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2019 | OriginalPaper | Buchkapitel

Phycoremediation Technology: A Global prospective

verfasst von : Sumedha Nanda Sahu, Narendra Kumar Sahoo, Satya Narayana Naik

Erschienen in: Application of Microalgae in Wastewater Treatment

Verlag: Springer International Publishing

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Abstract

Due to changed land use, population pressure, and consumption pattern, the pollution load on environment is posing threats to ecosystem health and human welfare. The need to search for environmental friendly cleanup techniques for removal or reduction of pollutants has brought phycoremediation into focus which is a global natural phenomenon in maintaining ecological balance. The agents of phycoremediation (micro- and macroalgae) have already been established for their remarkable capacity to detoxify/remove pollutants from environment along with providing a very good platform for production of food supplements, biofuels, and so on. Algae possess a number of desirable properties which help in sequestration of various pollutants from the environment. As a green technology for clean environment and the biomass production, phycoremediation can serve as an appropriate technology. In this chapter, an overview of algae-based bioremediation, its status, and challenges toward global sustainability have been discussed.

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Literatur
Zurück zum Zitat Ahlvik L, Hyytiäinen K (2015) Value of adaptation in water protection – economic impacts of uncertain climate change in the Baltic Sea. Ecol Econ 116:231–240 Ahlvik L, Hyytiäinen K (2015) Value of adaptation in water protection – economic impacts of uncertain climate change in the Baltic Sea. Ecol Econ 116:231–240
Zurück zum Zitat Ajayan KV, Selvaraju M, Thirugnanamoorthy K (2011) Growth and heavy metals accumulation potential of microalgae grown in sewage wastewater and Petrochemical Effluents. Pak J Biol Sci 14(16):805–811 Ajayan KV, Selvaraju M, Thirugnanamoorthy K (2011) Growth and heavy metals accumulation potential of microalgae grown in sewage wastewater and Petrochemical Effluents. Pak J Biol Sci 14(16):805–811
Zurück zum Zitat Arora V (2013) Energy statistics 2013. Central Statistics Office, Ministry of Statistics and Programme Implementation, Government of India. [cited 4.12.2013] Arora V (2013) Energy statistics 2013. Central Statistics Office, Ministry of Statistics and Programme Implementation, Government of India. [cited 4.12.2013]
Zurück zum Zitat Arunakumara KKIU, Zhang X, Song X (2008) Bioaccumulation of PB2+ and its effects on growth, morphology and pigment contents of Spirulina (Arthrospira) platensis. J Ocean Univ China 7(4):397–403 Arunakumara KKIU, Zhang X, Song X (2008) Bioaccumulation of PB2+ and its effects on growth, morphology and pigment contents of Spirulina (Arthrospira) platensis. J Ocean Univ China 7(4):397–403
Zurück zum Zitat Ayse BY, Oya I, Selin S (2005) Bioaccumulation and toxicity of different copper concentrations in Tetraselmis chuii. EU J Fish Aquat Sci 22(3–4):297–304 Ayse BY, Oya I, Selin S (2005) Bioaccumulation and toxicity of different copper concentrations in Tetraselmis chuii. EU J Fish Aquat Sci 22(3–4):297–304
Zurück zum Zitat Beneman JR, Foopman BL, Weissman JC, Eisenher DM, Oswald WJ (1980) Cultivation on sewage of microalgae harvestable by microstrainer. Progress Report. Sanitary Engineering Research Laboratory, University of California, Berkeley Beneman JR, Foopman BL, Weissman JC, Eisenher DM, Oswald WJ (1980) Cultivation on sewage of microalgae harvestable by microstrainer. Progress Report. Sanitary Engineering Research Laboratory, University of California, Berkeley
Zurück zum Zitat Blanken W, Janssen M, Cuaresma M, Libor Z, Bhaiji T, Wijffels RH (2014) Biofilm growth of Chlorella sorokiniana in a rotating biological contactor based photobioreactor. Biotechnol Bioeng 111:2436–2445 Blanken W, Janssen M, Cuaresma M, Libor Z, Bhaiji T, Wijffels RH (2014) Biofilm growth of Chlorella sorokiniana in a rotating biological contactor based photobioreactor. Biotechnol Bioeng 111:2436–2445
