Skip to main content

2018 | OriginalPaper | Buchkapitel

The Use of Pressure Membrane Separation for Heavy Metal Removal or Recovery

verfasst von : Arkadiusz Nędzarek

Erschienen in: Practical Aspects of Chemical Engineering

Verlag: Springer International Publishing

Aktivieren Sie unsere intelligente Suche, um passende Fachinhalte oder Patente zu finden.

search-config
loading …

Abstract

Environmental pollution with heavy metals is a serious global issue. In order to meet increasingly stringent environmental regulations, new technologies for the elimination and/or recovery of heavy metals from wastewater are tested and implemented. These technologies include membrane separations like reverse osmosis (RO), ultrafiltration (UF) and nanofiltration (NF). Direct and combined techniques have been discussed: BSA-enhanced nanofiltration, micellar enhanced ultrafiltration (MEUF) and polyelectrolyte enhanced ultrafiltration (PEUF). Membrane techniques allow for a high elimination of heavy metals, comparable to currently used technologies such as chemical precipitation, coagulation, flotation, or ion exchange.

Sie haben noch keine Lizenz? Dann Informieren Sie sich jetzt über unsere Produkte:

Springer Professional "Wirtschaft+Technik"

Online-Abonnement

Mit Springer Professional "Wirtschaft+Technik" erhalten Sie Zugriff auf:

  • über 102.000 Bücher
  • über 537 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Finance + Banking
  • Management + Führung
  • Marketing + Vertrieb
  • Maschinenbau + Werkstoffe
  • Versicherung + Risiko

Jetzt Wissensvorsprung sichern!

Springer Professional "Technik"

Online-Abonnement

Mit Springer Professional "Technik" erhalten Sie Zugriff auf:

  • über 67.000 Bücher
  • über 390 Zeitschriften

aus folgenden Fachgebieten:

  • Automobil + Motoren
  • Bauwesen + Immobilien
  • Business IT + Informatik
  • Elektrotechnik + Elektronik
  • Energie + Nachhaltigkeit
  • Maschinenbau + Werkstoffe




 

Jetzt Wissensvorsprung sichern!

