Environ Sci Technol 41(7):2523–2528CrossRef Fan F, Zhou H (2007) Interrelated effects of aeration and mixed liquor fractions on membrane fouling for submerged membrane bioreactor processes in wastewater treatment. Environ Sci Technol 41(7):2523–2528CrossRef
57.
Zurück zum Zitat Fischer F, Bastian C, Happe M, Mabillard E, Schmidt N (2011) Microbial fuel cell enables phosphate recovery from digested sewage sludge as struvite. Bioresour Technol 102(10):5824–5830CrossRef Fischer F, Bastian C, Happe M, Mabillard E, Schmidt N (2011) Microbial fuel cell enables phosphate recovery from digested sewage sludge as struvite. Bioresour Technol 102(10):5824–5830CrossRef
58.
Zurück zum Zitat Forrestal C, Xu P, Jenkins PE, Ren Z (2012) Microbial desalination cell with capacitive adsorption for ion migration control. Bioresour Technol 120:332–336CrossRef Forrestal C, Xu P, Jenkins PE, Ren Z (2012) Microbial desalination cell with capacitive adsorption for ion migration control. Bioresour Technol 120:332–336CrossRef
59.
Zurück zum Zitat Forrestal C, Xu P, Ren ZY (2012) Sustainable desalination using a microbial capacitive desalination cell. Energy Environ Sci 5(5):7161–7167CrossRef Forrestal C, Xu P, Ren ZY (2012) Sustainable desalination using a microbial capacitive desalination cell. Energy Environ Sci 5(5):7161–7167CrossRef
60.
Zurück zum Zitat Fu L, You SJ, Yang FL, Gao MM, Fang XH, Zhang GQ (2010) Synthesis of hydrogen peroxide in microbial fuel cell. J Chem Technol Biotechnol 85(5):715–719CrossRef Fu L, You SJ, Yang FL, Gao MM, Fang XH, Zhang GQ (2010) Synthesis of hydrogen peroxide in microbial fuel cell. J Chem Technol Biotechnol 85(5):715–719CrossRef
61.
Zurück zum Zitat Fu L, You SJ, Zhang GQ, Yang FL, Fang XH (2010) Degradation of azo dyes using in-situ fenton reaction incorporated into H2O2-producing microbial fuel cell. Chem Eng J 160(1):164–169CrossRef Fu L, You SJ, Zhang GQ, Yang FL, Fang XH (2010) Degradation of azo dyes using in-situ fenton reaction incorporated into H2O2-producing microbial fuel cell. Chem Eng J 160(1):164–169CrossRef
62.
Zurück zum Zitat Fuchs W, Resch C, Kernstock M, Mayer M, Schoeberl P, Braun R (2005) Influence of operational conditions on the performance of a mesh filter activated sludge process. Water Res 39(5):803–810CrossRef Fuchs W, Resch C, Kernstock M, Mayer M, Schoeberl P, Braun R (2005) Influence of operational conditions on the performance of a mesh filter activated sludge process. Water Res 39(5):803–810CrossRef
63.
Zurück zum Zitat Galama A, Daubaras G, Burheim O, Rijnaarts H, Post J (2014) Seawater electrodialysis with preferential removal of divalent ions. J Membr Sci 452:219–228CrossRef Galama A, Daubaras G, Burheim O, Rijnaarts H, Post J (2014) Seawater electrodialysis with preferential removal of divalent ions. J Membr Sci 452:219–228CrossRef
64.
Zurück zum Zitat Gamage NP, Chellam S (2013) Mechanisms of physically irreversible fouling during surface water microfiltration and mitigation by aluminum electroflotation pretreatment. Environ Sci Technol 48(2):1148–1157CrossRef Gamage NP, Chellam S (2013) Mechanisms of physically irreversible fouling during surface water microfiltration and mitigation by aluminum electroflotation pretreatment. Environ Sci Technol 48(2):1148–1157CrossRef
65.
Zurück zum Zitat Gleeson T, Wada Y, Bierkens MFP, van Beek LPH (2012) Water balance of global aquifers revealed by groundwater footprint. Nature 488:197CrossRef Gleeson T, Wada Y, Bierkens MFP, van Beek LPH (2012) Water balance of global aquifers revealed by groundwater footprint. Nature 488:197CrossRef
66.
Zurück zum Zitat Grant SB, Saphores JD, Feldman DL, Hamilton AJ, Fletcher TD, Cook PL, Stewardson M, Sanders BF, Levin LA, Ambrose RF (2012) Taking the “waste” out of “wastewater” for human water security and ecosystem sustainability. Science 337(6095):681–686 Grant SB, Saphores JD, Feldman DL, Hamilton AJ, Fletcher TD, Cook PL, Stewardson M, Sanders BF, Levin LA, Ambrose RF (2012) Taking the “waste” out of “wastewater” for human water security and ecosystem sustainability. Science 337(6095):681–686
67.
Zurück zum Zitat Groves GR, Buckley CA, Cox JM, Kirk A, Macmillan CD, Simpson MJ (1983) Dynamic membrane ultrafiltration and hyperfiltration for the treatment of industrial effluents for water reuse. Desalination 47(1):305–312CrossRef Groves GR, Buckley CA, Cox JM, Kirk A, Macmillan CD, Simpson MJ (1983) Dynamic membrane ultrafiltration and hyperfiltration for the treatment of industrial effluents for water reuse. Desalination 47(1):305–312CrossRef
68.
Zurück zum Zitat Guglielmi G, Chiarani D, Judd SJ, Andreottola G (2007) Flux criticality and sustainability in a hollow fibre submerged membrane bioreactor for municipal wastewater treatment. J Membr Sci 289(1–2):241–248CrossRef Guglielmi G, Chiarani D, Judd SJ, Andreottola G (2007) Flux criticality and sustainability in a hollow fibre submerged membrane bioreactor for municipal wastewater treatment. J Membr Sci 289(1–2):241–248CrossRef
69.
Zurück zum Zitat Harnisch F, Schröder U (2010) From MFC to MXC: chemical and biological cathodes and their potential for microbial bioelectrochemical systems. Chem Soc Rev 39(11):4433–4448CrossRef Harnisch F, Schröder U (2010) From MFC to MXC: chemical and biological cathodes and their potential for microbial bioelectrochemical systems. Chem Soc Rev 39(11):4433–4448CrossRef
70.
Zurück zum Zitat Hasan SW, Elektorowicz M, Oleszkiewicz JA (2012) Correlations between trans-membrane pressure (TMP) and sludge properties in submerged membrane electro-bioreactor (SMEBR) and conventional membrane bioreactor (MBR). Bioresour Technol 120:199–205CrossRef Hasan SW, Elektorowicz M, Oleszkiewicz JA (2012) Correlations between trans-membrane pressure (TMP) and sludge properties in submerged membrane electro-bioreactor (SMEBR) and conventional membrane bioreactor (MBR). Bioresour Technol 120:199–205CrossRef
71.
Zurück zum Zitat Hasan SW, Elektorowicz M, Oleszkiewicz JA (2014) Start-up period investigation of pilot-scale submerged membrane electro-bioreactor (SMEBR) treating raw municipal wastewater. Chemosphere 97:71–77CrossRef Hasan SW, Elektorowicz M, Oleszkiewicz JA (2014) Start-up period investigation of pilot-scale submerged membrane electro-bioreactor (SMEBR) treating raw municipal wastewater. Chemosphere 97:71–77CrossRef
72.
Zurück zum Zitat Henry JD Jr, Lawler LF, Kuo CA (1977) A solid/liquid separation process based on cross flow and electrofiltration. AlChE J 23(6):851–859CrossRef Henry JD Jr, Lawler LF, Kuo CA (1977) A solid/liquid separation process based on cross flow and electrofiltration. AlChE J 23(6):851–859CrossRef
73.
Zurück zum Zitat Hilal N, Ogunbiyi OO, Miles NJ, Nigmatullin R (2005) Methods employed for control of fouling in MF and UF membranes: a comprehensive review. Sep Sci Technol 40(10):1957–2005CrossRef Hilal N, Ogunbiyi OO, Miles NJ, Nigmatullin R (2005) Methods employed for control of fouling in MF and UF membranes: a comprehensive review. Sep Sci Technol 40(10):1957–2005CrossRef
74.
Zurück zum Zitat Hirooka K, Ichihashi O (2013) Phosphorus recovery from artificial wastewater by microbial fuel cell and its effect on power generation. Bioresour Technol 137:368–375CrossRef Hirooka K, Ichihashi O (2013) Phosphorus recovery from artificial wastewater by microbial fuel cell and its effect on power generation. Bioresour Technol 137:368–375CrossRef
75.
Zurück zum Zitat Hong S, Lee W, Oh H, Yeon K, Hwang B, Lee C, Chang I, Lee S (2007) The effects of intermittent aeration on the characteristics of bio-cake layers in a membrane bioreactor. Environ Sci Technol 41(17):6270–6276CrossRef Hong S, Lee W, Oh H, Yeon K, Hwang B, Lee C, Chang I, Lee S (2007) The effects of intermittent aeration on the characteristics of bio-cake layers in a membrane bioreactor. Environ Sci Technol 41(17):6270–6276CrossRef
76.
Zurück zum Zitat Horng RY, Shao H, Chang WK, Chang MC (2006) The feasibility study of using non-woven MBR for reduction of hydrolysed biosolids. Water Sci Technol 54(5):85–90CrossRef Horng RY, Shao H, Chang WK, Chang MC (2006) The feasibility study of using non-woven MBR for reduction of hydrolysed biosolids. Water Sci Technol 54(5):85–90CrossRef
77.
Zurück zum Zitat Huotari H, Trägårdh G, Huisman I (1999) Crossflow membrane filtration enhanced by an external DC electric field: a review. Chem Eng Res Des 77(5):461–468CrossRef Huotari H, Trägårdh G, Huisman I (1999) Crossflow membrane filtration enhanced by an external DC electric field: a review. Chem Eng Res Des 77(5):461–468CrossRef
78.
Zurück zum Zitat Huotari HM, Huisman IH, Trägårdh G (1999) Electrically enhanced crossflow membrane filtration of oily waste water using the membrane as a cathode. J Membr Sci 156(1):49–60CrossRef Huotari HM, Huisman IH, Trägårdh G (1999) Electrically enhanced crossflow membrane filtration of oily waste water using the membrane as a cathode. J Membr Sci 156(1):49–60CrossRef
79.