Zurück zum Zitat Boonma S, Chaiklangmuang S, Chaiwongsar S, Pekkoh J, Pumas C, Ungsethaphand T, Tongsiri S, Peerapornpisal Y (2014) Enhanced carbon dioxide fixation and bio-oil production of a microalgal consortium. Clean Soil Air Water 43:761–766 Boonma S, Chaiklangmuang S, Chaiwongsar S, Pekkoh J, Pumas C, Ungsethaphand T, Tongsiri S, Peerapornpisal Y (2014) Enhanced carbon dioxide fixation and bio-oil production of a microalgal consortium. Clean Soil Air Water 43:761–766
Zurück zum Zitat Bose S, Das C (2013) Preparation and characterization of low cost tubular ceramic support membranes using sawdust as a pore-former. Mater Lett 110:152–155 Bose S, Das C (2013) Preparation and characterization of low cost tubular ceramic support membranes using sawdust as a pore-former. Mater Lett 110:152–155
Zurück zum Zitat Brooks BW, Lazorchak JM, Howard MDA, Johnson M-VV, Morton SL, Perkins DAK, Reavie ED, Scott GI, Smith SA, Steevens JA (2016) Are harmful algal blooms becoming the greatest inland water quality threat to public health and aquatic ecosystems? Environ Toxicol Chem 35:6–13 Brooks BW, Lazorchak JM, Howard MDA, Johnson M-VV, Morton SL, Perkins DAK, Reavie ED, Scott GI, Smith SA, Steevens JA (2016) Are harmful algal blooms becoming the greatest inland water quality threat to public health and aquatic ecosystems? Environ Toxicol Chem 35:6–13
Zurück zum Zitat CA (Comprehensive Assessment of Water Management in Agriculture) (2007) Water for food, water for life: a comprehensive assessment of water management in agriculture. Earthscan/International Water Management Institute, Colombo/London CA (Comprehensive Assessment of Water Management in Agriculture) (2007) Water for food, water for life: a comprehensive assessment of water management in agriculture. Earthscan/International Water Management Institute, Colombo/London
Zurück zum Zitat Cardinale BJ (2011) Biodiversity improves water quality through niche partitioning. Nature 472:86–89 Cardinale BJ (2011) Biodiversity improves water quality through niche partitioning. Nature 472:86–89
Zurück zum Zitat Chen L, Chen J, Zhang X, Xie P (2016) A review of reproductive toxicity of microcystins. J Hazard Mater 301:381–399 Chen L, Chen J, Zhang X, Xie P (2016) A review of reproductive toxicity of microcystins. J Hazard Mater 301:381–399
Zurück zum Zitat Christenson LB, Sims RC (2012) Rotating algal biofilm reactor and spool harvester for wastewater treatment with biofuels by-products. Biotechnol Bioeng 109:1674–1684 Christenson LB, Sims RC (2012) Rotating algal biofilm reactor and spool harvester for wastewater treatment with biofuels by-products. Biotechnol Bioeng 109:1674–1684
Zurück zum Zitat Craggs RJ, Heubeck S, Lundquist TJ, Benemann JR (2011) Algal biofuels from wastewater treatment high rate algal ponds. Water Sci Technol 63:660–665 Craggs RJ, Heubeck S, Lundquist TJ, Benemann JR (2011) Algal biofuels from wastewater treatment high rate algal ponds. Water Sci Technol 63:660–665
Zurück zum Zitat Dana GV, Kuiken T, Rejeski D, Snow AA (2012) Synthetic biology: four steps to avoid a synthetic-biology disaster. Nature 483:29 Dana GV, Kuiken T, Rejeski D, Snow AA (2012) Synthetic biology: four steps to avoid a synthetic-biology disaster. Nature 483:29
Zurück zum Zitat Davis R, Aden A, Pienkos PT (2011) Techno-economic analysis of autotrophic microalgae for fuel production. Appl Energy 88:3524–3531 Davis R, Aden A, Pienkos PT (2011) Techno-economic analysis of autotrophic microalgae for fuel production. Appl Energy 88:3524–3531
Zurück zum Zitat Dong Q, Zhao X (2004) In situ carbon dioxide fixation in the process of natural astaxanthin production by a mixed culture of Haematococcus pluvialis and Phaffia rhodozyma. Catal Today 98:537–544 Dong Q, Zhao X (2004) In situ carbon dioxide fixation in the process of natural astaxanthin production by a mixed culture of Haematococcus pluvialis and Phaffia rhodozyma. Catal Today 98:537–544