Literatur
Zurück zum Zitat Abu Qdaisa H, Moussab H (2004) Removal of heavy metals from wastewater by membrane process: a comparative study. Desalination 164:105–110CrossRef Abu Qdaisa H, Moussab H (2004) Removal of heavy metals from wastewater by membrane process: a comparative study. Desalination 164:105–110CrossRef
Zurück zum Zitat Acero JL, Benitez FJ, Leal AI, Real J, Teva F (2010) Membrane filtration technologies applied to municipal secondary effluents for potential reuse. J Hazard Mater 177:390–398CrossRef Acero JL, Benitez FJ, Leal AI, Real J, Teva F (2010) Membrane filtration technologies applied to municipal secondary effluents for potential reuse. J Hazard Mater 177:390–398CrossRef
Zurück zum Zitat Al-Enezi G, Hamoda MF, Fawzi N (2004) Ion exchange extraction of heavy metals from wastewater sludges. J Environ Sci Health A Tox Hazard Subst Environ Eng 39(2):455–564CrossRef Al-Enezi G, Hamoda MF, Fawzi N (2004) Ion exchange extraction of heavy metals from wastewater sludges. J Environ Sci Health A Tox Hazard Subst Environ Eng 39(2):455–564CrossRef
Zurück zum Zitat Almutairi FM, Williams PM, Lovitt RW (2012) Effect of membrane surface charge on filtration of heavy metal ions in the presence and absence of polyethylenimine. Desalin Water Treat 42:131–137CrossRef Almutairi FM, Williams PM, Lovitt RW (2012) Effect of membrane surface charge on filtration of heavy metal ions in the presence and absence of polyethylenimine. Desalin Water Treat 42:131–137CrossRef
Zurück zum Zitat Alyüz B, Veli S (2009) Kinetics and equilibrium studies for the removal of nickel and zinc from aqueous solutions by ion exchange resins. J Hazard Mater 167:482–488CrossRef Alyüz B, Veli S (2009) Kinetics and equilibrium studies for the removal of nickel and zinc from aqueous solutions by ion exchange resins. J Hazard Mater 167:482–488CrossRef
Zurück zum Zitat Amy G (2008) Fundamental understanding of organic matter fouling of membranes. Desalination 231:44–51CrossRef Amy G (2008) Fundamental understanding of organic matter fouling of membranes. Desalination 231:44–51CrossRef
Zurück zum Zitat Arkhangelsky E, Wicaksana F, Cou S, Al-Rabiah AA, Al-Zahrani SM, Wang R (2012) Effect of scaling and cleaning on the performance of forward osmosis hollow fiber membranes. J Membr Sci 415–416:101–108CrossRef Arkhangelsky E, Wicaksana F, Cou S, Al-Rabiah AA, Al-Zahrani SM, Wang R (2012) Effect of scaling and cleaning on the performance of forward osmosis hollow fiber membranes. J Membr Sci 415–416:101–108CrossRef
Zurück zum Zitat Aziz HA, Adlan MN, Ariffin KS (2008) Heavy metals (Cd, Pb, Zn, Ni, Cu and Cr(III)) removal from water in Malaysia: post treatment by high quality limestone. Bioresource Technol 99:1578–1583CrossRef Aziz HA, Adlan MN, Ariffin KS (2008) Heavy metals (Cd, Pb, Zn, Ni, Cu and Cr(III)) removal from water in Malaysia: post treatment by high quality limestone. Bioresource Technol 99:1578–1583CrossRef
Zurück zum Zitat Barakat MA (2008) Removal of Cu(II), Ni(II), and Cr(III) ions from wastewater using complexation-ultrafiltration technique. J Environ Sci Technol 1(3):151–156CrossRef Barakat MA (2008) Removal of Cu(II), Ni(II), and Cr(III) ions from wastewater using complexation-ultrafiltration technique. J Environ Sci Technol 1(3):151–156CrossRef
Zurück zum Zitat Barakat MA (2011) New trends in removing heavy metals from industrial wastewater. Arab J Chem 4:361–377CrossRef Barakat MA (2011) New trends in removing heavy metals from industrial wastewater. Arab J Chem 4:361–377CrossRef
Zurück zum Zitat Barakat MA, Schmidt E (2010) Polymer-enhanced ultrafiltration process for heavy metals removal from industrial wastewater. Desalination 256:90–93CrossRef Barakat MA, Schmidt E (2010) Polymer-enhanced ultrafiltration process for heavy metals removal from industrial wastewater. Desalination 256:90–93CrossRef