Zurück zum Zitat Hwang B, Lee W, Park P, Lee C, Chang I (2007) Effect of membrane fouling reducer on cake structure and membrane permeability in membrane bioreactor. J Membr Sci 288(1):149–156CrossRef Hwang B, Lee W, Park P, Lee C, Chang I (2007) Effect of membrane fouling reducer on cake structure and membrane permeability in membrane bioreactor. J Membr Sci 288(1):149–156CrossRef
80.
Zurück zum Zitat Ibeid S, Elektorowicz M, Oleszkiewicz J (2013) Modification of activated sludge properties caused by application of continuous and intermittent current. Water Res 47(2):903–910CrossRef Ibeid S, Elektorowicz M, Oleszkiewicz J (2013) Modification of activated sludge properties caused by application of continuous and intermittent current. Water Res 47(2):903–910CrossRef
81.
Zurück zum Zitat Jagannadh SN, Muralidhara H (1996) Electrokinetics methods to control membrane fouling. Ind Eng Chem Res 35(4):1133–1140CrossRef Jagannadh SN, Muralidhara H (1996) Electrokinetics methods to control membrane fouling. Ind Eng Chem Res 35(4):1133–1140CrossRef
82.
Zurück zum Zitat Jiang T, Kennedy MD, Yoo C, Nopens I, van der Meer W, Futselaar H, Schippers JC, Vanrolleghem PA (2007) Controlling submicron particle deposition in a side-stream membrane bioreactor: A theoretical hydrodynamic modelling approach incorporating energy consumption. J Membr Sci 297(1):141–151CrossRef Jiang T, Kennedy MD, Yoo C, Nopens I, van der Meer W, Futselaar H, Schippers JC, Vanrolleghem PA (2007) Controlling submicron particle deposition in a side-stream membrane bioreactor: A theoretical hydrodynamic modelling approach incorporating energy consumption. J Membr Sci 297(1):141–151CrossRef
83.
Zurück zum Zitat Jin L, Ong SL, Ng HY (2013) Fouling control mechanism by suspended biofilm carriers addition in submerged ceramic membrane bioreactors. J Membr Sci 427:250–258CrossRef Jin L, Ong SL, Ng HY (2013) Fouling control mechanism by suspended biofilm carriers addition in submerged ceramic membrane bioreactors. J Membr Sci 427:250–258CrossRef
84.
Zurück zum Zitat Kelly PT, He Z (2014) Nutrients removal and recovery in bioelectrochemical systems: a review. Bioresour Technol 153:351–360CrossRef Kelly PT, He Z (2014) Nutrients removal and recovery in bioelectrochemical systems: a review. Bioresour Technol 153:351–360CrossRef
85.
Zurück zum Zitat Kim J, Jung J, Yeom I, Aoh G (2007) Effect of fouling reduction by ozone backwashing in a microfiltration system with advanced new membrane material. Desalination 202(1):361–368CrossRef Kim J, Jung J, Yeom I, Aoh G (2007) Effect of fouling reduction by ozone backwashing in a microfiltration system with advanced new membrane material. Desalination 202(1):361–368CrossRef
86.
Zurück zum Zitat Kim J, Kim K, Ye H, Lee E, Shin C, McCarty PL, Bae J (2011) Anaerobic fluidized bed membrane bioreactor for wastewater treatment. Environ Sci Technol 45(2):576–581CrossRef Kim J, Kim K, Ye H, Lee E, Shin C, McCarty PL, Bae J (2011) Anaerobic fluidized bed membrane bioreactor for wastewater treatment. Environ Sci Technol 45(2):576–581CrossRef
87.
Zurück zum Zitat Kim J, Korshin GV, Frenkel AI, Velichenko AB (2006) Electrochemical and XAFS studies of effects of carbonate on the oxidation of arsenite. Environ Sci Technol 40(1):228–234CrossRef Kim J, Korshin GV, Frenkel AI, Velichenko AB (2006) Electrochemical and XAFS studies of effects of carbonate on the oxidation of arsenite. Environ Sci Technol 40(1):228–234CrossRef
88.
Zurück zum Zitat Kim J, Kwon D, Kim K, Hoffmann MR (2014) Electrochemical production of hydrogen coupled with the oxidation of arsenite. Environ Sci Technol 48(3):2059–2066CrossRef Kim J, Kwon D, Kim K, Hoffmann MR (2014) Electrochemical production of hydrogen coupled with the oxidation of arsenite. Environ Sci Technol 48(3):2059–2066CrossRef
89.
Zurück zum Zitat Kim S, Oh H, Jo S, Yeon K, Lee C, Lim D, Lee C, Lee J (2013) Biofouling control with bead-entrapped quorum quenching bacteria in membrane bioreactors: physical and biological effects. Environ Sci Technol 47(2):836–842CrossRef Kim S, Oh H, Jo S, Yeon K, Lee C, Lim D, Lee C, Lee J (2013) Biofouling control with bead-entrapped quorum quenching bacteria in membrane bioreactors: physical and biological effects. Environ Sci Technol 47(2):836–842CrossRef
90.
Zurück zum Zitat Kim Y, Logan BE (2013a) Microbial desalination cells for energy production and desalination. Desalination 308:122–130CrossRef Kim Y, Logan BE (2013a) Microbial desalination cells for energy production and desalination. Desalination 308:122–130CrossRef
91.
Zurück zum Zitat Kim Y, Logan BE (2013b) Simultaneous removal of organic matter and salt ions from saline wastewater in bioelectrochemical systems. Desalination 308:115–121CrossRef Kim Y, Logan BE (2013b) Simultaneous removal of organic matter and salt ions from saline wastewater in bioelectrochemical systems. Desalination 308:115–121CrossRef
92.
Zurück zum Zitat Kishihara S, Tamaki H, Fujii S, Komoto M (1989) Clarification of technical sugar solutions through a dynamic membrane formed on a porous ceramic tube. J Membr Sci 41:103–114CrossRef Kishihara S, Tamaki H, Fujii S, Komoto M (1989) Clarification of technical sugar solutions through a dynamic membrane formed on a porous ceramic tube. J Membr Sci 41:103–114CrossRef
93.
Zurück zum Zitat Le-Clech P, Chen V, Fane TAG (2006) Fouling in membrane bioreactors used in wastewater treatment. J Membr Sci 284(1):17–53CrossRef Le-Clech P, Chen V, Fane TAG (2006) Fouling in membrane bioreactors used in wastewater treatment. J Membr Sci 284(1):17–53CrossRef
94.
Zurück zum Zitat Lee J, Ahn W, Lee C (2001) Comparison of the filtration characteristics between attached and suspended growth microorganisms in submerged membrane bioreactor. Water Res 35(10):2435–2445CrossRef Lee J, Ahn W, Lee C (2001) Comparison of the filtration characteristics between attached and suspended growth microorganisms in submerged membrane bioreactor. Water Res 35(10):2435–2445CrossRef
95.
Zurück zum Zitat Lee W, Chang I, Hwang B, Park P, Lee C, Huang X (2007) Changes in biofilm architecture with addition of membrane fouling reducer in a membrane bioreactor. Process Biochem 42(4):655–661CrossRef Lee W, Chang I, Hwang B, Park P, Lee C, Huang X (2007) Changes in biofilm architecture with addition of membrane fouling reducer in a membrane bioreactor. Process Biochem 42(4):655–661CrossRef
96.
Zurück zum Zitat Li J, Li J, Wang H, Cheng B, He B, Yan F, Yang Y, Guo W, Ngo HH (2013) Electrocatalytic oxidation of n-propanol to produce propionic acid using an electrocatalytic membrane reactor. Chem Commun 49(40):4501–4503CrossRef Li J, Li J, Wang H, Cheng B, He B, Yan F, Yang Y, Guo W, Ngo HH (2013) Electrocatalytic oxidation of n-propanol to produce propionic acid using an electrocatalytic membrane reactor. Chem Commun 49(40):4501–4503CrossRef
97.
Zurück zum Zitat Li W, Sheng G, Wang Y, Liu X, Xu J, Yu H (2011) Filtration behaviors and biocake formation mechanism of mesh filters used in membrane bioreactors. Sep Purif Technol 81(3):472–479CrossRef Li W, Sheng G, Wang Y, Liu X, Xu J, Yu H (2011) Filtration behaviors and biocake formation mechanism of mesh filters used in membrane bioreactors. Sep Purif Technol 81(3):472–479CrossRef
98.
Zurück zum Zitat Liang S, Qi G, Xiao K, Sun J, Giannelis EP, Huang X, Elimelech M (2014) Organic fouling behavior of superhydrophilic polyvinylidene fluoride (PVDF) ultrafiltration membranes functionalized with surface-tailored nanoparticles: Implications for organic fouling in membrane bioreactors. J Membr Sci 463:94–101CrossRef Liang S, Qi G, Xiao K, Sun J, Giannelis EP, Huang X, Elimelech M (2014) Organic fouling behavior of superhydrophilic polyvinylidene fluoride (PVDF) ultrafiltration membranes functionalized with surface-tailored nanoparticles: Implications for organic fouling in membrane bioreactors. J Membr Sci 463:94–101CrossRef
99.
Zurück zum Zitat Liang Z, Das A, Beerman D, Hu Z (2010) Biomass characteristics of two types of submerged membrane bioreactors for nitrogen removal from wastewater. Water Res 44(11):3313–3320CrossRef Liang Z, Das A, Beerman D, Hu Z (2010) Biomass characteristics of two types of submerged membrane bioreactors for nitrogen removal from wastewater. Water Res 44(11):3313–3320CrossRef
100.
Zurück zum Zitat Lin H, Niu J, Xu J, Huang H, Li D, Yue Z, Feng C (2013a) Highly Efficient and Mild Electrochemical Mineralization of Long-Chain Perfluorocarboxylic Acids (C9–C10) by Ti/SnO2-Sb-Ce, Ti/SnO2-Sb/Ce-PbO2, and Ti/BDD Electrodes. Environ Sci Technol 47(22):13039–13046CrossRef Lin H, Niu J, Xu J, Huang H, Li D, Yue Z, Feng C (2013a) Highly Efficient and Mild Electrochemical Mineralization of Long-Chain Perfluorocarboxylic Acids (C9–C10) by Ti/SnO2-Sb-Ce, Ti/SnO2-Sb/Ce-PbO2, and Ti/BDD Electrodes. Environ Sci Technol 47(22):13039–13046CrossRef
101.