Zurück zum Zitat Dubey KK, Kumar S, Dixit D, Kumar P, Kumar D, Jawed A, Haque S (2015) Implication of industrial waste for biomass and lipid production in Chlorella minutissima under autotrophic, heterotrophic, and mixotrophic grown conditions. Applied biochemistry and biotechnology 176(6):1581–1595 Dubey KK, Kumar S, Dixit D, Kumar P, Kumar D, Jawed A, Haque S (2015) Implication of industrial waste for biomass and lipid production in Chlorella minutissima under autotrophic, heterotrophic, and mixotrophic grown conditions. Applied biochemistry and biotechnology 176(6):1581–1595
Zurück zum Zitat Efroymson RA, Dale VH, Langholtz MH (2016) Socioeconomic indicators for sustainable design and commercial development of algal biofuel systems. GCB Bioenergy 1673:1–19 Efroymson RA, Dale VH, Langholtz MH (2016) Socioeconomic indicators for sustainable design and commercial development of algal biofuel systems. GCB Bioenergy 1673:1–19
Zurück zum Zitat Escobar J, Brenner M, Whitmore TJ, Kenney WF, Curtis JH (2008) Ecology of testate amoebae (thecamoebians) in subtropical Florida lakes. J Paleolimnol 40(2):715–731 Escobar J, Brenner M, Whitmore TJ, Kenney WF, Curtis JH (2008) Ecology of testate amoebae (thecamoebians) in subtropical Florida lakes. J Paleolimnol 40(2):715–731
Zurück zum Zitat Flynn KJ, Greenwell HC, Lovitt RW, Shields RJ (2010) Selection for fitness at the individual or population levels: modelling effects of genetic modifications in microalgae on productivity and environmental safety. J Theor Biol 263:269–280 Flynn KJ, Greenwell HC, Lovitt RW, Shields RJ (2010) Selection for fitness at the individual or population levels: modelling effects of genetic modifications in microalgae on productivity and environmental safety. J Theor Biol 263:269–280
Zurück zum Zitat Gani P, Sunar NM, Matias-Peralta H, Latiff AAA, Parjo UK, Razak ARA (2015) Phycoremediation of wastewaters and potential hydrocarbon from microalgae: a review. Adv Environ Biol 9(20). Special):1–8 Gani P, Sunar NM, Matias-Peralta H, Latiff AAA, Parjo UK, Razak ARA (2015) Phycoremediation of wastewaters and potential hydrocarbon from microalgae: a review. Adv Environ Biol 9(20). Special):1–8
Zurück zum Zitat Garnikar D (2002) Accumulation of copper, mercury and lead in Spirulina platensis studied in Zarrouk’s medium. J KMITNB 12(4):333–335 Garnikar D (2002) Accumulation of copper, mercury and lead in Spirulina platensis studied in Zarrouk’s medium. J KMITNB 12(4):333–335
Zurück zum Zitat Gebreslassie BH, Waymire R, You FQ (2013) Sustainable design and synthesis of algae-based biorefinery for simultaneous hydrocarbon biofuel production and carbon sequestration. AICHE J 59:1599–1621 Gebreslassie BH, Waymire R, You FQ (2013) Sustainable design and synthesis of algae-based biorefinery for simultaneous hydrocarbon biofuel production and carbon sequestration. AICHE J 59:1599–1621
Zurück zum Zitat Guarnieri MT, Pienkos PT (2015) Algal omics: unlocking bioproduct diversity in algae cell factories. Photosynth Res 123:255–263 Guarnieri MT, Pienkos PT (2015) Algal omics: unlocking bioproduct diversity in algae cell factories. Photosynth Res 123:255–263
Zurück zum Zitat Hall CAS, Benemann JR (2011) Oil from algae? Bioscience 61:741–742 Hall CAS, Benemann JR (2011) Oil from algae? Bioscience 61:741–742
Zurück zum Zitat Halpern BS, Walbridge S, Selkoe KA, Kappel CV, Micheli F, D’Agrosa C, Bruno JF, Casey KS, Ebert C, Fox HE, Fujita R, Heinemann D, Lenihan HS, Madin EMP, Perry MT, Selig ER, Spalding M, Steneck R, Watson R (2008) A global map of human impact on marine ecosystems. Science 319:948–952 Halpern BS, Walbridge S, Selkoe KA, Kappel CV, Micheli F, D’Agrosa C, Bruno JF, Casey KS, Ebert C, Fox HE, Fujita R, Heinemann D, Lenihan HS, Madin EMP, Perry MT, Selig ER, Spalding M, Steneck R, Watson R (2008) A global map of human impact on marine ecosystems. Science 319:948–952
Zurück zum Zitat Handler RM, Canter CE, Kalnes TN, Lupton FS, Kholiqov O, Shonnard DR, Blowers P (2012) Evaluation of environmental impacts from microalgae cultivation in open-air raceway ponds: analysis of the prior literature and investigation of wide variance in predicted impacts. Algal Res 1:83–92 Handler RM, Canter CE, Kalnes TN, Lupton FS, Kholiqov O, Shonnard DR, Blowers P (2012) Evaluation of environmental impacts from microalgae cultivation in open-air raceway ponds: analysis of the prior literature and investigation of wide variance in predicted impacts. Algal Res 1:83–92