Zurück zum Zitat Barredo-Damas S, Alcaina-Miranda MI, Bes-Piá A et al (2010) Ceramic membrane behavior in textile wastewater ultrafiltration. Desalination 250:623–628CrossRef Barredo-Damas S, Alcaina-Miranda MI, Bes-Piá A et al (2010) Ceramic membrane behavior in textile wastewater ultrafiltration. Desalination 250:623–628CrossRef
Zurück zum Zitat Bellona C, Marts M, Drewes JE (2010) The effect of organic membrane fouling on properties and rejection characteristics of nanofiltration membranes. Sep Purif Technol 74:44–54CrossRef Bellona C, Marts M, Drewes JE (2010) The effect of organic membrane fouling on properties and rejection characteristics of nanofiltration membranes. Sep Purif Technol 74:44–54CrossRef
Zurück zum Zitat Bes-Piá A, Cuartas-Uribe B, Mendoza-Roca JA et al (2010) Study of the behavior of different NF membranes for the reclamation of a secondary textile effluent in rinsing processes. J Hazard Mater 178:341–348CrossRef Bes-Piá A, Cuartas-Uribe B, Mendoza-Roca JA et al (2010) Study of the behavior of different NF membranes for the reclamation of a secondary textile effluent in rinsing processes. J Hazard Mater 178:341–348CrossRef
Zurück zum Zitat Bonisławska M, Nędzarek A, Drost A et al (2016) The application of ceramic membranes for treating effluent water from closed-circuit fish farming. Arch Environ Prot 42(2):59–66 Bonisławska M, Nędzarek A, Drost A et al (2016) The application of ceramic membranes for treating effluent water from closed-circuit fish farming. Arch Environ Prot 42(2):59–66
Zurück zum Zitat Bowen WR, Yousef HNS (2003) Effect of salts on water viscosity in narrow membrane pores. J Colloid Interf Sci 264:452–457CrossRef Bowen WR, Yousef HNS (2003) Effect of salts on water viscosity in narrow membrane pores. J Colloid Interf Sci 264:452–457CrossRef
Zurück zum Zitat Chaabane T, Taha S, Taleb Ahmed M et al (2006) Removal of copper from industrial effluent using a spiral wound module—film theory and hydrodynamic approach. Desalination 200:403–405CrossRef Chaabane T, Taha S, Taleb Ahmed M et al (2006) Removal of copper from industrial effluent using a spiral wound module—film theory and hydrodynamic approach. Desalination 200:403–405CrossRef
Zurück zum Zitat Chen QY, Luo Z, Hills C et al (2009) Precipitation of heavy metals from wastewater using simulated flue gas: sequent additions of fly ash, lime and carbon dioxide. Water Res 43:2605–2614CrossRef Chen QY, Luo Z, Hills C et al (2009) Precipitation of heavy metals from wastewater using simulated flue gas: sequent additions of fly ash, lime and carbon dioxide. Water Res 43:2605–2614CrossRef
Zurück zum Zitat Csefalvay E, Pauer V, Mizsey P (2009) Recovery of copper from process Walters by nanofiltration and reverse osmosis. Desalination 240:132–142CrossRef Csefalvay E, Pauer V, Mizsey P (2009) Recovery of copper from process Walters by nanofiltration and reverse osmosis. Desalination 240:132–142CrossRef
Zurück zum Zitat Culedge JH, O’Connor JT (1973) Removal of arsenic V from water by adsorption on aluminium and ferric hydroxides. J Am Water Works Ass 65(8):548–552 Culedge JH, O’Connor JT (1973) Removal of arsenic V from water by adsorption on aluminium and ferric hydroxides. J Am Water Works Ass 65(8):548–552
Zurück zum Zitat Das C, Patel P, De S et al (2006) Treatment of tanning effluent using nanofiltration followed by reverse osmosis. Sep Purif Technol 50:291–299CrossRef Das C, Patel P, De S et al (2006) Treatment of tanning effluent using nanofiltration followed by reverse osmosis. Sep Purif Technol 50:291–299CrossRef