Zurück zum Zitat Lin H, Niu J, Xu J, Huang H, Li D, Yue Z, Feng C (2013b) Highly efficient and mild electrochemical mineralization of long-chain perfluorocarboxylic acids (C9–C10) by Ti/SnO2–Sb–Ce, Ti/SnO2–Sb/Ce–PbO2, and Ti/BDD electrodes. Environ Sci Technol 47(22):13039–13046CrossRef Lin H, Niu J, Xu J, Huang H, Li D, Yue Z, Feng C (2013b) Highly efficient and mild electrochemical mineralization of long-chain perfluorocarboxylic acids (C9–C10) by Ti/SnO2–Sb–Ce, Ti/SnO2–Sb/Ce–PbO2, and Ti/BDD electrodes. Environ Sci Technol 47(22):13039–13046CrossRef
102.
Zurück zum Zitat Lin H, Peng W, Zhang M, Chen J, Hong H, Zhang Y (2013) A review on anaerobic membrane bioreactors: applications, membrane fouling and future perspectives. Desalination 314:169–188CrossRef Lin H, Peng W, Zhang M, Chen J, Hong H, Zhang Y (2013) A review on anaerobic membrane bioreactors: applications, membrane fouling and future perspectives. Desalination 314:169–188CrossRef
103.
Zurück zum Zitat Lin H, Zhang M, Wang F, Meng F, Liao B-Q, Hong H, Chen J, Gao W (2014) A critical review of extracellular polymeric substances (EPSs) in membrane bioreactors: characteristics, roles in membrane fouling and control strategies. J Membr Sci 460:110–125CrossRef Lin H, Zhang M, Wang F, Meng F, Liao B-Q, Hong H, Chen J, Gao W (2014) A critical review of extracellular polymeric substances (EPSs) in membrane bioreactors: characteristics, roles in membrane fouling and control strategies. J Membr Sci 460:110–125CrossRef
104.
Zurück zum Zitat Lin Y-T, Sung M, Sanders PF, Marinucci A, Huang C (2007) Separation of nano-sized colloidal particles using cross-flow electro-filtration. Sep Purif Technol 58(1):138–147CrossRef Lin Y-T, Sung M, Sanders PF, Marinucci A, Huang C (2007) Separation of nano-sized colloidal particles using cross-flow electro-filtration. Sep Purif Technol 58(1):138–147CrossRef
105.
Zurück zum Zitat Liu H, Yang C, Pu W, Zhang J (2009) Formation mechanism and structure of dynamic membrane in the dynamic membrane bioreactor. Chem Eng J 148(2):290–295CrossRef Liu H, Yang C, Pu W, Zhang J (2009) Formation mechanism and structure of dynamic membrane in the dynamic membrane bioreactor. Chem Eng J 148(2):290–295CrossRef
106.
Zurück zum Zitat Liu L, Yuan Y, Li FB, Feng CH (2011) In-situ Cr(VI) reduction with electrogenerated hydrogen peroxide driven by iron-reducing bacteria. Bioresour Technol 102(3):2468–2473CrossRef Liu L, Yuan Y, Li FB, Feng CH (2011) In-situ Cr(VI) reduction with electrogenerated hydrogen peroxide driven by iron-reducing bacteria. Bioresour Technol 102(3):2468–2473CrossRef
107.
Zurück zum Zitat Liu XW, Wang YP, Huang YX, Sun XF, Sheng GP, Zeng RJ, Li F, Dong F, Wang SG, Tong ZH (2011) Integration of a microbial fuel cell with activated sludge process for energy-saving wastewater treatment: Taking a sequencing batch reactor as an example. Biotechnol Bioeng 108(6):1260–1267CrossRef Liu XW, Wang YP, Huang YX, Sun XF, Sheng GP, Zeng RJ, Li F, Dong F, Wang SG, Tong ZH (2011) Integration of a microbial fuel cell with activated sludge process for energy-saving wastewater treatment: Taking a sequencing batch reactor as an example. Biotechnol Bioeng 108(6):1260–1267CrossRef
108.
Zurück zum Zitat Liu Y, Liu Z, Zhang A, Chen Y, Wang X (2012) The role of EPS concentration on membrane fouling control: comparison analysis of hybrid membrane bioreactor and conventional membrane bioreactor. Desalination 305:38–43CrossRef Liu Y, Liu Z, Zhang A, Chen Y, Wang X (2012) The role of EPS concentration on membrane fouling control: comparison analysis of hybrid membrane bioreactor and conventional membrane bioreactor. Desalination 305:38–43CrossRef
109.
Zurück zum Zitat Loderer C, Wörle A, Fuchs W (2012) Influence of different mesh filter module configurations on effluent quality and long-term filtration performance. Environ Sci Technol 46(7):3844–3850CrossRef Loderer C, Wörle A, Fuchs W (2012) Influence of different mesh filter module configurations on effluent quality and long-term filtration performance. Environ Sci Technol 46(7):3844–3850CrossRef
110.
111.
Zurück zum Zitat Logan BE, Rabaey K (2012) Conversion of wastes into bioelectricity and chemicals by using microbial electrochemical technologies. Science 337(6095):686–690CrossRef Logan BE, Rabaey K (2012) Conversion of wastes into bioelectricity and chemicals by using microbial electrochemical technologies. Science 337(6095):686–690CrossRef
112.
Zurück zum Zitat Mahmoud A, Hoadley AF (2012) An evaluation of a hybrid ion exchange electrodialysis process in the recovery of heavy metals from simulated dilute industrial wastewater. Water Res 46(10):3364–3376CrossRef Mahmoud A, Hoadley AF (2012) An evaluation of a hybrid ion exchange electrodialysis process in the recovery of heavy metals from simulated dilute industrial wastewater. Water Res 46(10):3364–3376CrossRef
113.
Zurück zum Zitat Mameri N, Oussedik S, Yeddou R, Piron D, Belhocine D, Lounici H, Grib H (1999) Enhancement of ultrafiltration flux by coupling static turbulence promoter and electric field. Sep Sci Technol 17(3):203–211 Mameri N, Oussedik S, Yeddou R, Piron D, Belhocine D, Lounici H, Grib H (1999) Enhancement of ultrafiltration flux by coupling static turbulence promoter and electric field. Sep Sci Technol 17(3):203–211
114.
Zurück zum Zitat Manegold E (1937) The effectiveness of filtration, dialysis, electrolysis and their intercombinations as purification processes. Trans Faraday Soc 33:1088–1094CrossRef Manegold E (1937) The effectiveness of filtration, dialysis, electrolysis and their intercombinations as purification processes. Trans Faraday Soc 33:1088–1094CrossRef
115.
Zurück zum Zitat Marcinkowsky AE, Kraus KA, Phillips HO, Johnson JS, Shor AJ (1966) Hyperfiltration studies. IV. salt rejection by dynamically formed hydrous oxide membranes. J Am Chem Soc 88(24):5744–5746 Marcinkowsky AE, Kraus KA, Phillips HO, Johnson JS, Shor AJ (1966) Hyperfiltration studies. IV. salt rejection by dynamically formed hydrous oxide membranes. J Am Chem Soc 88(24):5744–5746
116.
Zurück zum Zitat Martinez-Huitle CA, Ferro S (2006) Electrochemical oxidation of organic pollutants for the wastewater treatment: direct and indirect processes. Chem Soc Rev 35(12):1324–1340CrossRef Martinez-Huitle CA, Ferro S (2006) Electrochemical oxidation of organic pollutants for the wastewater treatment: direct and indirect processes. Chem Soc Rev 35(12):1324–1340CrossRef
117.
Zurück zum Zitat Martinez-Sosa D, Helmreich B, Horn H (2012) Anaerobic submerged membrane bioreactor (AnSMBR) treating low-strength wastewater under psychrophilic temperature conditions. Process Biochem 47(5):792–798CrossRef Martinez-Sosa D, Helmreich B, Horn H (2012) Anaerobic submerged membrane bioreactor (AnSMBR) treating low-strength wastewater under psychrophilic temperature conditions. Process Biochem 47(5):792–798CrossRef
118.
Zurück zum Zitat McCarty PL, Bae J, Kim J (2011) Domestic wastewater treatment as a net energy producer–can this be achieved?, vol 45. ACS Publications. Environmental Science Technology, pp 7100–7106 McCarty PL, Bae J, Kim J (2011) Domestic wastewater treatment as a net energy producer–can this be achieved?, vol 45. ACS Publications. Environmental Science Technology, pp 7100–7106
119.
Zurück zum Zitat Mendoza RMO, Kan CC, Chuang SS, Pingul Ong SMB, Dalida MLP, Wan MW (2014) Feasibility studies on arsenic removal from aqueous solutions by electrodialysis. J Environ Sci Health, Part A 49(5):545–554CrossRef Mendoza RMO, Kan CC, Chuang SS, Pingul Ong SMB, Dalida MLP, Wan MW (2014) Feasibility studies on arsenic removal from aqueous solutions by electrodialysis. J Environ Sci Health, Part A 49(5):545–554CrossRef
120.
Zurück zum Zitat Meng F, Chae S-R, Drews A, Kraume M, Shin H-S, Yang F (2009) Recent advances in membrane bioreactors (MBRs): membrane fouling and membrane material. Water Res 43(6):1489–1512CrossRef Meng F, Chae S-R, Drews A, Kraume M, Shin H-S, Yang F (2009) Recent advances in membrane bioreactors (MBRs): membrane fouling and membrane material. Water Res 43(6):1489–1512CrossRef
121.
Zurück zum Zitat Meng F, Chae S-R, Shin H-S, Yang F, Zhou Z (2012) Recent advances in membrane bioreactors: configuration development, pollutant elimination, and sludge reduction. Environ Eng Sci 29(3):139–160CrossRef Meng F, Chae S-R, Shin H-S, Yang F, Zhou Z (2012) Recent advances in membrane bioreactors: configuration development, pollutant elimination, and sludge reduction. Environ Eng Sci 29(3):139–160CrossRef
122.