Zurück zum Zitat Higa T, Wididana GN (1991) Changes in the soil microflora induced by Effective Microorganisms. In: Parr JF, Hornick SB, Whitman CE (eds) Proceedings of the First International Conference on Kyusei Nature Farming. U.S. Department of Agriculture, Washington, DC, pp 153–162 Higa T, Wididana GN (1991) Changes in the soil microflora induced by Effective Microorganisms. In: Parr JF, Hornick SB, Whitman CE (eds) Proceedings of the First International Conference on Kyusei Nature Farming. U.S. Department of Agriculture, Washington, DC, pp 153–162
Zurück zum Zitat Johnson KR, Admassu W (2013) Mixed algae cultures for low cost environmental compensation in cultures grown for lipid production and wastewater remediation. J Chem Technol Biotechnol 88:992–998 Johnson KR, Admassu W (2013) Mixed algae cultures for low cost environmental compensation in cultures grown for lipid production and wastewater remediation. J Chem Technol Biotechnol 88:992–998
Zurück zum Zitat Kesaano M, Sims RC (2014) Algal biofilm based technology for wastewater treatment. Algal Res 5:231–240 Kesaano M, Sims RC (2014) Algal biofilm based technology for wastewater treatment. Algal Res 5:231–240
Zurück zum Zitat Kim JK, Kottuparambil S, Moh SH, Lee TK, Kim Y-J, Rhee J-s, Choi E-M, Kim BH, Hu YJ, Yarish C, Han T (2015) Potential application of nuisance microalgae blooms. J Appl Phycol 27:1223–1234 Kim JK, Kottuparambil S, Moh SH, Lee TK, Kim Y-J, Rhee J-s, Choi E-M, Kim BH, Hu YJ, Yarish C, Han T (2015) Potential application of nuisance microalgae blooms. J Appl Phycol 27:1223–1234
Zurück zum Zitat Kong Q-X, Li L, Martinez B, Chen P, Ruan R (2010) Culture of microalgae Chlamydomonas reinhardtii in wastewater for biomass feedstock production. Appl Biochem Biotechnol 160:9–18 Kong Q-X, Li L, Martinez B, Chen P, Ruan R (2010) Culture of microalgae Chlamydomonas reinhardtii in wastewater for biomass feedstock production. Appl Biochem Biotechnol 160:9–18
Zurück zum Zitat Langer ES (2008) Batch Failure Rates in Biomanufacturing. Genetic Engineering and Biotechnology News 28(14) Langer ES (2008) Batch Failure Rates in Biomanufacturing. Genetic Engineering and Biotechnology News 28(14)
Zurück zum Zitat Luo S, Chen B, Lin L, Wang X, Tam NFY, Luan T (2014) Pyrene degradation accelerated by constructed consortium of bacterium and microalga: effects of degradation products on the microalgal growth. Environ Sci Technol 48:13917–13924 Luo S, Chen B, Lin L, Wang X, Tam NFY, Luan T (2014) Pyrene degradation accelerated by constructed consortium of bacterium and microalga: effects of degradation products on the microalgal growth. Environ Sci Technol 48:13917–13924
Zurück zum Zitat Mane PC, Bhosle AB, Jangam CM et al (2011) Bioadsorption of selenium by Pretreated Algal Biomass Advances in applied. Sci Res 2(2):202–207 Mane PC, Bhosle AB, Jangam CM et al (2011) Bioadsorption of selenium by Pretreated Algal Biomass Advances in applied. Sci Res 2(2):202–207
Zurück zum Zitat Mani D, Kumar C (2014) Biotechnological advances in bioremediation of heavy metals contaminated ecosystems: an overview with special reference to phytoremediation. Int J Environ Sci Technol 11(3):843–872 Mani D, Kumar C (2014) Biotechnological advances in bioremediation of heavy metals contaminated ecosystems: an overview with special reference to phytoremediation. Int J Environ Sci Technol 11(3):843–872
Zurück zum Zitat Markou G, Nerantzis E (2013) Microalgae for high-value compounds and biofuels production: a review with focus on cultivation under stress conditions. Biotechnol Adv 31:1532–1542 Markou G, Nerantzis E (2013) Microalgae for high-value compounds and biofuels production: a review with focus on cultivation under stress conditions. Biotechnol Adv 31:1532–1542
Zurück zum Zitat Mcneil B, Giavasis I, Archer D, et al. (2013) Microbial production of food ingredients, enzymes and nutraceuticals. 1st ed. Mcneil B, Giavasis I, Archer D, et al., editors. Woodhead Publishing, Cambridge Mcneil B, Giavasis I, Archer D, et al. (2013) Microbial production of food ingredients, enzymes and nutraceuticals. 1st ed. Mcneil B, Giavasis I, Archer D, et al., editors. Woodhead Publishing, Cambridge
