À propos de cet article

Citez

[1] Stasinakis A., Gatidou G. Micropollutants and aquatic environment. 2016Search in Google Scholar

[2] Lester J.N. and Edge D., Sewage and sewage sludge treatment. In Pollution Causes, Effects and Control, Edited by Harrison R.M., 113–144. Cambridge, UK: The Royal Society of Chemistry. 2000.10.1039/9781847551719-00113Search in Google Scholar

[3] Birkett J.W., Lester J.N., Endocrine Disrupters in Wastewater and Sludge Treatment Processes, 2003.10.1201/9781420032185Search in Google Scholar

[4] Adeel M., Song X., Wang Y., Francis D., Yang Y., Environmental impact of estrogens on human, animal and plant life: „A critical review. Environment International”. Vol 99. 201710.1016/j.envint.2016.12.010Search in Google Scholar

[5] Grdulska A., Kowalik R., Pharmaceuticals in water and wastewater – overview. Structure and Environment, Vol. 2, 2020, pp. 79-84.10.30540/sae-2020-009Search in Google Scholar

[6] Servos M.R., Bennie D.T., Burnison, B.K., Jurkovic, A., McInnis, R., Neheli, T., Schnell A., Seto, P., Smyth S.A., Ternes T.A. Distribution of estrogens, 17 [beta]- estradiol and estrone, [in:] Canadian municipal wastewater treatment plants. Sci. Total Environ., 336, 2005. pp. 155-170.10.1016/j.scitotenv.2004.05.025Search in Google Scholar

[7] Shi J., Fujisawa S., Nakai S. Hosomi M., Biodegradation of natural and synthetic estrogens by nitrifying activated sludge and ammonia-oxidizing bacterium, Nitrosomonas europaea. Water Res., 38, 2004, pp. 2323–2330.10.1016/j.watres.2004.02.022Search in Google Scholar

[8] Yabuuchi E., Yano I., Oyaizu H., Hashimoto Y., Ezaki T. and Yamamoto H., Proposals of Sphingomonas-paucimobilis gen-nov and comb nov, Microbiol. Immunol., 34, 1990, pp. 99-119.10.1111/j.1348-0421.1990.tb00996.xSearch in Google Scholar

[9] Czajka C., Londry K., Anaerobic Biotransformation of Estrogens. Science of The Total Environment 367(2-3) 2006.10.1016/j.scitotenv.2006.01.021Search in Google Scholar

[10] Włodarczyk-Makuła M., Wybrane Związki Endokrynnie aktywne EDC w środowisku wodnym. LAB Laboratoria, Aparatura, Badania, 19, 2014, pp. 20-25.Search in Google Scholar

[11] Ternes T.A., Stumpf, M., Mueller J., Haberer K., Wilken R.D. and Servos M., Behavior and occurrence of estrogens in municipal sewage treatment plants – I. Investigations in Germany, Canada and Brazil. Sci. Total Environ., 1999, pp. 81-90.10.1016/S0048-9697(98)00334-9Search in Google Scholar

[12] Johnson A.C., Aerni H.- R., Gerritsen A., Gibert M., Giger W., Hylland K., Jurgens M., Nakari T., Pickering A., Suter M.J.- F., Comparing steroid estrogen, and nonylphenol content across a range of European sewage plants with different treatment and management practices. Water Res., 39, 2005, pp. 47–58.10.1016/j.watres.2004.07.02515607163Search in Google Scholar

[13] Jiang J.Q., Yin Q., Zhou J.L., Pearce P., Occurrence and treatment trials of endocrine disrupting chemicals (EDCs) in wastewaters. Chemosphere, 61, 2005, pp. 544–550.10.1016/j.chemosphere.2005.02.029Search in Google Scholar

[14] Shi J., Fujisawa S., Nakai S. and Hosomi M. Biodegradation of natural and synthetic estrogens by nitrifying activated sludge and ammonia-oxidizing bacterium Nitrosomonas europaea. Water Res., 38, 2004, pp. 2323–2330.10.1016/j.watres.2004.02.022Search in Google Scholar

[15] Zhang Z. H., Feng Y. J., Gao P., Liu J. F. and Ren N. Q., Comparing the adsorption and desorption characteristics of 17α-ethinylestradiol on sludge derived from different treatment units. International Journal of Environment Science and Technology, 9, (2012), pp. 247-56.Search in Google Scholar