Zurück zum Zitat Meng F, Chae SR, Shin HS, Yang F (2012) Recent advances in membrane bioreactors: configuration development, pollutant elimination, and sludge reduction. Environ Eng Sci 29(3):139–160CrossRef Meng F, Chae SR, Shin HS, Yang F (2012) Recent advances in membrane bioreactors: configuration development, pollutant elimination, and sludge reduction. Environ Eng Sci 29(3):139–160CrossRef
123.
Zurück zum Zitat Meng F, Shi B, Yang F, Zhang H (2007) Effect of hydraulic retention time on membrane fouling and biomass characteristics in submerged membrane bioreactors. Bioprocess Biosyst Eng 30(5):359–367CrossRef Meng F, Shi B, Yang F, Zhang H (2007) Effect of hydraulic retention time on membrane fouling and biomass characteristics in submerged membrane bioreactors. Bioprocess Biosyst Eng 30(5):359–367CrossRef
124.
Zurück zum Zitat Meng F, Yang F (2007) Fouling mechanisms of deflocculated sludge, normal sludge, and bulking sludge in membrane bioreactor. J Membr Sci 305(1):48–56CrossRef Meng F, Yang F (2007) Fouling mechanisms of deflocculated sludge, normal sludge, and bulking sludge in membrane bioreactor. J Membr Sci 305(1):48–56CrossRef
125.
Zurück zum Zitat Meng F, Zhang H, Yang F, Liu L (2007) Characterization of cake layer in submerged membrane bioreactor. Environ Sci Technol 41(11):4065–4070CrossRef Meng F, Zhang H, Yang F, Liu L (2007) Characterization of cake layer in submerged membrane bioreactor. Environ Sci Technol 41(11):4065–4070CrossRef
126.
Zurück zum Zitat Meng Z, Yang F, Zhang X (2005) MBR focus: do nonwovens offer a cheaper option? Filtr Sep 42(5):28–30CrossRef Meng Z, Yang F, Zhang X (2005) MBR focus: do nonwovens offer a cheaper option? Filtr Sep 42(5):28–30CrossRef
127.
Zurück zum Zitat Min B, Angelidaki I (2008) Innovative microbial fuel cell for electricity production from anaerobic reactors. J Power Sources 180(1):641–647CrossRef Min B, Angelidaki I (2008) Innovative microbial fuel cell for electricity production from anaerobic reactors. J Power Sources 180(1):641–647CrossRef
128.
Zurück zum Zitat Modin O, Fukushi K (2012) Development and testing of bioelectrochemical reactors converting wastewater organics into hydrogen peroxide. Water Sci Technol 66(4):831–836CrossRef Modin O, Fukushi K (2012) Development and testing of bioelectrochemical reactors converting wastewater organics into hydrogen peroxide. Water Sci Technol 66(4):831–836CrossRef
129.
Zurück zum Zitat Modin O, Fukushi K, Rabaey K, Rozendal RA, Yamamoto K (2010) Bioelectrochemical hydrogen peroxide production–an opportunity for sustainable mitigation of membrane bioreactor fouling. Proc Water Environ Fed 2010(7):309–321CrossRef Modin O, Fukushi K, Rabaey K, Rozendal RA, Yamamoto K (2010) Bioelectrochemical hydrogen peroxide production–an opportunity for sustainable mitigation of membrane bioreactor fouling. Proc Water Environ Fed 2010(7):309–321CrossRef
130.
Zurück zum Zitat Mollah MYA, Schennach R, Parga JR, Cocke DL (2001) Electrocoagulation (EC)—science and applications. J Hazard Mater 84(1):29–41CrossRef Mollah MYA, Schennach R, Parga JR, Cocke DL (2001) Electrocoagulation (EC)—science and applications. J Hazard Mater 84(1):29–41CrossRef
131.
Zurück zum Zitat Monclus H, Sipma J, Ferrero G, Comas J, Rodriguez-Roda I (2010) Optimization of biological nutrient removal in a pilot plant UCT-MBR treating municipal wastewater during start-up. Desalination 250(2):592–597CrossRef Monclus H, Sipma J, Ferrero G, Comas J, Rodriguez-Roda I (2010) Optimization of biological nutrient removal in a pilot plant UCT-MBR treating municipal wastewater during start-up. Desalination 250(2):592–597CrossRef
132.
Zurück zum Zitat Moon SH, Yun SH (2014) Process integration of electrodialysis for a cleaner environment. Curr Opin Chem Eng 4:25–31CrossRef Moon SH, Yun SH (2014) Process integration of electrodialysis for a cleaner environment. Curr Opin Chem Eng 4:25–31CrossRef
133.
Zurück zum Zitat Morel A, Zuo KC, Xia X, Wei JC, Luo X, Liang P, Huang X (2012) Microbial desalination cells packed with ion-exchange resin to enhance water desalination rate. Bioresour Technol 118:43–48CrossRef Morel A, Zuo KC, Xia X, Wei JC, Luo X, Liang P, Huang X (2012) Microbial desalination cells packed with ion-exchange resin to enhance water desalination rate. Bioresour Technol 118:43–48CrossRef
134.
Zurück zum Zitat Mouthon-Bello J, Zhou H (2007) Using submerged membrane bioreactors for biological nutrient removal from municipal wastewater. Science Press , Beijing Mouthon-Bello J, Zhou H (2007) Using submerged membrane bioreactors for biological nutrient removal from municipal wastewater. Science Press , Beijing
135.
Zurück zum Zitat Murphy AP (1991) Chemical removal of nitrate from water. Nature 350(6315):223CrossRef Murphy AP (1991) Chemical removal of nitrate from water. Nature 350(6315):223CrossRef
136.
Zurück zum Zitat Murthy Z, Parmar S (2011) Removal of strontium by electrocoagulation using stainless steel and aluminum electrodes. Desalination 282:63–67CrossRef Murthy Z, Parmar S (2011) Removal of strontium by electrocoagulation using stainless steel and aluminum electrodes. Desalination 282:63–67CrossRef
137.
Zurück zum Zitat Noël IM, Lebrun R, Bouchard CR (2000) Electro-nanofiltration of a textile direct dye solution. Desalination 129(2):125–136CrossRef Noël IM, Lebrun R, Bouchard CR (2000) Electro-nanofiltration of a textile direct dye solution. Desalination 129(2):125–136CrossRef
138.
Zurück zum Zitat Oehmen A, Lemos PC, Carvalho G, Yuan Z, Keller J, Blackall LL, Reis MAM (2007) Advances in enhanced biological phosphorus removal: from micro to macro scale. Water Res 41(11):2271–2300CrossRef Oehmen A, Lemos PC, Carvalho G, Yuan Z, Keller J, Blackall LL, Reis MAM (2007) Advances in enhanced biological phosphorus removal: from micro to macro scale. Water Res 41(11):2271–2300CrossRef
139.
Zurück zum Zitat Oehmen A, Zeng RJ, Yuan Z, Keller J (2005) Anaerobic metabolism of propionate by polyphosphate-accumulating organisms in enhanced biological phosphorus removal systems. Biotechnol Bioeng 91(1):43–53CrossRef Oehmen A, Zeng RJ, Yuan Z, Keller J (2005) Anaerobic metabolism of propionate by polyphosphate-accumulating organisms in enhanced biological phosphorus removal systems. Biotechnol Bioeng 91(1):43–53CrossRef
140.
Zurück zum Zitat Park YG (2006) Effect of hydraulic pressure and electric field on electro-microfiltration in the wine-brewery industry. Desalination 191(1–3):411–416CrossRef Park YG (2006) Effect of hydraulic pressure and electric field on electro-microfiltration in the wine-brewery industry. Desalination 191(1–3):411–416CrossRef
141.
Zurück zum Zitat Perez S, Ho SWL, Felix RM (2007) Electrochemical oxidation of arsenites, by an anode of reticulated glassy carbon as previous step for removal. ECS Trans 3(38):61–76CrossRef Perez S, Ho SWL, Felix RM (2007) Electrochemical oxidation of arsenites, by an anode of reticulated glassy carbon as previous step for removal. ECS Trans 3(38):61–76CrossRef
142.
Zurück zum Zitat Pillay VL, Townsend B, Buckley CA (1994) Improving the performance of anaerobic digesters at wastewater treatment works: the coupled cross-flow microfiltration/digester process. Water Sci Technol 30(12):329–337CrossRef Pillay VL, Townsend B, Buckley CA (1994) Improving the performance of anaerobic digesters at wastewater treatment works: the coupled cross-flow microfiltration/digester process. Water Sci Technol 30(12):329–337CrossRef
143.
Zurück zum Zitat Pollet S, Guigui C, Cabassud C (2009) Influence of intermittent aeration and relaxation on a side-stream membrane bioreactor for municipal wastewater treatment. Desalin Water Treat 6(1–3):108–118CrossRef Pollet S, Guigui C, Cabassud C (2009) Influence of intermittent aeration and relaxation on a side-stream membrane bioreactor for municipal wastewater treatment. Desalin Water Treat 6(1–3):108–118CrossRef
144.
Zurück zum Zitat Pozzo AD, Palma LD, Merli C, Petrucci E (2005) An experimental comparison of a graphite electrode and a gas diffusion electrode for the cathodic production of hydrogen peroxide. J Appl Electrochem 35(4):413–419CrossRef Pozzo AD, Palma LD, Merli C, Petrucci E (2005) An experimental comparison of a graphite electrode and a gas diffusion electrode for the cathodic production of hydrogen peroxide. J Appl Electrochem 35(4):413–419CrossRef
145.
Zurück zum Zitat Psoch C, Schiewer S (2006) Anti-fouling application of air sparging and backflushing for MBR. J Membr Sci 283(1–2):273–280CrossRef Psoch C, Schiewer S (2006) Anti-fouling application of air sparging and backflushing for MBR. J Membr Sci 283(1–2):273–280CrossRef
146.
Zurück zum Zitat Pulefou T, Jegatheesan V, Steicke C, Kim S (2008) Application of submerged membrane bioreactor for aquaculture effluent reuse. Desalination 221(1):534–542CrossRef Pulefou T, Jegatheesan V, Steicke C, Kim S (2008) Application of submerged membrane bioreactor for aquaculture effluent reuse. Desalination 221(1):534–542CrossRef
147.