Zurück zum Zitat Merchant SS et al (2007) The Chlamydomonas genome reveals the evolution of key animal and plant functions. Science 318:245 Merchant SS et al (2007) The Chlamydomonas genome reveals the evolution of key animal and plant functions. Science 318:245
Zurück zum Zitat Mulbry W, Kondrad S, Pizarro C, Kebede-Westhead E (2008) Treatment of dairy manure effluent using freshwater algae: algal productivity and recovery of manure nutrients using pilot-scale algal turf scrubbers. Bioresour Technol 99:8137–8142 Mulbry W, Kondrad S, Pizarro C, Kebede-Westhead E (2008) Treatment of dairy manure effluent using freshwater algae: algal productivity and recovery of manure nutrients using pilot-scale algal turf scrubbers. Bioresour Technol 99:8137–8142
Zurück zum Zitat Myhre G, Shindell D., Bréon FM, Collins W, Fuglestvedt J, Huang J, Koch D, Lamarque JF, Lee D, Mendoza B, Nakajima T, Robock A, Stephens G, Takemura T, Zhang H (2013) Anthropogenic and natural radiative forcing. IPCC Fifth Assessment Report, 2014 (AR5) Myhre G, Shindell D., Bréon FM, Collins W, Fuglestvedt J, Huang J, Koch D, Lamarque JF, Lee D, Mendoza B, Nakajima T, Robock A, Stephens G, Takemura T, Zhang H (2013) Anthropogenic and natural radiative forcing. IPCC Fifth Assessment Report, 2014 (AR5)
Zurück zum Zitat Necton SA (1990) Estudo de localizac¸a˜o de unidade industrial para produc¸a˜o de microalgas em portugal. Olha˜o, Portugal: Necton, Companhia Portuguesa de Culturas Marinhas, S.A. p. 71 Necton SA (1990) Estudo de localizac¸a˜o de unidade industrial para produc¸a˜o de microalgas em portugal. Olha˜o, Portugal: Necton, Companhia Portuguesa de Culturas Marinhas, S.A. p. 71
Zurück zum Zitat Nirmal Kumar JI, Cini O (2012) Removal of heavy metals by biosorption using freshwater alga Spirogyra hyalina. J Environ Biol 33:27–31 Nirmal Kumar JI, Cini O (2012) Removal of heavy metals by biosorption using freshwater alga Spirogyra hyalina. J Environ Biol 33:27–31
Zurück zum Zitat Olguin EJ, Sanchez-Galvan G (2012) Heavy metal removal in phytofiltration and phycoremediation: the need to differentiate between bioadsorption and bioaccumulation. New Biotechnol 30:3–8 Olguin EJ, Sanchez-Galvan G (2012) Heavy metal removal in phytofiltration and phycoremediation: the need to differentiate between bioadsorption and bioaccumulation. New Biotechnol 30:3–8
Zurück zum Zitat Oswald WJ, Golueke CG (1960) Biological transformation of solar energy. In Advances in applied microbiology (Vol. 2, pp. 223–262). Academic Press Oswald WJ, Golueke CG (1960) Biological transformation of solar energy. In Advances in applied microbiology (Vol. 2, pp. 223–262). Academic Press
Zurück zum Zitat Paerl HW, Huisman J (2009) Climate change: a Catalyst for global expansion of harmful cyanobacterial blooms. Environ Microbiol Rep 1(1):27–37 Paerl HW, Huisman J (2009) Climate change: a Catalyst for global expansion of harmful cyanobacterial blooms. Environ Microbiol Rep 1(1):27–37
Zurück zum Zitat Pandhal J, Choon WL, Kapoore RV, Russo DA, Hanotu J, Grant Wilson IA, Desai P, Bailey M, Zimmerman WJ, Ferguson AS (2018) Harvesting environmental microalgal blooms for remediation and resource recovery: a laboratory scale investigation with economic and microbial community impact assessment. Biology 7:4. https://doi.org/10.3390/biology7010004CrossRef Pandhal J, Choon WL, Kapoore RV, Russo DA, Hanotu J, Grant Wilson IA, Desai P, Bailey M, Zimmerman WJ, Ferguson AS (2018) Harvesting environmental microalgal blooms for remediation and resource recovery: a laboratory scale investigation with economic and microbial community impact assessment. Biology 7:4. https://​doi.​org/​10.​3390/​biology7010004CrossRef
Zurück zum Zitat Pankratz S, Oyedun AO, Zhang X, Kumar A (2017) Algae production platforms for Canada’s northern climate. Renew Sust Energ Rev 80:109–120 Pankratz S, Oyedun AO, Zhang X, Kumar A (2017) Algae production platforms for Canada’s northern climate. Renew Sust Energ Rev 80:109–120
