Algal extracellular organic matter mediated photocatalytic degradation of estrogens
Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In thi...
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Published in | Ecotoxicology and environmental safety Vol. 209; p. 111818 |
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Format | Journal Article |
Language | English |
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01.02.2021
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Abstract | Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In this study, three microalgae species, including Selenastrum capricornutum, Scenedesmus quadricauda and Chlorella vulgaris were selected to conduct batch experiments to examine important mechanisms, especially the role of algal extracellular organic matter (AEOM) on two selected estrogens (17β-estradiol, E2 and 17α-ethynylestradiol, EE2) removal. Results showed that estrogens could not be significantly degraded under visible light irradiation and adsorption of estrogens by microalgae was negligible. All three living microalgae cultures have ability to remove E2 and EE2, and Selenastrum capricornutum showed the highest E2 and EE2 removal efficiency of 91% and 83%, respectively, corresponding to the reduction of predicted estrogenic activity of 86%. AEOM from three microalgae cultures could induce photodegradation of estrogens, and AEOM from Selenastrum capricornutum and Chlorella vulgaris achieved 100% of E2 and EE2 removal under visible light irradiation. Fluorescence excitation–emission matrix spectroscopy identified humic/fulvic-like substances in AEOM from three microalgae cultures, which might be responsible for inducing the indirect photolysis of E2 and EE2. Therefore, in the living microalgae cultures, the major estrogens removal mechanisms should include biotransformation as well as AEOM meditated photocatalytic degradation. Since removal rates through photodegradation could be faster than biotransformation, the AEOM mediated photocatalytic degradation can play a potential role to remove emerging contaminants when using microalgae technology for wastewater effluent treatment.
•S. capricornutum, C. vulgaris, and S. quadricauda were shown to degrade estrogens.•AEOM produced from microalgae could induce indirect photolysis of E2 and EE2.•EEM showed AEOM contained photosensitizing substances to induce photocatalytic degradation.•AEOM mediated indirect photolysis should be an important mechanism for estrogen removal by microalgae. |
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AbstractList | Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In this study, three microalgae species, including Selenastrum capricornutum, Scenedesmus quadricauda and Chlorella vulgaris were selected to conduct batch experiments to examine important mechanisms, especially the role of algal extracellular organic matter (AEOM) on two selected estrogens (17β-estradiol, E2 and 17α-ethynylestradiol, EE2) removal. Results showed that estrogens could not be significantly degraded under visible light irradiation and adsorption of estrogens by microalgae was negligible. All three living microalgae cultures have ability to remove E2 and EE2, and Selenastrum capricornutum showed the highest E2 and EE2 removal efficiency of 91% and 83%, respectively, corresponding to the reduction of predicted estrogenic activity of 86%. AEOM from three microalgae cultures could induce photodegradation of estrogens, and AEOM from Selenastrum capricornutum and Chlorella vulgaris achieved 100% of E2 and EE2 removal under visible light irradiation. Fluorescence excitation–emission matrix spectroscopy identified humic/fulvic-like substances in AEOM from three microalgae cultures, which might be responsible for inducing the indirect photolysis of E2 and EE2. Therefore, in the living microalgae cultures, the major estrogens removal mechanisms should include biotransformation as well as AEOM meditated photocatalytic degradation. Since removal rates through photodegradation could be faster than biotransformation, the AEOM mediated photocatalytic degradation can play a potential role to remove emerging contaminants when using microalgae technology for wastewater effluent treatment. Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In this study, three microalgae species, including Selenastrum capricornutum, Scenedesmus quadricauda and Chlorella vulgaris were selected to conduct batch experiments to examine important mechanisms, especially the role of algal extracellular organic matter (AEOM) on two selected estrogens (17β-estradiol, E2 and 17α-ethynylestradiol, EE2) removal. Results showed that estrogens could not be significantly degraded under visible light irradiation and adsorption of estrogens by microalgae was negligible. All three living microalgae cultures have ability to remove E2 and EE2, and Selenastrum capricornutum showed the highest E2 and EE2 removal efficiency of 91% and 83%, respectively, corresponding to the reduction of predicted estrogenic activity of 86%. AEOM from three microalgae cultures could induce photodegradation of estrogens, and AEOM from Selenastrum capricornutum and Chlorella vulgaris achieved 100% of E2 and EE2 removal under visible light irradiation. Fluorescence excitation-emission matrix spectroscopy identified humic/fulvic-like substances in AEOM from three microalgae cultures, which might be responsible for inducing the indirect photolysis of E2 and EE2. Therefore, in the living microalgae cultures, the major estrogens removal mechanisms should include biotransformation as well as AEOM meditated photocatalytic degradation. Since removal rates through photodegradation could be faster than biotransformation, the AEOM mediated photocatalytic degradation can play a potential role to remove emerging contaminants when using microalgae technology for wastewater effluent treatment.Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In this study, three microalgae species, including Selenastrum capricornutum, Scenedesmus quadricauda and Chlorella vulgaris were selected to conduct batch experiments to examine important mechanisms, especially the role of algal extracellular organic matter (AEOM) on two selected estrogens (17β-estradiol, E2 and 17α-ethynylestradiol, EE2) removal. Results showed that estrogens could not be significantly degraded under visible light irradiation and adsorption of estrogens by microalgae was negligible. All three living microalgae cultures have ability to remove E2 and EE2, and Selenastrum capricornutum showed the highest E2 and EE2 removal efficiency of 91% and 83%, respectively, corresponding to the reduction of predicted estrogenic activity of 86%. AEOM from three microalgae cultures could induce photodegradation of estrogens, and AEOM from Selenastrum capricornutum and Chlorella vulgaris achieved 100% of E2 and EE2 removal under visible light irradiation. Fluorescence excitation-emission matrix spectroscopy identified humic/fulvic-like substances in AEOM from three microalgae cultures, which might be responsible for inducing the indirect photolysis of E2 and EE2. Therefore, in the living microalgae cultures, the major estrogens removal mechanisms should include biotransformation as well as AEOM meditated photocatalytic degradation. Since removal rates through photodegradation could be faster than biotransformation, the AEOM mediated photocatalytic degradation can play a potential role to remove emerging contaminants when using microalgae technology for wastewater effluent treatment. Estrogens are among the most concerned emerging contaminants in the wastewater treatment effluent due to their sexual disruption in aquatic wildlife. The use of microalgae for secondary wastewater effluent polishing is a promising approach due to the economic benefit and value-added products. In this study, three microalgae species, including Selenastrum capricornutum, Scenedesmus quadricauda and Chlorella vulgaris were selected to conduct batch experiments to examine important mechanisms, especially the role of algal extracellular organic matter (AEOM) on two selected estrogens (17β-estradiol, E2 and 17α-ethynylestradiol, EE2) removal. Results showed that estrogens could not be significantly degraded under visible light irradiation