Zurück zum Zitat Qin L, Zhang G, Meng Q, Xu L, Lv B (2012) Enhanced MBR by internal micro-electrolysis for degradation of anthraquinone dye wastewater. Chem Eng J 210:575–584CrossRef Qin L, Zhang G, Meng Q, Xu L, Lv B (2012) Enhanced MBR by internal micro-electrolysis for degradation of anthraquinone dye wastewater. Chem Eng J 210:575–584CrossRef
148.
Zurück zum Zitat Rafiei B, Naeimpoor F, Mohammadi T (2014) Bio-film and bio-entrapped hybrid membrane bioreactors in wastewater treatment: Comparison of membrane fouling and removal efficiency. Desalination 337:16–22CrossRef Rafiei B, Naeimpoor F, Mohammadi T (2014) Bio-film and bio-entrapped hybrid membrane bioreactors in wastewater treatment: Comparison of membrane fouling and removal efficiency. Desalination 337:16–22CrossRef
149.
Zurück zum Zitat Rajeshwar K, Ibanez J, Swain G (1994) Electrochemistry and the environment. J Appl Electrochem 24(11):1077–1091CrossRef Rajeshwar K, Ibanez J, Swain G (1994) Electrochemistry and the environment. J Appl Electrochem 24(11):1077–1091CrossRef
150.
Zurück zum Zitat Ramdani A, Dold P, Gadbois A, Déléris S, Houweling D, Comeau Y (2012) Biodegradation of the endogenous residue of activated sludge in a membrane bioreactor with continuous or on-off aeration. Water Res 46(9):2837–2850CrossRef Ramdani A, Dold P, Gadbois A, Déléris S, Houweling D, Comeau Y (2012) Biodegradation of the endogenous residue of activated sludge in a membrane bioreactor with continuous or on-off aeration. Water Res 46(9):2837–2850CrossRef
151.
Zurück zum Zitat Ramesh A, Lee DJ, Lai JY (2006) Membrane biofouling by extracellular polymeric substances or soluble microbial products from membrane bioreactor sludge. Appl Microbiol Biotechnol 74(3):699–707CrossRef Ramesh A, Lee DJ, Lai JY (2006) Membrane biofouling by extracellular polymeric substances or soluble microbial products from membrane bioreactor sludge. Appl Microbiol Biotechnol 74(3):699–707CrossRef
152.
Zurück zum Zitat Rezaei M, Mehrnia MR (2014) The influence of zeolite (clinoptilolite) on the performance of a hybrid membrane bioreactor. Bioresour Technol 158:25–31CrossRef Rezaei M, Mehrnia MR (2014) The influence of zeolite (clinoptilolite) on the performance of a hybrid membrane bioreactor. Bioresour Technol 158:25–31CrossRef
153.
Zurück zum Zitat Rezvani F, Mehrnia MR, Poostchi AA (2014) Optimal operating strategies of SFDM formation for MBR application. Sep Purif Technol 124:124–133CrossRef Rezvani F, Mehrnia MR, Poostchi AA (2014) Optimal operating strategies of SFDM formation for MBR application. Sep Purif Technol 124:124–133CrossRef
154.
Zurück zum Zitat Rodríguez-Hernández L, Esteban-García AL, Tejero I (2014) Comparison between a fixed bed hybrid membrane bioreactor and a conventional membrane bioreactor for municipal wastewater treatment: a pilot-scale study. Bioresour Technol 152:212–219CrossRef Rodríguez-Hernández L, Esteban-García AL, Tejero I (2014) Comparison between a fixed bed hybrid membrane bioreactor and a conventional membrane bioreactor for municipal wastewater treatment: a pilot-scale study. Bioresour Technol 152:212–219CrossRef
155.
Zurück zum Zitat Rozendal RA, Hamelers HV, Rabaey K, Keller J, Buisman CJ (2008) Towards practical implementation of bioelectrochemical wastewater treatment. Trends Biotechnol 26(8):450–459CrossRef Rozendal RA, Hamelers HV, Rabaey K, Keller J, Buisman CJ (2008) Towards practical implementation of bioelectrochemical wastewater treatment. Trends Biotechnol 26(8):450–459CrossRef
156.
Zurück zum Zitat Rozendal RA, Leone E, Keller J, Rabaey K (2009) Efficient hydrogen peroxide generation from organic matter in a bioelectrochemical system. Electrochem Commun 11(9):1752–1755CrossRef Rozendal RA, Leone E, Keller J, Rabaey K (2009) Efficient hydrogen peroxide generation from organic matter in a bioelectrochemical system. Electrochem Commun 11(9):1752–1755CrossRef
157.
Zurück zum Zitat Sadeddin K, Naser A, Firas A (2011) Removal of turbidity and suspended solids by electro-coagulation to improve feed water quality of reverse osmosis plant. Desalination 268(1–3):204–207CrossRef Sadeddin K, Naser A, Firas A (2011) Removal of turbidity and suspended solids by electro-coagulation to improve feed water quality of reverse osmosis plant. Desalination 268(1–3):204–207CrossRef
158.
Zurück zum Zitat Sakakibara Y, Flora JR, Suidan MT, Kurodo M (1994) Modeling of electrochemically-activated denitrifying biofilms. Water Res 28(5):1077–1086CrossRef Sakakibara Y, Flora JR, Suidan MT, Kurodo M (1994) Modeling of electrochemically-activated denitrifying biofilms. Water Res 28(5):1077–1086CrossRef
159.
Zurück zum Zitat Santos A, Ma W, Judd SJ (2011) Membrane bioreactors: Two decades of research and implementation. Desalination 273(1):148–154CrossRef Santos A, Ma W, Judd SJ (2011) Membrane bioreactors: Two decades of research and implementation. Desalination 273(1):148–154CrossRef
160.
Zurück zum Zitat Sari MA, Chellam S (2013) Surface water nanofiltration incorporating (electro) coagulation–microfiltration pretreatment: Fouling control and membrane characterization. J Membr Sci 437:249–256CrossRef Sari MA, Chellam S (2013) Surface water nanofiltration incorporating (electro) coagulation–microfiltration pretreatment: Fouling control and membrane characterization. J Membr Sci 437:249–256CrossRef
161.
Zurück zum Zitat Satyawali Y, Balakrishnan M (2009) Effect of PAC addition on sludge properties in an MBR treating high strength wastewater. Water Res 43(6):1577–1588CrossRef Satyawali Y, Balakrishnan M (2009) Effect of PAC addition on sludge properties in an MBR treating high strength wastewater. Water Res 43(6):1577–1588CrossRef
162.
Zurück zum Zitat Scanlon BR, Faunt CC, Longuevergne L, Reedy RC, Alley WM, McGuire VL, McMahon PB (2012) Groundwater depletion and sustainability of irrigation in the US High Plains and Central Valley. Proc Natl Acad Sci 109(24):9320–9325CrossRef Scanlon BR, Faunt CC, Longuevergne L, Reedy RC, Alley WM, McGuire VL, McMahon PB (2012) Groundwater depletion and sustainability of irrigation in the US High Plains and Central Valley. Proc Natl Acad Sci 109(24):9320–9325CrossRef
163.
Zurück zum Zitat Schoeman JJ (2008) Evaluation of electrodialysis for the treatment of a hazardous leachate. Desalination 224(1–3):178–182CrossRef Schoeman JJ (2008) Evaluation of electrodialysis for the treatment of a hazardous leachate. Desalination 224(1–3):178–182CrossRef
164.
Zurück zum Zitat Shannon MA, Bohn PW, Elimelech M, Georgiadis JG, Marinas BJ, Mayes AM (2008) Science and technology for water purification in the coming decades. Nature 452(7185):301–311CrossRef Shannon MA, Bohn PW, Elimelech M, Georgiadis JG, Marinas BJ, Mayes AM (2008) Science and technology for water purification in the coming decades. Nature 452(7185):301–311CrossRef
165.
Zurück zum Zitat Shin H, Kang S, Lee C, Lim J (2004) Performance of a pilot scale membrane bioreactor coupled with SBR (SM-SBR)—experiences in seasonal temperature changes. I W a Publishing, LondonCrossRef Shin H, Kang S, Lee C, Lim J (2004) Performance of a pilot scale membrane bioreactor coupled with SBR (SM-SBR)—experiences in seasonal temperature changes. I W a Publishing, LondonCrossRef
166.
Zurück zum Zitat Spagni A, Casu S, Grilli S (2012) Decolourisation of textile wastewater in a submerged anaerobic membrane bioreactor. Bioresour Technol 117:180–185CrossRef Spagni A, Casu S, Grilli S (2012) Decolourisation of textile wastewater in a submerged anaerobic membrane bioreactor. Bioresour Technol 117:180–185CrossRef
167.
Zurück zum Zitat Stricot M, Filali A, Lesage N, Spérandio M, Cabassud C (2010) Side-stream membrane bioreactors: influence of stress generated by hydrodynamics on floc structure, supernatant quality and fouling propensity. Water Res 44(7):2113–2124CrossRef Stricot M, Filali A, Lesage N, Spérandio M, Cabassud C (2010) Side-stream membrane bioreactors: influence of stress generated by hydrodynamics on floc structure, supernatant quality and fouling propensity. Water Res 44(7):2113–2124CrossRef
168.
Zurück zum Zitat Su B, Wang S, Wu Y, Chen X, Song Y, Jiang L (2012) Small molecular nanowire arrays assisted by superhydrophobic pillar-structured surfaces with high adhesion. Adv Mater 24(20):2780–2785CrossRef Su B, Wang S, Wu Y, Chen X, Song Y, Jiang L (2012) Small molecular nanowire arrays assisted by superhydrophobic pillar-structured surfaces with high adhesion. Adv Mater 24(20):2780–2785CrossRef
169.
Zurück zum Zitat Sun F-Y, Wang X-M, Li X-Y (2013) An innovative membrane bioreactor (MBR) system for simultaneous nitrogen and phosphorus removal. Process Biochem 48(11):1749–1756CrossRef Sun F-Y, Wang X-M, Li X-Y (2013) An innovative membrane bioreactor (MBR) system for simultaneous nitrogen and phosphorus removal. Process Biochem 48(11):1749–1756CrossRef
170.