Zurück zum Zitat Parameswari E, Lakshmanan A, Thilagavathi T (2010) Phycoremediation of heavy metals in polluted waterbodies. Elec J Env Agricult Food Chem Title 9(4):808–814 Parameswari E, Lakshmanan A, Thilagavathi T (2010) Phycoremediation of heavy metals in polluted waterbodies. Elec J Env Agricult Food Chem Title 9(4):808–814
Zurück zum Zitat Park JBK, Craggs RJ, Shilton AN (2011) Wastewater treatment high rate algal ponds for biofuel production. Bioresour Technol 102:35–42 Park JBK, Craggs RJ, Shilton AN (2011) Wastewater treatment high rate algal ponds for biofuel production. Bioresour Technol 102:35–42
Zurück zum Zitat Patel VK, Sahoo NK, Patel AK, Rout PK, Naik SN, Kalra A (2017) Exploring microalgae consortia for biomass production: a synthetic ecological engineering approach towards sustainable production of biofuel feedstock. In Algal biofuels (pp. 109–126). Springer, Cham Patel VK, Sahoo NK, Patel AK, Rout PK, Naik SN, Kalra A (2017) Exploring microalgae consortia for biomass production: a synthetic ecological engineering approach towards sustainable production of biofuel feedstock. In Algal biofuels (pp. 109–126). Springer, Cham
Zurück zum Zitat Paul VJ (2008) Global warming and cyanobacterial harmful algal blooms. In: Hudnell HK (ed) Cyanobacterial harmful algal blooms: state of the science and research needs, Advances in experimental medicine and biology, vol 619. Springer, New York, pp 239–257 Paul VJ (2008) Global warming and cyanobacterial harmful algal blooms. In: Hudnell HK (ed) Cyanobacterial harmful algal blooms: state of the science and research needs, Advances in experimental medicine and biology, vol 619. Springer, New York, pp 239–257
Zurück zum Zitat Picot B, Bahlaoui A, Moersidik S, Baleux B, Bontoux J (1992) Comparison of the purifying efficiency of high rate algal pond with stabilization. Pond Water Sci Technol 25:197–206 Picot B, Bahlaoui A, Moersidik S, Baleux B, Bontoux J (1992) Comparison of the purifying efficiency of high rate algal pond with stabilization. Pond Water Sci Technol 25:197–206
Zurück zum Zitat Priyadarshani I, Sahu D, Rath B (2011) Microalgal bioremediation: current practices and perspectives. J Biochem Technol 3(3):299–304 Priyadarshani I, Sahu D, Rath B (2011) Microalgal bioremediation: current practices and perspectives. J Biochem Technol 3(3):299–304
Zurück zum Zitat Qin B, Li W, Zhu G, Zhang Y, Wu T, Gao G (2015) Cyanobacterial bloom management through integrated monitoring and forecasting in large shallow eutrophic Lake Taihu (China). J Hazard Mater 287:356–363 Qin B, Li W, Zhu G, Zhang Y, Wu T, Gao G (2015) Cyanobacterial bloom management through integrated monitoring and forecasting in large shallow eutrophic Lake Taihu (China). J Hazard Mater 287:356–363
Zurück zum Zitat Quinn JC, Davis R (2015) The potentials and challenges of algae based biofuels: a review of the techno-economic, life cycle, and resource assessment modeling. Bioresour Technol 184:444–452 Quinn JC, Davis R (2015) The potentials and challenges of algae based biofuels: a review of the techno-economic, life cycle, and resource assessment modeling. Bioresour Technol 184:444–452
Zurück zum Zitat Rawat I, Kumar RR, Mutanda T, Bux F (2011) Dual role of microalgae: phycoremediation of domestic wastewater and biomass production for sustainable biofuels production. Appl Energy 88:3411–3424 Rawat I, Kumar RR, Mutanda T, Bux F (2011) Dual role of microalgae: phycoremediation of domestic wastewater and biomass production for sustainable biofuels production. Appl Energy 88:3411–3424
Zurück zum Zitat Renuka N, Sood A, Ratha SK, Prasanna R, Ahluwalia AS (2013) Evaluation of microalgal consortia for treatment of primary treated sewage effluent and biomass production. J Appl Phycol 25:1529–1537 Renuka N, Sood A, Ratha SK, Prasanna R, Ahluwalia AS (2013) Evaluation of microalgal consortia for treatment of primary treated sewage effluent and biomass production. J Appl Phycol 25:1529–1537