and adsorption of estrogens by microalgae was negligible. All three living microalgae cultures have ability to remove E2 and EE2, and Selenastrum capricornutum showed the highest E2 and EE2 removal efficiency of 91% and 83%, respectively, corresponding to the reduction of predicted estrogenic activity of 86%. AEOM from three microalgae cultures could induce photodegradation of estrogens, and AEOM from Selenastrum capricornutum and Chlorella vulgaris achieved 100% of E2 and EE2 removal under visible light irradiation. Fluorescence excitation–emission matrix spectroscopy identified humic/fulvic-like substances in AEOM from three microalgae cultures, which might be responsible for inducing the indirect photolysis of E2 and EE2. Therefore, in the living microalgae cultures, the major estrogens removal mechanisms should include biotransformation as well as AEOM meditated photocatalytic degradation. Since removal rates through photodegradation could be faster than biotransformation, the AEOM mediated photocatalytic degradation can play a potential role to remove emerging contaminants when using microalgae technology for wastewater effluent treatment. •S. capricornutum, C. vulgaris, and S. quadricauda were shown to degrade estrogens.•AEOM produced from microalgae could induce indirect photolysis of E2 and EE2.•EEM showed AEOM contained photosensitizing substances to induce photocatalytic degradation.•AEOM mediated indirect photolysis should be an important mechanism for estrogen removal by microalgae. |
ArticleNumber | 111818 |
Author | Wu, Pei-Hsun Hsiao, Wen-Wei Chou, Pei-Hsin Yeh, Hsin-Yi Yu, Chang-Ping |
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Cites_doi | 10.1016/j.envpol.2019.01.128 10.1021/es0155276 10.1039/C7EW00172J 10.1021/sc5004538 10.1016/0304-4203(95)00062-3 10.1016/j.watres.2018.09.048 10.1128/br.35.2.171-205.1971 10.1016/j.desal.2012.03.001 10.1021/es903899d 10.1080/09593330.2017.1384068 10.1002/jctb.2043 10.1016/j.watres.2017.01.001 10.1016/j.biortech.2015.06.070 10.1016/j.watres.2010.08.046 10.1016/j.watres.2019.114940 10.1080/10408449891344236 10.1016/j.chemosphere.2018.04.028 10.1021/es034354c 10.1016/j.cej.2017.09.187 10.1016/j.chemosphere.2014.04.035 10.3389/fmicb.2018.02115 10.1016/j.jphotobiol.2006.12.006 10.1016/j.watres.2007.10.032 10.1016/j.orggeochem.2009.03.002 10.1021/es035342u 10.1016/j.ecoenv.2019.05.061 10.1016/j.cej.2013.10.002 10.1007/s11356-017-8683-4 10.1016/j.memsci.2013.07.059 10.1016/j.chemosphere.2013.01.112 10.1111/1751-7915.13504 10.1016/j.watres.2015.01.028 10.1016/j.jhazmat.2019.121985 10.4319/lo.2001.46.1.0038 |
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Keywords | Photodegradation Algal extracellular organic matter Estrogens removal Biotransformation |
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References | Wang, Sun, Li, Wang, Wu, Yu (bib29) 2019; 180 Yang, Zhuang, Chen, Wang, Kuo (bib32) 2017; 111 Tian, Wei, Yin, Feng, Zhang, Liu, Zhang (bib26) 2019; 164 Kiki, Rashid, Wang, Li, Zeng, Yu, Sun (bib15) 2020; 387 Lv, Lo, Hsu, Wang, Chiang, Sun, Wu, Li, Chen, Yu (bib19) 2018; 9 Stanier, Kunisawa, Mandel, Cohen-Bazire (bib24) 1971; 35 Bianco, Minella, De Laurentiis, Maurino, Minero, Vione (bib3) 2014; 111 Herth (bib10) 1978; 65 Chiang, Wei, Wang, Wu, Yu (bib6) 2019; 13 Huang, Chu, Dong (bib11) 2012; 293 Hu, Yin, Deng, Hu (bib13) 2015; 193 Yu, Deeb, Chu (bib33) 2013; 91 Chang, Wan, Wu, Fan, Hu (bib4) 2011; 45 Chen, Westerhoff, Leenheer, Booksh (bib5) 2003; 37 Villacorte, Ekowati, Neu, Kleijn, Winters, Amy, Schippers, Kennedy (bib28) 2015; 73 Wu, Cheng, Chen, Chueh, Chen, Huang, Wu, Hsieh, Chang, Yang, Lin, Yu (bib31) 2019; 248 Wang, Zhang, Wu, Deng (bib30) 2007; 87 Ashfaq, Li, Wang, Qin, Rehman, Rashid, Yu, Sun (bib2) 2018; 204 Huguet, Vacher, Relexans, Saubusse, Froidefond, Parlanti (bib12) 2009; 40 Ly, Maqbool, Hur (bib20) 2017; 24 Ohno (bib22) 2002; 36 Coble (bib7) 1996; 51 Lee, Osburn, Shin, Hur (bib16) 2018; 147 Ruksrithong, Phattarapattamawong (bib23) 2019; 40 Henderson, Baker, Parsons, Jefferson (bib9) 2008; 42 Tenorio, Fedders, Strathmann, Guest (bib25) 2017; 3 Abargues, Gimenez, Ferrer, Bouzas, Seco (bib1) 2018; 334 