Zurück zum Zitat Taimur Khan MM, Takizawa S, Lewandowski Z, Habibur Rahman M, Komatsu K, Nelson SE, Kurisu F, Camper AK, Katayama H, Ohgaki S (2013) Combined effects of EPS and HRT enhanced biofouling on a submerged and hybrid PAC-MF membrane bioreactor. Water Res 47(2):747–757CrossRef Taimur Khan MM, Takizawa S, Lewandowski Z, Habibur Rahman M, Komatsu K, Nelson SE, Kurisu F, Camper AK, Katayama H, Ohgaki S (2013) Combined effects of EPS and HRT enhanced biofouling on a submerged and hybrid PAC-MF membrane bioreactor. Water Res 47(2):747–757CrossRef
171.
Zurück zum Zitat Tanneru CT, Rimer JD, Chellam S (2013) Sweep flocculation and adsorption of viruses on aluminum flocs during electrochemical treatment prior to surface water microfiltration. Environ Sci Technol 47(9):4612–4618CrossRef Tanneru CT, Rimer JD, Chellam S (2013) Sweep flocculation and adsorption of viruses on aluminum flocs during electrochemical treatment prior to surface water microfiltration. Environ Sci Technol 47(9):4612–4618CrossRef
172.
Zurück zum Zitat Tarleton E, Wakeman RJ (1988) Prevention of flux decline in electrical microfiltration. Drying Technol 6(3):547–570CrossRef Tarleton E, Wakeman RJ (1988) Prevention of flux decline in electrical microfiltration. Drying Technol 6(3):547–570CrossRef
173.
Zurück zum Zitat Tartakovsky B, Mehta P, Bourque J-S, Guiot S (2011) Electrolysis-enhanced anaerobic digestion of wastewater. Bioresour Technol 102(10):5685–5691CrossRef Tartakovsky B, Mehta P, Bourque J-S, Guiot S (2011) Electrolysis-enhanced anaerobic digestion of wastewater. Bioresour Technol 102(10):5685–5691CrossRef
174.
Zurück zum Zitat Teychene B, Guigui C, Cabassud C (2011) Engineering of an MBR supernatant fouling layer by fine particles addition: a possible way to control cake compressibility. Water Res 45(5):2060–2072CrossRef Teychene B, Guigui C, Cabassud C (2011) Engineering of an MBR supernatant fouling layer by fine particles addition: a possible way to control cake compressibility. Water Res 45(5):2060–2072CrossRef
175.
Zurück zum Zitat Tissot P, Fragniere M (1994) Anodic oxidation of cyanide on a reticulated three-dimensional electrode. J Appl Electrochem 24(6):509–512CrossRef Tissot P, Fragniere M (1994) Anodic oxidation of cyanide on a reticulated three-dimensional electrode. J Appl Electrochem 24(6):509–512CrossRef
176.
Zurück zum Zitat Trasatti S (2000) Electrocatalysis: understanding the success of DSA. Electrochim Acta 45(15–16):2377–2385CrossRef Trasatti S (2000) Electrocatalysis: understanding the success of DSA. Electrochim Acta 45(15–16):2377–2385CrossRef
177.
Zurück zum Zitat Ujang Z, Salim MR, Khor SL (2002) The effect of aeration and non-aeration time on simultaneous organic, nitrogen and phosphorus removal using an intermittent aeration membrane bioreactor. Water Sci Technol 46(9):193–200CrossRef Ujang Z, Salim MR, Khor SL (2002) The effect of aeration and non-aeration time on simultaneous organic, nitrogen and phosphorus removal using an intermittent aeration membrane bioreactor. Water Sci Technol 46(9):193–200CrossRef
178.
Zurück zum Zitat van 't Oever R (2005) MBR focus: is submerged best? Filtr Sep 42(5):24–27 van 't Oever R (2005) MBR focus: is submerged best? Filtr Sep 42(5):24–27
179.
Zurück zum Zitat Van der Bruggen B, Koninckx A, Vandecasteele C (2004) Separation of monovalent and divalent ions from aqueous solution by electrodialysis and nanofiltration. Water Res 38(5):1347–1353CrossRef Van der Bruggen B, Koninckx A, Vandecasteele C (2004) Separation of monovalent and divalent ions from aqueous solution by electrodialysis and nanofiltration. Water Res 38(5):1347–1353CrossRef
180.
Zurück zum Zitat Van Geluwe S, Braeken L, Van der Bruggen B (2011) Ozone oxidation for the alleviation of membrane fouling by natural organic matter: a review. Water Res 45(12):3551–3570CrossRef Van Geluwe S, Braeken L, Van der Bruggen B (2011) Ozone oxidation for the alleviation of membrane fouling by natural organic matter: a review. Water Res 45(12):3551–3570CrossRef
181.
Zurück zum Zitat Vinduja V, Balasubramanian N (2013) Electrocoagulation-integrated hybrid membrane processes for the treatment of tannery wastewater. Environ Sci Pollut Res 20(10):7441–7449CrossRef Vinduja V, Balasubramanian N (2013) Electrocoagulation-integrated hybrid membrane processes for the treatment of tannery wastewater. Environ Sci Pollut Res 20(10):7441–7449CrossRef
182.
Zurück zum Zitat Virdis B, Rabaey K, Rozendal RA, Yuan ZG, Keller J (2010) Simultaneous nitrification, denitrification and carbon removal in microbial fuel cells. Water Res 44(9):2970–2980CrossRef Virdis B, Rabaey K, Rozendal RA, Yuan ZG, Keller J (2010) Simultaneous nitrification, denitrification and carbon removal in microbial fuel cells. Water Res 44(9):2970–2980CrossRef
183.
Zurück zum Zitat Vörösmarty CJ, McIntyre PB, Gessner MO, Dudgeon D, Prusevich A, Green P, Glidden S, Bunn SE, Sullivan CA, Liermann CR (2010) Global threats to human water security and river biodiversity. Nature 467(7315):555CrossRef Vörösmarty CJ, McIntyre PB, Gessner MO, Dudgeon D, Prusevich A, Green P, Glidden S, Bunn SE, Sullivan CA, Liermann CR (2010) Global threats to human water security and river biodiversity. Nature 467(7315):555CrossRef
184.
Zurück zum Zitat Wakeman R, Williams C (2002) Additional techniques to improve microfiltration. Sep Purif Technol 26(1):3–18CrossRef Wakeman R, Williams C (2002) Additional techniques to improve microfiltration. Sep Purif Technol 26(1):3–18CrossRef
185.
Zurück zum Zitat Wang HM, Ren ZJ (2013) A comprehensive review of microbial electrochemical systems as a platform technology. Biotechnol Adv 31(8):1796–1807CrossRef Wang HM, Ren ZJ (2013) A comprehensive review of microbial electrochemical systems as a platform technology. Biotechnol Adv 31(8):1796–1807CrossRef
186.
Zurück zum Zitat Wang S, Guillen G, Hoek EMV (2005) Direct observation of microbial adhesion to membranes. Environ Sci Technol 39(17):6461–6469CrossRef Wang S, Guillen G, Hoek EMV (2005) Direct observation of microbial adhesion to membranes. Environ Sci Technol 39(17):6461–6469CrossRef
187.
Zurück zum Zitat Wang W, Yang Q, Zheng SS, Wu DL (2013) Anaerobic membrane bioreactor (AnMBR) for bamboo industry wastewater treatment. Bioresour Technol 149:292–300CrossRef Wang W, Yang Q, Zheng SS, Wu DL (2013) Anaerobic membrane bioreactor (AnMBR) for bamboo industry wastewater treatment. Bioresour Technol 149:292–300CrossRef
188.
Zurück zum Zitat Wang X, Li X (2008) Accumulation of biopolymer clusters in a submerged membrane bioreactor and its effect on membrane fouling. Water Res 42(4):855–862CrossRef Wang X, Li X (2008) Accumulation of biopolymer clusters in a submerged membrane bioreactor and its effect on membrane fouling. Water Res 42(4):855–862CrossRef
189.
Zurück zum Zitat Wang Y, Sheng G, Li W, Yu H (2012) A pilot investigation into membrane bioreactor using mesh filter for treating low-strength municipal wastewater. Bioresour Technol 122:17–21CrossRef Wang Y, Sheng G, Li W, Yu H (2012) A pilot investigation into membrane bioreactor using mesh filter for treating low-strength municipal wastewater. Bioresour Technol 122:17–21CrossRef
190.
Zurück zum Zitat Wang Y, Sheng G, Ni B, Li W, Zeng RJ, Wang Y, Shi B, Yu H (2013) Simultaneous carbon and nitrogen removals in membrane bioreactor with mesh filter: an experimental and modeling approach. Chem Eng Sci 95:78–84CrossRef Wang Y, Sheng G, Ni B, Li W, Zeng RJ, Wang Y, Shi B, Yu H (2013) Simultaneous carbon and nitrogen removals in membrane bioreactor with mesh filter: an experimental and modeling approach. Chem Eng Sci 95:78–84CrossRef
191.
Zurück zum Zitat Wang YP, Liu XW, Li WW, Li F, Wang YK, Sheng GP, Zeng RJ, Yu HQ (2012) A microbial fuel cell–membrane bioreactor integrated system for cost-effective wastewater treatment. Appl Energy 98:230–235CrossRef Wang YP, Liu XW, Li WW, Li F, Wang YK, Sheng GP, Zeng RJ, Yu HQ (2012) A microbial fuel cell–membrane bioreactor integrated system for cost-effective wastewater treatment. Appl Energy 98:230–235CrossRef
192.
Zurück zum Zitat Wang Z, Wu Z, Yin X, Tian L (2008) Membrane fouling in a submerged membrane bioreactor (MBR) under sub-critical flux operation: Membrane foulant and gel layer characterization. J Membr Sci 325(1):238–244CrossRef Wang Z, Wu Z, Yin X, Tian L (2008) Membrane fouling in a submerged membrane bioreactor (MBR) under sub-critical flux operation: Membrane foulant and gel layer characterization. J Membr Sci 325(1):238–244CrossRef
193.
Zurück zum Zitat Wen Q, Yang T, Wang S, Chen Y, Cong L, Qu Y (2013) Dechlorination of 4-chlorophenol to phenol in bioelectrochemical systems. J Hazard Mater 244:743–749CrossRef Wen Q, Yang T, Wang S, Chen Y, Cong L, Qu Y (2013) Dechlorination of 4-chlorophenol to phenol in bioelectrochemical systems. J Hazard Mater 244:743–749CrossRef
194.