Zurück zum Zitat Richardson JW, Johnson MD, Outlaw JL (2012) Economic comparison of open pond raceways to photo bio-reactors for profitable production of algae for transportation fuels in the Southwest. Algal Res 1:93–100 Richardson JW, Johnson MD, Outlaw JL (2012) Economic comparison of open pond raceways to photo bio-reactors for profitable production of algae for transportation fuels in the Southwest. Algal Res 1:93–100
Zurück zum Zitat Rismani-Yazdi H, Haznedaroglu BZ, Bibby K, Peccia J (2011) Transcriptome sequencing and annotation of the microalgae Dunaliella tertiolecta: pathway description and gene discovery for production of next-generation biofuels. BMC Genomics 12:148 Rismani-Yazdi H, Haznedaroglu BZ, Bibby K, Peccia J (2011) Transcriptome sequencing and annotation of the microalgae Dunaliella tertiolecta: pathway description and gene discovery for production of next-generation biofuels. BMC Genomics 12:148
Zurück zum Zitat Sahoo NK (2010) Nutrient removal, growth response and lipid enrichment by a phytoplankton community. J Algal Biomass Util 1(3):1–28 Sahoo NK (2010) Nutrient removal, growth response and lipid enrichment by a phytoplankton community. J Algal Biomass Util 1(3):1–28
Zurück zum Zitat Schindler DW, Hecky RE, Findlay DL, Stainton MP, Parker BR, Paterson MJ, Beaty KG, Lyng M, Kasian SEM (2008) Eutrophication of lakes cannot be controlled by reducing nitrogen input: results of a 37–year whole–ecosystem experiment. Proc Natl Acad Sci U S A 105(32):11254–11258 Schindler DW, Hecky RE, Findlay DL, Stainton MP, Parker BR, Paterson MJ, Beaty KG, Lyng M, Kasian SEM (2008) Eutrophication of lakes cannot be controlled by reducing nitrogen input: results of a 37–year whole–ecosystem experiment. Proc Natl Acad Sci U S A 105(32):11254–11258
Zurück zum Zitat Shukia SP, Singh JS, Kashyap S, Giri DD, Kashyap AK (2008) Antarctic cyanobacteria as a source of phycocyanin: an assessment. Ind J Marine Sci 37:446–449 Shukia SP, Singh JS, Kashyap S, Giri DD, Kashyap AK (2008) Antarctic cyanobacteria as a source of phycocyanin: an assessment. Ind J Marine Sci 37:446–449
Zurück zum Zitat Singh SK, Bansal A, Jha MK et al (2011) An integrated approach to remove Cr(VI) using immobilized Chlorella minutissima grown in nutrient rich sewage waste water. Bioresour Technol:1–9 Singh SK, Bansal A, Jha MK et al (2011) An integrated approach to remove Cr(VI) using immobilized Chlorella minutissima grown in nutrient rich sewage waste water. Bioresour Technol:1–9
Zurück zum Zitat Smith GJ, Daniels V (2018) Algal blooms of the 18th and 19th centuries. Toxicon 142:42–44 Smith GJ, Daniels V (2018) Algal blooms of the 18th and 19th centuries. Toxicon 142:42–44
Zurück zum Zitat Snow AA, Smith VH (2012) Genetically engineered algae for biofuels: a key role for ecologists. Bioscience 62:765–768 Snow AA, Smith VH (2012) Genetically engineered algae for biofuels: a key role for ecologists. Bioscience 62:765–768
Zurück zum Zitat Spurgeon DJ, Jones OAH, Dorne J-LCM, Svendsen C, Swain S, Stürzenbaum SR (2010) Systems toxicology approaches for understanding the joint effects of environmental chemical mixtures. Sci Total Environ 408:3725–3734 Spurgeon DJ, Jones OAH, Dorne J-LCM, Svendsen C, Swain S, Stürzenbaum SR (2010) Systems toxicology approaches for understanding the joint effects of environmental chemical mixtures. Sci Total Environ 408:3725–3734
Zurück zum Zitat Subashchandrabose SR, Balasubramanian R, Megharaj M, Venkateswarlu K, Naidu R (2011) Consortia of cyanobacteria/microalgae and bacteria: biotechnological potential. Biotechnol Adv 29(6):896–907 Subashchandrabose SR, Balasubramanian R, Megharaj M, Venkateswarlu K, Naidu R (2011) Consortia of cyanobacteria/microalgae and bacteria: biotechnological potential. Biotechnol Adv 29(6):896–907
Zurück zum Zitat Suresh Kumar K, Dahms H-U, Won E-J, Lee J-S, Shin K-H (2015) Microalgae – A promising tool for heavy metal remediation. Ecotoxicol Environ Saf 113:329–352 Suresh Kumar K, Dahms H-U, Won E-J, Lee J-S, Shin K-H (2015) Microalgae – A promising tool for heavy metal remediation. Ecotoxicol Environ Saf 113:329–352
Zurück zum Zitat Tabatabaei M, Tohidfar M, Jouzani GS, Safarnejad M, Pazouki M (2011) Biodiesel production from genetically engineered microalgae: future of bioenergy in Iran. Renew Sust Energ Rev 15:1918–1927 Tabatabaei M, Tohidfar M, Jouzani GS, Safarnejad M, Pazouki M (2011) Biodiesel production from genetically engineered microalgae: future of bioenergy in Iran. Renew Sust Energ Rev 15:1918–1927