Li, Sun (bib18) 2014; 237 Zhang, Fan, Roddick (bib34) 2013; 447 Ge, Deng, Wu, Deng (bib8) 2009; 84 Tyler, Jobling, Sumpter (bib27) 1998; 28 Leusch, De Jager, Levi, Lim, Puijker, Sacher, Tremblay, Wilson, Chapman (bib17) 2010; 44 Johnson, Williams (bib14) 2004; 38 McKnight, Boyer, Westerhoff, Doran, Kulbe, Andersen (bib21) 2001; 46 Zhang, Habteselassie, Resurreccion, Mantripragada, Peng, Bauer, Colosi (bib35) 2014; 2 Leusch (10.1016/j.ecoenv.2020.111818_bib17) 2010; 44 Ly (10.1016/j.ecoenv.2020.111818_bib20) 2017; 24 Yu (10.1016/j.ecoenv.2020.111818_bib33) 2013; 91 Coble (10.1016/j.ecoenv.2020.111818_bib7) 1996; 51 Lee (10.1016/j.ecoenv.2020.111818_bib16) 2018; 147 Herth (10.1016/j.ecoenv.2020.111818_bib10) 1978; 65 Kiki (10.1016/j.ecoenv.2020.111818_bib15) 2020; 387 Ruksrithong (10.1016/j.ecoenv.2020.111818_bib23) 2019; 40 Abargues (10.1016/j.ecoenv.2020.111818_bib1) 2018; 334 Hu (10.1016/j.ecoenv.2020.111818_bib13) 2015; 193 Huguet (10.1016/j.ecoenv.2020.111818_bib12) 2009; 40 McKnight (10.1016/j.ecoenv.2020.111818_bib21) 2001; 46 Chiang (10.1016/j.ecoenv.2020.111818_bib6) 2019; 13 Stanier (10.1016/j.ecoenv.2020.111818_bib24) 1971; 35 Wu (10.1016/j.ecoenv.2020.111818_bib31) 2019; 248 Henderson (10.1016/j.ecoenv.2020.111818_bib9) 2008; 42 Bianco (10.1016/j.ecoenv.2020.111818_bib3) 2014; 111 Yang (10.1016/j.ecoenv.2020.111818_bib32) 2017; 111 Wang (10.1016/j.ecoenv.2020.111818_bib30) 2007; 87 Zhang (10.1016/j.ecoenv.2020.111818_bib34) 2013; 447 Ge (10.1016/j.ecoenv.2020.111818_bib8) 2009; 84 Li (10.1016/j.ecoenv.2020.111818_bib18) 2014; 237 Tyler (10.1016/j.ecoenv.2020.111818_bib27) 1998; 28 Tenorio (10.1016/j.ecoenv.2020.111818_bib25) 2017; 3 Huang (10.1016/j.ecoenv.2020.111818_bib11) 2012; 293 Wang (10.1016/j.ecoenv.2020.111818_bib29) 2019; 180 Johnson (10.1016/j.ecoenv.2020.111818_bib14) 2004; 38 Ashfaq (10.1016/j.ecoenv.2020.111818_bib2) 2018; 204 Chang (10.1016/j.ecoenv.2020.111818_bib4) 2011; 45 Chen (10.1016/j.ecoenv.2020.111818_bib5) 2003; 37 Villacorte (10.1016/j.ecoenv.2020.111818_bib28) 2015; 73 Lv (10.1016/j.ecoenv.2020.111818_bib19) 2018; 9 Ohno (10.1016/j.ecoenv.2020.111818_bib22) 2002; 36 Zhang (10.1016/j.ecoenv.2020.111818_bib35) 2014; 2 Tian (10.1016/j.ecoenv.2020.111818_bib26) 2019; 164 |
References_xml | – volume: 42 start-page: 3435 year: 2008 end-page: 3445 ident: bib9 article-title: Characterisation of algogenic organic matter extracted from cyanobacteria, green algae and diatoms publication-title: Water Res. – volume: 37 start-page: 5701 year: 2003 end-page: 5710 ident: bib5 article-title: Fluorescence excitation - emission matrix regional integration to quantify spectra for dissolved organic matter publication-title: Environ. Sci. Technol. – volume: 24 start-page: 11192 year: 2017 end-page: 11205 ident: bib20 article-title: Unique characteristics of algal dissolved organic matter and their association with membrane fouling behavior: a review publication-title: Environ. Sci. Pollut. Res. – volume: 84 start-page: 331 year: 2009 end-page: 336 ident: bib8 article-title: Microalgae-promoted photodegradation of two endocrine disrupters in aqueous solutions publication-title: J. Chem. Technol. Biotechnol. – volume: 3 start-page: 1095 year: 2017 end-page: 1108 ident: bib25 article-title: Impact of growth phases on photochemically produced reactive species in the extracellular matrix of algal cultivation systems publication-title: Environ. Sci. Water Res. Technol. – volume: 36 start-page: 742 year: 2002 end-page: 746 ident: bib22 article-title: Fluorescence inner-filtering correction for determining the humification index of dissolved organic matter publication-title: Environ. Sci. Technol. – volume: 180 start-page: 723 year: 2019 end-page: 732 ident: bib29 article-title: Biotransformation of estrone, 17β-estradiol and 17α-ethynylestradiol by four species of microalgae publication-title: Ecotoxicol. Environ. Saf. – volume: 2 start-page: 2544 year: 2014 end-page: 2553 ident: bib35 article-title: Evaluating removal of steroid estrogens by a model alga as a possible sustainability benefit of hypothetical integrated algae cultivation and wastewater treatment systems publication-title: ACS Sustain. Chem. Eng. – volume: 248 start-page: 57 year: 2019 end-page: 65 ident: bib31 article-title: Using the entrapped bioprocess as the pretreatment method for the drinking water treatment receiving eutrophic source water publication-title: Environ. Pollut. – volume: 193 start-page: 135 year: 2015 end-page: 141 ident: bib13 article-title: Application of nano TiO publication-title: Bioresour. Technol. – volume: 13 start-page: 926 year: 2019 end-page: 949 ident: bib6 article-title: Microbial degradation of steroid sex hormones: implications for environmental and ecological studies publication-title: Microb. Biotechnol. – volume: 9 start-page: 2115 year: 2018 ident: bib19 article-title: Identification of enantiomeric byproducts during microalgae-mediated transformation of metoprolol by MS/MS spectrum based networking publication-title: Front. Microbiol. – volume: 46 start-page: 38 year: 2001 end-page: 48 ident: bib21 article-title: Spectrofluorometric characterization of dissolved organic matter for indication of precursor organic material and aromaticity publication-title: Limnol. Oceanogr. – volume: 111 start-page: 529 year: 2014 end-page: 536 ident: bib3 article-title: Photochemical generation of photoactive compounds with fulvic-like and humic-like fluorescence in aqueous solution publication-title: Chemosphere – volume: 38 start-page: 3649 year: 2004 end-page: 3658 ident: bib14 article-title: A Model to estimate influent and effluent concentrations of estradiol, estrone, and ethinylestradiol at Sewage Treatment Works publication-title: Environ. Sci. Technol. – volume: 44 start-page: 3853 year: 2010 end-page: 3860 ident: bib17 article-title: Comparison of five in vitro bioassays to measure estrogenic activity in environmental waters publication-title: Environ. Sci. Technol. – volume: 334 start-page: 313 year: 2018 end-page: 321 ident: bib1 article-title: Endocrine disrupter compounds removal in wastewater using microalgae: degradation kinetics assessment publication-title: Chem. Eng. J. – volume: 51 start-page: 325 year: 1996 end-page: 346 ident: bib7 article-title: Characterization of marine and terrestrial DOM in seawater using excitation-emission matrix spectroscopy publication-title: Mar. Chem. – volume: 35 start-page: 171 year: 1971 end-page: 205 ident: bib24 article-title: Purification and properties of unicellular bluegreen algae (Order Chroococcales) publication-title: Bacteriol. Rev. – volume: 111 start-page: 195 year: 2017 end-page: 203 ident: bib32 article-title: Unveiling the transformation and bioavailability of dissolved organic matter in contrasting hydrothermal vents using fluorescence EEM-PARAFAC publication-title: Water Res. – volume: 387 year: 2020 ident: bib15 article-title: Dissipation of antibiotics by microalgae: kinetics, identification of transformation products and pathways publication-title: J. Hazard. Mater. – volume: 73 start-page: 216 year: 2015 end-page: 230 ident: bib28 article-title: Characterisation of algal organic matter produced by bloom-forming marine and freshwater algae publication-title: Water Res. – volume: 40 start-page: 163 year: 2019 end-page: 170 ident: bib23 article-title: Removals of estrone and 17 beta-estradiol by microalgae cultivation: kinetics and removal mechanisms publication-title: Environ. Technol. – volume: 87 start-page: 49 year: 2007 end-page: 57 ident: bib30 article-title: Photodegradation of aniline in aqueous suspensions of microalgae publication-title: J. Photochem. Photobiol. B Biol. – volume: 40 start-page: 706 year: 2009 end-page: 719 ident: bib12 article-title: Properties of fluorescent dissolved organic matter in the Gironde Estuary publication-title: Org. Geochem. – volume: 237 start-page: 101 year: 2014 end-page: 108 ident: bib18 article-title: Photocatalytic degradation of 17 alpha-ethinylestradiol in mono- and binary systems of fulvic acid and Fe(III): Application of fluorescence excitation/emission matrixes publication-title: Chem. Eng. J. – volume: 164 year: 2019 ident: bib26 article-title: Photosensitization mechanism of algogenic extracellular organic matters (EOMs) in the photo-transformation of