Zurück zum Zitat Weng YH, Li KC, Chaung Hsieh LH, Huang C (2006) Removal of humic substances (HS) from water by electro-microfiltration (EMF). Water Res 40(9):1783–1794CrossRef Weng YH, Li KC, Chaung Hsieh LH, Huang C (2006) Removal of humic substances (HS) from water by electro-microfiltration (EMF). Water Res 40(9):1783–1794CrossRef
195.
Zurück zum Zitat Won Y, Lee J, Choi D, Chae H, Kim I, Lee C, Kim I (2012) Preparation and application of patterned membranes for wastewater treatment. Environ Sci Technol 46(20):11021–11027CrossRef Won Y, Lee J, Choi D, Chae H, Kim I, Lee C, Kim I (2012) Preparation and application of patterned membranes for wastewater treatment. Environ Sci Technol 46(20):11021–11027CrossRef
196.
Zurück zum Zitat Wu X, Modin O (2013) Ammonium recovery from reject water combined with hydrogen production in a bioelectrochemical reactor. Bioresour Technol 146:530–536CrossRef Wu X, Modin O (2013) Ammonium recovery from reject water combined with hydrogen production in a bioelectrochemical reactor. Bioresour Technol 146:530–536CrossRef
197.
Zurück zum Zitat Xie S, Liang P, Chen Y, Xia X, Huang X (2011) Simultaneous carbon and nitrogen removal using an oxic/anoxic-biocathode microbial fuel cells coupled system. Bioresour Technol 102(1):348–354CrossRef Xie S, Liang P, Chen Y, Xia X, Huang X (2011) Simultaneous carbon and nitrogen removal using an oxic/anoxic-biocathode microbial fuel cells coupled system. Bioresour Technol 102(1):348–354CrossRef
198.
Zurück zum Zitat Xie Z, Wang Z, Wang Q, Zhu C, Wu Z (2014) An anaerobic dynamic membrane bioreactor (AnDMBR) for landfill leachate treatment: Performance and microbial community identification. Bioresour Technol 161:29–39CrossRef Xie Z, Wang Z, Wang Q, Zhu C, Wu Z (2014) An anaerobic dynamic membrane bioreactor (AnDMBR) for landfill leachate treatment: Performance and microbial community identification. Bioresour Technol 161:29–39CrossRef
199.
Zurück zum Zitat Xu L, Du L-S, Wang C, Xu W (2012) Nanofiltration coupled with electrolytic oxidation in treating simulated dye wastewater. J Membr Sci 409:329–334CrossRef Xu L, Du L-S, Wang C, Xu W (2012) Nanofiltration coupled with electrolytic oxidation in treating simulated dye wastewater. J Membr Sci 409:329–334CrossRef
200.
Zurück zum Zitat Xu N, Zhou S, Yuan Y, Qin H, Zheng Y, Shu C (2011) Coupling of anodic biooxidation and cathodic bioelectro-Fenton for enhanced swine wastewater treatment. Bioresour Technol 102(17):7777–7783CrossRef Xu N, Zhou S, Yuan Y, Qin H, Zheng Y, Shu C (2011) Coupling of anodic biooxidation and cathodic bioelectro-Fenton for enhanced swine wastewater treatment. Bioresour Technol 102(17):7777–7783CrossRef
201.
Zurück zum Zitat Yamagiwa K, Oohira Y, Ohkawa A (1994) Performance evaluation of a plunging liquid jet bioreactor with crossflow filtration for small-scale treatment of domestic wastewater. Bioresour Technol 50(2):131–138CrossRef Yamagiwa K, Oohira Y, Ohkawa A (1994) Performance evaluation of a plunging liquid jet bioreactor with crossflow filtration for small-scale treatment of domestic wastewater. Bioresour Technol 50(2):131–138CrossRef
202.
Zurück zum Zitat Yamato N, Kimura K, Miyoshi T, Watanabe Y (2006) Difference in membrane fouling in membrane bioreactors (MBRs) caused by membrane polymer materials. J Membr Sci 280(1):911–919CrossRef Yamato N, Kimura K, Miyoshi T, Watanabe Y (2006) Difference in membrane fouling in membrane bioreactors (MBRs) caused by membrane polymer materials. J Membr Sci 280(1):911–919CrossRef
203.
Zurück zum Zitat Yang GC, Tsai CM (2006) Performance evaluation of a simultaneous electrocoagulation and electrofiltration module for the treatment of Cu-CMP and oxide-CMP wastewaters. J Membr Sci 286(1–2):36–44CrossRef Yang GC, Tsai CM (2006) Performance evaluation of a simultaneous electrocoagulation and electrofiltration module for the treatment of Cu-CMP and oxide-CMP wastewaters. J Membr Sci 286(1–2):36–44CrossRef
204.
Zurück zum Zitat Yang GC, Yang TY, Tsai SH (2003) Crossflow electro-microfiltration of oxide-CMP wastewater. Water Res 37(4):785–792CrossRef Yang GC, Yang TY, Tsai SH (2003) Crossflow electro-microfiltration of oxide-CMP wastewater. Water Res 37(4):785–792CrossRef
205.
Zurück zum Zitat Yang J, Spanjers H, van Lier JB (2012) Non-feasibility of magnetic adsorbents for fouling control in anaerobic membrane bioreactors. Desalination 292:124–128CrossRef Yang J, Spanjers H, van Lier JB (2012) Non-feasibility of magnetic adsorbents for fouling control in anaerobic membrane bioreactors. Desalination 292:124–128CrossRef
206.
Zurück zum Zitat Yang S, Yang F (2011) Nitrogen removal via short-cut simultaneous nitrification and denitrification in an intermittently aerated moving bed membrane bioreactor. J Hazard Mater 195:318–323CrossRef Yang S, Yang F (2011) Nitrogen removal via short-cut simultaneous nitrification and denitrification in an intermittently aerated moving bed membrane bioreactor. J Hazard Mater 195:318–323CrossRef
207.
Zurück zum Zitat Yang S, Yang F, Fu Z, Wang T, Lei R (2010) Simultaneous nitrogen and phosphorus removal by a novel sequencing batch moving bed membrane bioreactor for wastewater treatment. J Hazard Mater 175(1):551–557CrossRef Yang S, Yang F, Fu Z, Wang T, Lei R (2010) Simultaneous nitrogen and phosphorus removal by a novel sequencing batch moving bed membrane bioreactor for wastewater treatment. J Hazard Mater 175(1):551–557CrossRef
208.
Zurück zum Zitat Yang SY, Kim D, Park H (2014) Shift of the reactive species in the Sb–SnO2 electrocatalyzed inactivation of E. coli and degradation of phenol: effects of nickel doping and electrolytes. Environ Sci Technol 48(5):2877–2884 Yang SY, Kim D, Park H (2014) Shift of the reactive species in the Sb–SnO2 electrocatalyzed inactivation of E. coli and degradation of phenol: effects of nickel doping and electrolytes. Environ Sci Technol 48(5):2877–2884
209.
Zurück zum Zitat Yang Y, Wang H, Li J, He B, Wang T, Liao S (2012) Novel functionalized nano-TiO2 loading electrocatalytic membrane for oily wastewater treatment. Environ Sci Technol 46(12):6815–6821CrossRef Yang Y, Wang H, Li J, He B, Wang T, Liao S (2012) Novel functionalized nano-TiO2 loading electrocatalytic membrane for oily wastewater treatment. Environ Sci Technol 46(12):6815–6821CrossRef
210.
Zurück zum Zitat Yeon K, Cheong W, Oh H, Lee W, Hwang B, Lee C, Beyenal H, Lewandowski Z (2009) Quorum sensing: a new biofouling control paradigm in a membrane bioreactor for advanced wastewater treatment. Environ Sci Technol 43(2):380–385CrossRef Yeon K, Cheong W, Oh H, Lee W, Hwang B, Lee C, Beyenal H, Lewandowski Z (2009) Quorum sensing: a new biofouling control paradigm in a membrane bioreactor for advanced wastewater treatment. Environ Sci Technol 43(2):380–385CrossRef
211.
Zurück zum Zitat Yeon K, Lee C, Kim J (2009) Magnetic enzyme carrier for effective biofouling control in the membrane bioreactor based on enzymatic quorum quenching. Environ Sci Technol 43(19):7403–7409CrossRef Yeon K, Lee C, Kim J (2009) Magnetic enzyme carrier for effective biofouling control in the membrane bioreactor based on enzymatic quorum quenching. Environ Sci Technol 43(19):7403–7409CrossRef
212.
Zurück zum Zitat Yu H, Liu L, Tang Z, Yan M, Gu J, Wei X (2008) Mitigated membrane fouling in an SMBR by surface modification. J Membr Sci 310(1):409–417CrossRef Yu H, Liu L, Tang Z, Yan M, Gu J, Wei X (2008) Mitigated membrane fouling in an SMBR by surface modification. J Membr Sci 310(1):409–417CrossRef
213.
Zurück zum Zitat Yu H, Ma C, Quan X, Chen S, Zhao H (2009) Flow injection analysis of chemical oxygen demand (COD) by using a boron-doped diamond (BDD) electrode. Environ Sci Technol 43(6):1935–1939CrossRef Yu H, Ma C, Quan X, Chen S, Zhao H (2009) Flow injection analysis of chemical oxygen demand (COD) by using a boron-doped diamond (BDD) electrode. Environ Sci Technol 43(6):1935–1939CrossRef
214.
Zurück zum Zitat Yu H, Xu Z, Lei H, Hu M, Yang Q (2007) Photoinduced graft polymerization of acrylamide on polypropylene microporous membranes for the improvement of antifouling characteristics in a submerged membrane-bioreactor. Sep Purif Technol 53(1):119–125CrossRef Yu H, Xu Z, Lei H, Hu M, Yang Q (2007) Photoinduced graft polymerization of acrylamide on polypropylene microporous membranes for the improvement of antifouling characteristics in a submerged membrane-bioreactor. Sep Purif Technol 53(1):119–125CrossRef
215.
Zurück zum Zitat Yu L, Guo Q, Hao J, Jiang W (2000) Recovery of acetic acid from dilute wastewater by means of bipolar membrane electrodialysis. Desalination 129(3):283–288CrossRef Yu L, Guo Q, Hao J, Jiang W (2000) Recovery of acetic acid from dilute wastewater by means of bipolar membrane electrodialysis. Desalination 129(3):283–288CrossRef
216.