Zurück zum Zitat Talbot P, De la Noüe J (1993) Tertiary treatment of wastewater with Phormidium bonheri (Schmidle) under various light and temperature conditions. Water Res 27:153–159 Talbot P, De la Noüe J (1993) Tertiary treatment of wastewater with Phormidium bonheri (Schmidle) under various light and temperature conditions. Water Res 27:153–159
Zurück zum Zitat Tang JX, Hoagland KD, Siegfried BD (1997) Differential toxicity of atrazine to selected freshwater algae. Bull Environ Contam Toxicol 59:631–637 Tang JX, Hoagland KD, Siegfried BD (1997) Differential toxicity of atrazine to selected freshwater algae. Bull Environ Contam Toxicol 59:631–637
Zurück zum Zitat Thomas DG, Minj N, Mohan N, Rao PH (2016) Cultivation of microalgae in domestic wastewater for biofuel applications – An upstream approach. J Algal Biomass Util 7(1):62–70 Thomas DG, Minj N, Mohan N, Rao PH (2016) Cultivation of microalgae in domestic wastewater for biofuel applications – An upstream approach. J Algal Biomass Util 7(1):62–70
Zurück zum Zitat Travieso L, Canizares RO, Borja R et al (1999) Heavy metal removal by microalgae. Bull Environ Contam Toxicol 62:144–151 Travieso L, Canizares RO, Borja R et al (1999) Heavy metal removal by microalgae. Bull Environ Contam Toxicol 62:144–151
Zurück zum Zitat United Nation World Water Development Report. United Nations Educational, Scientific and Cultural Organization 2014. ISBN 978-92-3-104259-1 United Nation World Water Development Report. United Nations Educational, Scientific and Cultural Organization 2014. ISBN 978-92-3-104259-1
Zurück zum Zitat Usher PK, Ross AB, Camargo-Valero MA, Tomlin AS, Gale WF (2014) An overview of the potential environmental impacts of large-scale microalgae cultivation. Biofuels 5(3):331–349 Usher PK, Ross AB, Camargo-Valero MA, Tomlin AS, Gale WF (2014) An overview of the potential environmental impacts of large-scale microalgae cultivation. Biofuels 5(3):331–349
Zurück zum Zitat Verween A, Queguineur B, Casteleyn G, Fernandez GA, Leu S, Biondi N, et al. (2011) Algae and aquatic biomass for a sustainable production of 2nd generation biofuels: deliverable 1.6-mapping of natural resources in artificial, marine and freshwater bodies [Internet]. Available from: http://www.aquafuels.eu/deliverables.html Verween A, Queguineur B, Casteleyn G, Fernandez GA, Leu S, Biondi N, et al. (2011) Algae and aquatic biomass for a sustainable production of 2nd generation biofuels: deliverable 1.6-mapping of natural resources in artificial, marine and freshwater bodies [Internet]. Available from: http://​www.​aquafuels.​eu/​deliverables.​html
Zurück zum Zitat Wilkie AC, Mulbry WW (2002) Recovery of dairy manure nutrients by benthic freshwater algae. Bioresour Technol 84:81–91 Wilkie AC, Mulbry WW (2002) Recovery of dairy manure nutrients by benthic freshwater algae. Bioresour Technol 84:81–91
Zurück zum Zitat Yen H-W, Chen P-W, Chen L-J (2014) The synergistic effects for the co-cultivation of oleaginous yeast-Rhodotorula glutinis and microalgae-Scenedesmus obliquus on the biomass and total lipids accumulation. Bioresour Technol 184:148–152 Yen H-W, Chen P-W, Chen L-J (2014) The synergistic effects for the co-cultivation of oleaginous yeast-Rhodotorula glutinis and microalgae-Scenedesmus obliquus on the biomass and total lipids accumulation. Bioresour Technol 184:148–152
Zurück zum Zitat Zeng Y, Zhao B, Zhu L, Tong D, Hu C (2013) Catalytic pyrolysis of natural algae from water blooms over nickel phosphide for high quality bio-oil production. RSC Advances 3(27): 10806–10816 Zeng Y, Zhao B, Zhu L, Tong D, Hu C (2013) Catalytic pyrolysis of natural algae from water blooms over nickel phosphide for high quality bio-oil production. RSC Advances 3(27): 10806–10816
Metadaten
Titel
Phycoremediation Technology: A Global prospective
verfasst von
Sumedha Nanda Sahu
Narendra Kumar Sahoo
Satya Narayana Naik
Copyright-Jahr
2019
DOI
https://doi.org/10.1007/978-3-030-13913-1_1