chlortetracycline: role of chemical constituents and structure publication-title: Water Res. – volume: 45 start-page: 732 year: 2011 end-page: 774 ident: bib4 article-title: Occurrence of androgens and progestogens in wastewater treatment plants and receiving river waters: comparison to estrogens publication-title: Water Res. – volume: 65 start-page: 260 year: 1978 end-page: 269 ident: bib10 article-title: A special chitin-fibril-synthesizing apparatus in centric diatom publication-title: Cyclotella Nat. – volume: 447 start-page: 362 year: 2013 end-page: 368 ident: bib34 article-title: Understanding the fouling of a ceramic microfiltration membrane caused by algal organic matter released from Microcystis aeruginosa publication-title: J. Membr. Sci. – volume: 147 start-page: 164 year: 2018 end-page: 176 ident: bib16 article-title: New insight into the applicability of spectroscopic indices for dissolved organic matter (DOM) source discrimination in aquatic systems affected by biogeochemical processes publication-title: Water Res. – volume: 91 start-page: 1225 year: 2013 end-page: 1235 ident: bib33 article-title: Microbial degradation of steroidal estrogens publication-title: Chemosphere – volume: 204 start-page: 170 year: 2018 end-page: 177 ident: bib2 article-title: Monitoring and mass balance analysis of endocrine disrupting compounds and their transformation products in an anaerobic-anoxic-oxic wastewater treatment system in Xiamen, China publication-title: Chemosphere – volume: 28 start-page: 319 year: 1998 end-page: 361 ident: bib27 article-title: Endocrine disruption in wildlife: a critical review of the evidence publication-title: Crit. Rev. Toxicol. – volume: 293 start-page: 104 year: 2012 end-page: 111 ident: bib11 article-title: Characteristics of algogenic organic matter generated under different nutrient conditions and subsequent impact on microfiltration membrane fouling publication-title: Desalination – volume: 248 start-page: 57 year: 2019 ident: 10.1016/j.ecoenv.2020.111818_bib31 article-title: Using the entrapped bioprocess as the pretreatment method for the drinking water treatment receiving eutrophic source water publication-title: Environ. Pollut. doi: 10.1016/j.envpol.2019.01.128 – volume: 36 start-page: 742 issue: 4 year: 2002 ident: 10.1016/j.ecoenv.2020.111818_bib22 article-title: Fluorescence inner-filtering correction for determining the humification index of dissolved organic matter publication-title: Environ. Sci. Technol. doi: 10.1021/es0155276 – volume: 3 start-page: 1095 issue: 6 year: 2017 ident: 10.1016/j.ecoenv.2020.111818_bib25 article-title: Impact of growth phases on photochemically produced reactive species in the extracellular matrix of algal cultivation systems publication-title: Environ. Sci. Water Res. Technol. doi: 10.1039/C7EW00172J – volume: 2 start-page: 2544 issue: 11 year: 2014 ident: 10.1016/j.ecoenv.2020.111818_bib35 article-title: Evaluating removal of steroid estrogens by a model alga as a possible sustainability benefit of hypothetical integrated algae cultivation and wastewater treatment systems publication-title: ACS Sustain. Chem. Eng. doi: 10.1021/sc5004538 – volume: 51 start-page: 325 year: 1996 ident: 10.1016/j.ecoenv.2020.111818_bib7 article-title: Characterization of marine and terrestrial DOM in seawater using excitation-emission matrix spectroscopy publication-title: Mar. Chem. doi: 10.1016/0304-4203(95)00062-3 – volume: 147 start-page: 164 year: 2018 ident: 10.1016/j.ecoenv.2020.111818_bib16 article-title: New insight into the applicability of spectroscopic indices for dissolved organic matter (DOM) source discrimination in aquatic systems affected by biogeochemical processes publication-title: Water Res. doi: 10.1016/j.watres.2018.09.048 – volume: 35 start-page: 171 year: 1971 ident: 10.1016/j.ecoenv.2020.111818_bib24 article-title: Purification and properties of unicellular bluegreen algae (Order Chroococcales) publication-title: Bacteriol. Rev. doi: 10.1128/br.35.2.171-205.1971 – volume: 293 start-page: 104 year: 2012 ident: 10.1016/j.ecoenv.2020.111818_bib11 article-title: Characteristics of algogenic organic matter generated