Zurück zum Zitat Drost A, Nędzarek A, Bogusławska-Wąs E et al (2014) UF application for innovative reuse of fish brine: product quality, CCP management and the HACCP system. J Food Process Eng 37:396–401CrossRef Drost A, Nędzarek A, Bogusławska-Wąs E et al (2014) UF application for innovative reuse of fish brine: product quality, CCP management and the HACCP system. J Food Process Eng 37:396–401CrossRef
Zurück zum Zitat Drost A, Nędzarek A, Tórz A (2016) Reduction of proteins and products of their hydrolysis in process of cleaning post-production herring (Clupea harengus) marinating brines by using membranes. Membr Water Treat 7(5):451–462CrossRef Drost A, Nędzarek A, Tórz A (2016) Reduction of proteins and products of their hydrolysis in process of cleaning post-production herring (Clupea harengus) marinating brines by using membranes. Membr Water Treat 7(5):451–462CrossRef
Zurück zum Zitat Eccles H (1999) Treatment of metal-contaminated waste: why select a biological process? Trends Biotechnol 17:462–465CrossRef Eccles H (1999) Treatment of metal-contaminated waste: why select a biological process? Trends Biotechnol 17:462–465CrossRef
Zurück zum Zitat Ferella F, Prisciandaro M, Michelis ID, Veglio F (2007) Removal of heavy metals by surfaktant-enhanced ultrafiltration from wastewaters. Desalination 207:125–133CrossRef Ferella F, Prisciandaro M, Michelis ID, Veglio F (2007) Removal of heavy metals by surfaktant-enhanced ultrafiltration from wastewaters. Desalination 207:125–133CrossRef
Zurück zum Zitat Freger V, Arnot TC, Howell JA (2000) Separation of concentrated organic/inorganic salt mixtures by nanofiltration. J Membr Sci 178:185–193CrossRef Freger V, Arnot TC, Howell JA (2000) Separation of concentrated organic/inorganic salt mixtures by nanofiltration. J Membr Sci 178:185–193CrossRef
Zurück zum Zitat Fu F, Wang Q (2011) Removal of heavy metal ions from wastewater: a review. J Environ Manage 92:407–418CrossRef Fu F, Wang Q (2011) Removal of heavy metal ions from wastewater: a review. J Environ Manage 92:407–418CrossRef
Zurück zum Zitat Huang Y, Du JJR, Zhang Y et al (2015) Removal of mercury (II) from wastewater by polyvinylamine-enhanced ultrafiltration. Sep Purif Technol 154:1–10CrossRef Huang Y, Du JJR, Zhang Y et al (2015) Removal of mercury (II) from wastewater by polyvinylamine-enhanced ultrafiltration. Sep Purif Technol 154:1–10CrossRef
Zurück zum Zitat Katsoufidou K, Yiantsios SG, Karabelas AJ (2005) A study of ultrafiltration membrane fouling by humic acid and flux recovery by backwashing: experiments and modeling. J Membr Sci 266:40–50CrossRef Katsoufidou K, Yiantsios SG, Karabelas AJ (2005) A study of ultrafiltration membrane fouling by humic acid and flux recovery by backwashing: experiments and modeling. J Membr Sci 266:40–50CrossRef
Zurück zum Zitat Keng PS, Lee SL, Ha ST et al (2014) Removal of hazardous heavy metals from aqueous environment by low-cost adsorption materials. Environ Chem Lett 12:15–25CrossRef Keng PS, Lee SL, Ha ST et al (2014) Removal of hazardous heavy metals from aqueous environment by low-cost adsorption materials. Environ Chem Lett 12:15–25CrossRef
Zurück zum Zitat Khalid M, Usman M, Siddiq M, Rasool N, Saif MJ, Imran M, Rana UA (2015) Removal of Ni(II) from aqueous solution by using micellar enhanced ultrafiltration. Water Sci Technol 72(6):946–951CrossRef Khalid M, Usman M, Siddiq M, Rasool N, Saif MJ, Imran M, Rana UA (2015) Removal of Ni(II) from aqueous solution by using micellar enhanced ultrafiltration. Water Sci Technol 72(6):946–951CrossRef
Zurück zum Zitat Kheriji J, Tabassi D, Hamrouni B (2015) Removal of Cd(II) ions from aqueous solution and industrial effluent using reverse osmosis and nanofiltration membranes. Water Sci Technol 72(7):1206–1216CrossRef Kheriji J, Tabassi D, Hamrouni B (2015) Removal of Cd(II) ions from aqueous solution and industrial effluent using reverse osmosis and nanofiltration membranes. Water Sci Technol 72(7):1206–1216CrossRef