Zurück zum Zitat Yu Z, Wen X, Xu M, Huang X (2012) Characteristics of extracellular polymeric substances and bacterial communities in an anaerobic membrane bioreactor coupled with online ultrasound equipment. Bioresour Technol 117:333–340CrossRef Yu Z, Wen X, Xu M, Huang X (2012) Characteristics of extracellular polymeric substances and bacterial communities in an anaerobic membrane bioreactor coupled with online ultrasound equipment. Bioresour Technol 117:333–340CrossRef
217.
Zurück zum Zitat Yuzir A, Chelliapan S, Sallis PJ (2012) Impact of the herbicide (RS)-MCPP on an anaerobic membrane bioreactor performance under different COD/nitrate ratios. Bioresour Technol 109:31–37CrossRef Yuzir A, Chelliapan S, Sallis PJ (2012) Impact of the herbicide (RS)-MCPP on an anaerobic membrane bioreactor performance under different COD/nitrate ratios. Bioresour Technol 109:31–37CrossRef
218.
Zurück zum Zitat Zahid WM, El-Shafai SA (2011) Use of cloth-media filter for membrane bioreactor treating municipal wastewater. Bioresour Technol 102(3):2193–2198CrossRef Zahid WM, El-Shafai SA (2011) Use of cloth-media filter for membrane bioreactor treating municipal wastewater. Bioresour Technol 102(3):2193–2198CrossRef
219.
Zurück zum Zitat Zaky AM, Chaplin BP (2013) Porous substoichiometric TiO2 anodes as reactive electrochemical membranes for water treatment. Environ Sci Technol 47(12):6554–6563CrossRef Zaky AM, Chaplin BP (2013) Porous substoichiometric TiO2 anodes as reactive electrochemical membranes for water treatment. Environ Sci Technol 47(12):6554–6563CrossRef
220.
Zurück zum Zitat Zhang BG, Zhao HZ, Zhou SG, Shi CH, Wang C, Ni J (2009) A novel UASB–MFC–BAF integrated system for high strength molasses wastewater treatment and bioelectricity generation. Bioresour Technol 100(23):5687–5693CrossRef Zhang BG, Zhao HZ, Zhou SG, Shi CH, Wang C, Ni J (2009) A novel UASB–MFC–BAF integrated system for high strength molasses wastewater treatment and bioelectricity generation. Bioresour Technol 100(23):5687–5693CrossRef
221.
Zurück zum Zitat Zhang C, Dong Y, Zhang F (2011a) Modeling of PVA modified non-woven for submerged membrane bioreactor treating synthetic wastewater, pp 1109–1117 Zhang C, Dong Y, Zhang F (2011a) Modeling of PVA modified non-woven for submerged membrane bioreactor treating synthetic wastewater, pp 1109–1117
222.
Zurück zum Zitat Zhang F, Brastad KS, He Z (2011b) Integrating forward osmosis into microbial fuel cells for wastewater treatment, water extraction and bioelectricity generation. Environ Sci Technol 45(15):6690–6696 Zhang F, Brastad KS, He Z (2011b) Integrating forward osmosis into microbial fuel cells for wastewater treatment, water extraction and bioelectricity generation. Environ Sci Technol 45(15):6690–6696
223.
Zurück zum Zitat Zhang F, Chen M, Zhang Y, Zeng RJ (2012) Microbial desalination cells with ion exchange resin packed to enhance desalination at low salt concentration. J Membr Sci 417:28–33CrossRef Zhang F, Chen M, Zhang Y, Zeng RJ (2012) Microbial desalination cells with ion exchange resin packed to enhance desalination at low salt concentration. J Membr Sci 417:28–33CrossRef
224.
Zurück zum Zitat Zhang GY, Zhang HM, Zhang CY, Zhang GQ, Yang FL, Yuan GG, Gao F (2013) Simultaneous nitrogen and carbon removal in a single chamber microbial fuel cell with a rotating biocathode. Process Biochem 48(5):893–900CrossRef Zhang GY, Zhang HM, Zhang CY, Zhang GQ, Yang FL, Yuan GG, Gao F (2013) Simultaneous nitrogen and carbon removal in a single chamber microbial fuel cell with a rotating biocathode. Process Biochem 48(5):893–900CrossRef
225.
Zurück zum Zitat Zhang J, Zhang Y, Quan X (2012) Electricity assisted anaerobic treatment of salinity wastewater and its effects on microbial communities. Water Res 46(11):3535–3543CrossRef Zhang J, Zhang Y, Quan X (2012) Electricity assisted anaerobic treatment of salinity wastewater and its effects on microbial communities. Water Res 46(11):3535–3543CrossRef
226.
Zurück zum Zitat Zhang M, Peng W, Chen J, He Y, Ding L, Wang A, Lin H, Hong H, Zhang Y, Yu H (2013) A new insight into membrane fouling mechanism in submerged membrane bioreactor: osmotic pressure during cake layer filtration. Water Res 47(8):2777–2786CrossRef Zhang M, Peng W, Chen J, He Y, Ding L, Wang A, Lin H, Hong H, Zhang Y, Yu H (2013) A new insight into membrane fouling mechanism in submerged membrane bioreactor: osmotic pressure during cake layer filtration. Water Res 47(8):2777–2786CrossRef
227.
Zurück zum Zitat Zhang S, Qu Y, Liu Y, Yang F, Zhang X, Furukawa K, Yamada Y (2005) Experimental study of domestic sewage treatment with a metal membrane bioreactor. Desalination 177(1–3):83–93CrossRef Zhang S, Qu Y, Liu Y, Yang F, Zhang X, Furukawa K, Yamada Y (2005) Experimental study of domestic sewage treatment with a metal membrane bioreactor. Desalination 177(1–3):83–93CrossRef
228.
Zurück zum Zitat Zhang S, Yang F, Liu Y, Zhang X, Yamada Y, Furukawa K (2006) Performance of a metallic membrane bioreactor treating simulated distillery wastewater at temperatures of 30 to 45 °C. Desalination 194(1):146–155CrossRef Zhang S, Yang F, Liu Y, Zhang X, Yamada Y, Furukawa K (2006) Performance of a metallic membrane bioreactor treating simulated distillery wastewater at temperatures of 30 to 45 °C. Desalination 194(1):146–155CrossRef
229.
Zurück zum Zitat Zhang X, Wang Z, Wu Z, Wei T, Lu F, Tong J, Mai S (2011) Membrane fouling in an anaerobic dynamic membrane bioreactor (AnDMBR) for municipal wastewater treatment: Characteristics of membrane foulants and bulk sludge. Process Biochem 46(8):1538–1544CrossRef Zhang X, Wang Z, Wu Z, Wei T, Lu F, Tong J, Mai S (2011) Membrane fouling in an anaerobic dynamic membrane bioreactor (AnDMBR) for municipal wastewater treatment: Characteristics of membrane foulants and bulk sludge. Process Biochem 46(8):1538–1544CrossRef
230.
Zurück zum Zitat Zhang Y, Desmidt E, Van Looveren A, Pinoy L, Meesschaert B, Van der Bruggen B (2013) Phosphate separation and recovery from wastewater by novel electrodialysis. Environ Sci Technol 47(11):5888–5895CrossRef Zhang Y, Desmidt E, Van Looveren A, Pinoy L, Meesschaert B, Van der Bruggen B (2013) Phosphate separation and recovery from wastewater by novel electrodialysis. Environ Sci Technol 47(11):5888–5895CrossRef
231.
Zurück zum Zitat Zhang Y, Paepen S, Pinoy L, Meesschaert B, Van der Bruggen B (2012) Selectrodialysis: fractionation of divalent ions from monovalent ions in a novel electrodialysis stack. Sep Sci Technol 88:191–201 Zhang Y, Paepen S, Pinoy L, Meesschaert B, Van der Bruggen B (2012) Selectrodialysis: fractionation of divalent ions from monovalent ions in a novel electrodialysis stack. Sep Sci Technol 88:191–201
232.
Zurück zum Zitat Zhang Y, Yang N, Murugananthan M, Yoshihara S (2013) Electrochemical degradation of PNP at boron-doped diamond and platinum electrodes. J Hazard Mater 244:295–302CrossRef Zhang Y, Yang N, Murugananthan M, Yoshihara S (2013) Electrochemical degradation of PNP at boron-doped diamond and platinum electrodes. J Hazard Mater 244:295–302CrossRef
233.
Zurück zum Zitat Zhu X, Logan BE (2013) Using single-chamber microbial fuel cells as renewable power sources of electro-Fenton reactors for organic pollutant treatment. J Hazard Mater 252–253:198–203CrossRef Zhu X, Logan BE (2013) Using single-chamber microbial fuel cells as renewable power sources of electro-Fenton reactors for organic pollutant treatment. J Hazard Mater 252–253:198–203CrossRef
234.
Zurück zum Zitat Zhu X, Ni J, Lai P (2009) Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes. Water Res 43(17):4347–4355CrossRef Zhu X, Ni J, Lai P (2009) Advanced treatment of biologically pretreated coking wastewater by electrochemical oxidation using boron-doped diamond electrodes. Water Res 43(17):4347–4355CrossRef
235.
Zurück zum Zitat Zhuang L, Zhou SG, Li YT, Liu TL, Huang DY (2010) In situ Fenton-enhanced cathodic reaction for sustainable increased electricity generation in microbial fuel cells. J Power Sources 195(5):1379–1382CrossRef Zhuang L, Zhou SG, Li YT, Liu TL, Huang DY (2010) In situ Fenton-enhanced cathodic reaction for sustainable increased electricity generation in microbial fuel cells. J Power Sources 195(5):1379–1382CrossRef
236.
Zurück zum Zitat Zhuang L, Zhou SG, Yuan Y, Liu M, Wang YD (2010) A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation. Chem Eng J 163(1):160–163CrossRef Zhuang L, Zhou SG, Yuan Y, Liu M, Wang YD (2010) A novel bioelectro-Fenton system for coupling anodic COD removal with cathodic dye degradation. Chem Eng J 163(1):160–163CrossRef
Metadaten
Titel
Research Background and Literature Review
verfasst von
Yunkun Wang
Copyright-Jahr
2020
Verlag
Springer Singapore
DOI
https://doi.org/10.1007/978-981-15-3078-4_2