under different nutrient conditions and subsequent impact on microfiltration membrane fouling publication-title: Desalination doi: 10.1016/j.desal.2012.03.001 – volume: 44 start-page: 3853 issue: 10 year: 2010 ident: 10.1016/j.ecoenv.2020.111818_bib17 article-title: Comparison of five in vitro bioassays to measure estrogenic activity in environmental waters publication-title: Environ. Sci. Technol. doi: 10.1021/es903899d – volume: 40 start-page: 163 issue: 2 year: 2019 ident: 10.1016/j.ecoenv.2020.111818_bib23 article-title: Removals of estrone and 17 beta-estradiol by microalgae cultivation: kinetics and removal mechanisms publication-title: Environ. Technol. doi: 10.1080/09593330.2017.1384068 – volume: 84 start-page: 331 issue: 3 year: 2009 ident: 10.1016/j.ecoenv.2020.111818_bib8 article-title: Microalgae-promoted photodegradation of two endocrine disrupters in aqueous solutions publication-title: J. Chem. Technol. Biotechnol. doi: 10.1002/jctb.2043 – volume: 111 start-page: 195 year: 2017 ident: 10.1016/j.ecoenv.2020.111818_bib32 article-title: Unveiling the transformation and bioavailability of dissolved organic matter in contrasting hydrothermal vents using fluorescence EEM-PARAFAC publication-title: Water Res. doi: 10.1016/j.watres.2017.01.001 – volume: 193 start-page: 135 year: 2015 ident: 10.1016/j.ecoenv.2020.111818_bib13 article-title: Application of nano TiO2 modified hollow fiber membranes in algal membrane bioreactors for high-density algae cultivation and wastewater polishing publication-title: Bioresour. Technol. doi: 10.1016/j.biortech.2015.06.070 – volume: 45 start-page: 732 year: 2011 ident: 10.1016/j.ecoenv.2020.111818_bib4 article-title: Occurrence of androgens and progestogens in wastewater treatment plants and receiving river waters: comparison to estrogens publication-title: Water Res. doi: 10.1016/j.watres.2010.08.046 – volume: 164 year: 2019 ident: 10.1016/j.ecoenv.2020.111818_bib26 article-title: Photosensitization mechanism of algogenic extracellular organic matters (EOMs) in the photo-transformation of chlortetracycline: role of chemical constituents and structure publication-title: Water Res. doi: 10.1016/j.watres.2019.114940 – volume: 28 start-page: 319 year: 1998 ident: 10.1016/j.ecoenv.2020.111818_bib27 article-title: Endocrine disruption in wildlife: a critical review of the evidence publication-title: Crit. Rev. Toxicol. doi: 10.1080/10408449891344236 – volume: 204 start-page: 170 year: 2018 ident: 10.1016/j.ecoenv.2020.111818_bib2 article-title: Monitoring and mass balance analysis of endocrine disrupting compounds and their transformation products in an anaerobic-anoxic-oxic wastewater treatment system in Xiamen, China publication-title: Chemosphere doi: 10.1016/j.chemosphere.2018.04.028 – volume: 37 start-page: 5701 year: 2003 ident: 10.1016/j.ecoenv.2020.111818_bib5 article-title: Fluorescence excitation - emission matrix regional integration to quantify spectra for dissolved organic matter publication-title: Environ. Sci. Technol. doi: 10.1021/es034354c – volume: 334 start-page: 313 year: 2018 ident: 10.1016/j.ecoenv.2020.111818_bib1 article-title: Endocrine disrupter compounds removal in wastewater using microalgae: degradation kinetics assessment publication-title: Chem. Eng. J. doi: 10.1016/j.cej.2017.09.187 – volume: 111 start-page: 529 year: 2014 ident: 10.1016/j.ecoenv.2020.111818_bib3 article-title: Photochemical generation of photoactive compounds with fulvic-like and humic-like fluorescence in aqueous solution publication-title: Chemosphere doi: 10.1016/j.chemosphere.2014.04.035 – volume: 9 start-page: 2115 year: 2018 ident: 10.1016/j.ecoenv.2020.111818_bib19 article-title: Identification of enantiomeric byproducts during microalgae-mediated transformation of metoprolol by MS/MS spectrum based networking publication-title: Front. Microbiol. doi: 10.3389/fmicb.2018.02115 – volume: 65 start-page: 260 year: 1978 ident: 10.1016/j.ecoenv.2020.111818_bib10 article-title: A special chitin-fibril-synthesizing apparatus in centric diatom publication-title: Cyclotella Nat. – volume: 87 start-page: 49 issue: 1 year: 2007 ident: 10.1016/j.ecoenv.2020.111818_bib30 