Zurück zum Zitat Kowalik-Klimczak A, Religa P, Gierycz P (2014) Chemiczne czyszczenie membran nanofiltracyjnych stosowanych do regeneracji chromowych ścieków garbarskich. Inż Aparat Chem 53:261–262 Kowalik-Klimczak A, Religa P, Gierycz P (2014) Chemiczne czyszczenie membran nanofiltracyjnych stosowanych do regeneracji chromowych ścieków garbarskich. Inż Aparat Chem 53:261–262
Zurück zum Zitat Kuca M, Szaniawska D (2009) Application of microfiltration and ceramic membranes for treatment of salted aqueous effluents from fish processing. Desalination 241:227–235CrossRef Kuca M, Szaniawska D (2009) Application of microfiltration and ceramic membranes for treatment of salted aqueous effluents from fish processing. Desalination 241:227–235CrossRef
Zurück zum Zitat Kujawski W, Kujawa J, Wierzbowska E et al (2016) Influence of hydrophobization conditions and ceramic membranes pore size on their properties in vacuum membrane distillation of water-organic solvent mixtures. J Membr Sci 499:442–451CrossRef Kujawski W, Kujawa J, Wierzbowska E et al (2016) Influence of hydrophobization conditions and ceramic membranes pore size on their properties in vacuum membrane distillation of water-organic solvent mixtures. J Membr Sci 499:442–451CrossRef
Zurück zum Zitat Kurniawan TA, Chan GYS, Lo WH et al (2006) Comparisons of low-cost adsorbents for treating wastewaters laden with heavy metals. Sci Tot Environ 366:409–426CrossRef Kurniawan TA, Chan GYS, Lo WH et al (2006) Comparisons of low-cost adsorbents for treating wastewaters laden with heavy metals. Sci Tot Environ 366:409–426CrossRef
Zurück zum Zitat Lou J, Wan Y (2013) Effect of pH and salt on nanofiltration—a critical review. J Membr Sci 438:18–28CrossRef Lou J, Wan Y (2013) Effect of pH and salt on nanofiltration—a critical review. J Membr Sci 438:18–28CrossRef
Zurück zum Zitat Manttari M, Pihlajamaki A, Nystrom M (2006) Effect of pH on hydrophilicity and charge and their effect on the filtration efficiency on NF membranes at different pH. J Membr Sci 280:311–320CrossRef Manttari M, Pihlajamaki A, Nystrom M (2006) Effect of pH on hydrophilicity and charge and their effect on the filtration efficiency on NF membranes at different pH. J Membr Sci 280:311–320CrossRef
Zurück zum Zitat Moayyeri N, Saeb K, Biazar E (2013) Removal of heavy metals (lead, cadmium, zinc, nickel and iron) from water by bio-ceramic absorbers of hydroxy-apatite microparticles. Int J Marine Sci Eng 3(1):13–16 Moayyeri N, Saeb K, Biazar E (2013) Removal of heavy metals (lead, cadmium, zinc, nickel and iron) from water by bio-ceramic absorbers of hydroxy-apatite microparticles. Int J Marine Sci Eng 3(1):13–16
Zurück zum Zitat Mohsen-Nia M, Montazeri P, Modarress H (2007) Removal of Cu2+ and Ni2+ from wastewater with a chelating agent and reverse osmosis processes. Desalination 217:276–281CrossRef Mohsen-Nia M, Montazeri P, Modarress H (2007) Removal of Cu2+ and Ni2+ from wastewater with a chelating agent and reverse osmosis processes. Desalination 217:276–281CrossRef
Zurück zum Zitat Muthukrishnan M, Guha BK (2008) Effect of pH on rejection of hexavalent chromium by nanofiltration. Desalination 219:171–178CrossRef Muthukrishnan M, Guha BK (2008) Effect of pH on rejection of hexavalent chromium by nanofiltration. Desalination 219:171–178CrossRef
Zurück zum Zitat Nędzarek A, Drost A, Harasimiuk F et al (2015a) The influence of pH and BSA on the retention of selected heavy metals in the nanofiltration process using ceramic membrane. Desalination 369:62–67CrossRef Nędzarek A, Drost A, Harasimiuk F et al (2015a) The influence of pH and BSA on the retention of selected heavy metals in the nanofiltration process using ceramic membrane. Desalination 369:62–67CrossRef
Zurück zum Zitat Nędzarek A, Drost A, Harasimiuk F et al (2015b) Application of ceramic membranes for microalgal biomass accumulation and recovery of the permeate to be reused in algae cultivation. J Photoch Photobio B 153:367–372CrossRef Nędzarek A, Drost A, Harasimiuk F et al (2015b) Application of ceramic membranes for microalgal biomass accumulation and recovery of the permeate to be reused in algae cultivation. J Photoch Photobio B 153:367–372CrossRef
Zurück zum Zitat Nguyen HT, Chang W, Nguyen NC et al (2015) Influence of micelle properties on micellar-enhanced ultrafiltration for chromium recovery. Water Sci Technol 72(11):2045–2051CrossRef Nguyen HT, Chang W, Nguyen NC et al (2015) Influence of micelle properties on micellar-enhanced ultrafiltration for chromium recovery. Water Sci Technol 72(11):2045–2051CrossRef
Zurück zum Zitat Oliveira RC, Docé RC, Barros ST (2013) Clarification of passion fruit juice by microfiltration: analyses of operating parameters, study of membrane fouling and juice quality. J Food Eng 111:432–439CrossRef Oliveira RC, Docé RC, Barros ST (2013) Clarification of passion fruit juice by microfiltration: analyses of operating parameters, study of membrane fouling and juice quality. J Food Eng 111:432–439CrossRef
Zurück zum Zitat Pellegrin ML, Burbano MS, Sadler ME et al (2016) Membrane processes. Water Environ Res 88(10):1050–1124CrossRef Pellegrin ML, Burbano MS, Sadler ME et al (2016) Membrane processes. Water Environ Res 88(10):1050–1124CrossRef
Zurück zum Zitat Religa P, Kowalik A, Gierycz P (2011) A new approach to chromium concentration from salt mixture solution using nanosiltration. Separ Purif Technol 82:114–120CrossRef Religa P, Kowalik A, Gierycz P (2011) A new approach to chromium concentration from salt mixture solution using nanosiltration. Separ Purif Technol 82:114–120CrossRef
Zurück zum Zitat Staszak K, Karaś Z, Jaworska K (2013) Comparison of polymeric and ceramic membranes performance in the process of micellar enhanced ultrafiltration of cadmium(II) ions from aqueous solutions. Chem Pap 67(4):380–388CrossRef Staszak K, Karaś Z, Jaworska K (2013) Comparison of polymeric and ceramic membranes performance in the process of micellar enhanced ultrafiltration of cadmium(II) ions from aqueous solutions. Chem Pap 67(4):380–388CrossRef
Zurück zum Zitat Sudilovskiy PS, Kagramanov GG, Kolesnikov VA (2008) Use of RO and NF for treatment of copper containing wastewaters in combination with flotation. Desalination 221:192–201CrossRef Sudilovskiy PS, Kagramanov GG, Kolesnikov VA (2008) Use of RO and NF for treatment of copper containing wastewaters in combination with flotation. Desalination 221:192–201CrossRef
Zurück zum Zitat Sigworth EA, Smith B (1972) Adsorption of inorganic compounds by activated carbon. J Am Water Works Ass 64(6):386–391 Sigworth EA, Smith B (1972) Adsorption of inorganic compounds by activated carbon. J Am Water Works Ass 64(6):386–391
Zurück zum Zitat Zhang LN, Wu YJ, Qu XY, Li ZS, Ni JR (2009) Mechanism of combination membrane and electro-winning process on treatment and remediation of Cu2+ polluted water body. J Environ Sci 21:764–769CrossRef Zhang LN, Wu YJ, Qu XY, Li ZS, Ni JR (2009) Mechanism of combination membrane and electro-winning process on treatment and remediation of Cu2+ polluted water body. J Environ Sci 21:764–769CrossRef
Metadaten
Titel
The Use of Pressure Membrane Separation for Heavy Metal Removal or Recovery
verfasst von
Arkadiusz Nędzarek
Copyright-Jahr
2018
DOI
https://doi.org/10.1007/978-3-319-73978-6_23