article-title: Photodegradation of aniline in aqueous suspensions of microalgae publication-title: J. Photochem. Photobiol. B Biol. doi: 10.1016/j.jphotobiol.2006.12.006 – volume: 42 start-page: 3435 issue: 13 year: 2008 ident: 10.1016/j.ecoenv.2020.111818_bib9 article-title: Characterisation of algogenic organic matter extracted from cyanobacteria, green algae and diatoms publication-title: Water Res. doi: 10.1016/j.watres.2007.10.032 – volume: 40 start-page: 706 year: 2009 ident: 10.1016/j.ecoenv.2020.111818_bib12 article-title: Properties of fluorescent dissolved organic matter in the Gironde Estuary publication-title: Org. Geochem. doi: 10.1016/j.orggeochem.2009.03.002 – volume: 38 start-page: 3649 issue: 13 year: 2004 ident: 10.1016/j.ecoenv.2020.111818_bib14 article-title: A Model to estimate influent and effluent concentrations of estradiol, estrone, and ethinylestradiol at Sewage Treatment Works publication-title: Environ. Sci. Technol. doi: 10.1021/es035342u – volume: 180 start-page: 723 year: 2019 ident: 10.1016/j.ecoenv.2020.111818_bib29 article-title: Biotransformation of estrone, 17β-estradiol and 17α-ethynylestradiol by four species of microalgae publication-title: Ecotoxicol. Environ. Saf. doi: 10.1016/j.ecoenv.2019.05.061 – volume: 237 start-page: 101 year: 2014 ident: 10.1016/j.ecoenv.2020.111818_bib18 article-title: Photocatalytic degradation of 17 alpha-ethinylestradiol in mono- and binary systems of fulvic acid and Fe(III): Application of fluorescence excitation/emission matrixes publication-title: Chem. Eng. J. doi: 10.1016/j.cej.2013.10.002 – volume: 24 start-page: 11192 issue: 12 year: 2017 ident: 10.1016/j.ecoenv.2020.111818_bib20 article-title: Unique characteristics of algal dissolved organic matter and their association with membrane fouling behavior: a review publication-title: Environ. Sci. Pollut. Res. doi: 10.1007/s11356-017-8683-4 – volume: 447 start-page: 362 year: 2013 ident: 10.1016/j.ecoenv.2020.111818_bib34 article-title: Understanding the fouling of a ceramic microfiltration membrane caused by algal organic matter released from Microcystis aeruginosa publication-title: J. Membr. Sci. doi: 10.1016/j.memsci.2013.07.059 – volume: 91 start-page: 1225 year: 2013 ident: 10.1016/j.ecoenv.2020.111818_bib33 article-title: Microbial degradation of steroidal estrogens publication-title: Chemosphere doi: 10.1016/j.chemosphere.2013.01.112 – volume: 13 start-page: 926 year: 2019 ident: 10.1016/j.ecoenv.2020.111818_bib6 article-title: Microbial degradation of steroid sex hormones: implications for environmental and ecological studies publication-title: Microb. Biotechnol. doi: 10.1111/1751-7915.13504 – volume: 73 start-page: 216 year: 2015 ident: 10.1016/j.ecoenv.2020.111818_bib28 article-title: Characterisation of algal organic matter produced by bloom-forming marine and freshwater algae publication-title: Water Res. doi: 10.1016/j.watres.2015.01.028 – volume: 387 year: 2020 ident: 10.1016/j.ecoenv.2020.111818_bib15 article-title: Dissipation of antibiotics by microalgae: kinetics, identification of transformation products and pathways publication-title: J. Hazard. Mater. doi: 10.1016/j.jhazmat.2019.121985 – volume: 46 start-page: 38 year: 2001 ident: 10.1016/j.ecoenv.2020.111818_bib21 article-title: Spectrofluorometric characterization of dissolved organic matter for indication of precursor organic material and aromaticity publication-title: Limnol. Oceanogr. doi: 10.4319/lo.2001.46.1.0038 |
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SubjectTerms | Algal extracellular organic matter Biotransformation Chlorella vulgaris - metabolism Estradiol - metabolism Estrogens - analysis Estrogens - metabolism Estrogens removal Estrone - metabolism Ethinyl Estradiol - analysis Ethinyl Estradiol - metabolism Microalgae - metabolism Photodegradation Photolysis Waste Water - chemistry Water Pollutants, Chemical - analysis Water Pollutants, Chemical - metabolism |
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Title | Algal extracellular organic matter mediated photocatalytic degradation of estrogens |
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