[16] Bernardelli J., Liz M., Belli T., Lobo-Reico M., Lapolli F., Removal of estrogens by activated sludge under different conditions using bath experiments. Brazilian Journal of Chemical Engineering. Sau Paulo. Vol 32. No.2. 2015.10.1590/0104-6632.20150322s00003667Search in Google Scholar

[17] Li F., Desmiarti R., Yuasa A. and Horio A., Behavior of natural estrogens in semicontinuous activated sludge biodegradation reactors. Bioresource Technology, 99, 2008, pp. 64-71.10.1016/j.biortech.2007.06.016Search in Google Scholar

[18] Combalbert S. and Hernandez-Raquet G., Occurrence, fate, and biodegradation of estrogens in sewage and manure. Applied Microbiology and Biotechnology, 86, 2010, pp. 1671-92.10.1007/s00253-010-2547-xSearch in Google Scholar

[19] Hai F., Yamamoto K., Lee C., Membrane biological reactors. Theory, modelling, design, management and applications to wastewater reuse. IWA. 2011Search in Google Scholar

[20] Clouzot L., Doumenq P., Vanloot P., Membrane bioreactors for 17α-ethinylestradiol removal. Journal od Membrane Science 362, 2007, pp. 81-85.10.1016/j.memsci.2010.06.020Search in Google Scholar

[21] Weber S., Leuschner P., Kampfer P., Dott W., Hollender J., Degradation of estradiol and ethinyl estradiol by activated sludge and by a defined mixed culture. Appl. Microbiol. Biotechnol., 67, 2005, pp. 106-112.10.1007/s00253-004-1693-4Search in Google Scholar

[22] Wintgens T., Gallenkemper M., Melin T., Removal of endocrine disrupting compounds with membrane processes in wastewater treatment and reuse. Water Sci. Technol., 50 (5):2004, pp. 1–8.10.2166/wst.2004.0301Search in Google Scholar

[23] Holbrook R.D., Love N.G., Novak J.T., Biological wastewater treatment and estrogenic endocrine disrupting compounds: Importance of colloid organic carbon. Pract. Periodical Haz. Toxic. Radioactive Waste Manage., 7, 2003, pp. 289-296.10.1061/(ASCE)1090-025X(2003)7:4(289)Search in Google Scholar

[24] http://www.writeintheshadows.com/business/biological-nutrient-removal-processes-with-flow-equalization-tanks.html access 20.07.2020Search in Google Scholar

[25] Joss A., Andersen H., Ternes T., Richle P.R., Siegrist H., Removal of estrogens in municipal wastewater treatment under aerobic and anaerobic conditions: Consequences for plant optimization. Environ. Sci. Technol., 38, 2004, pp. 3047–3055.10.1021/es035148815224734Search in Google Scholar

[26] Chiu T., Boobis A., Lester J., Treatment and removal strategies for estrogenes from wastewater. Environmental Technology 29. 2008.10.1080/09593330802099122Search in Google Scholar

[27] Schäfer A.I. and Waite T.D., Removal of endocrine disrupters in advanced treatment – the Australian approach. [in:] Proceedings of the IWA World Water Congress, Workshop Endocrine Disruptors, Melbourne, Australia, 2002, pp. 37-51Search in Google Scholar

[28] Chang S., Waite T.D., Ong P.E.A., Schafer A.I., Fane A.G., Assessment of trace estrogenic contaminants removal by coagulant addition, powdered activated carbon adsorption and powdered activated carbon/microfiltration processes. J. Environ. Eng.- ASCE, 130, 2004, pp. 736-742.10.1061/(ASCE)0733-9372(2004)130:7(736)Search in Google Scholar

[29] Itoh S., Yoshimura Y., Okada T. Tsujimura Y., Detection of estrogenic effect formation potential in chlorinated drinking water. [in:] 2nd IWA Leading Edge Conference on Water and Wastewater Treatment Technologies, Prague, Czech Republic: IWA. 2004. pp. 60-62Search in Google Scholar

[30] Nghiem L.D., Manis A., Soldenhoff K. Schafer A.I., Estrogenic hormone removal from wastewater using NF/RO membranes. J. Membr. Sci., 242, 2004, pp. 37-45.10.1016/j.memsci.2003.12.034Search in Google Scholar

[31] Fukuhara T., Iwasaki S., Kawashima M., Shinohara O. Abe I., Adsorbability of estrone and 17 beta-estradiol in water onto activated carbon. Water Res., 40, 2006, pp. 241-248.10.1016/j.watres.2005.10.04216376964Search in Google Scholar

[32] Lee J., Park H. and Yoon J. Ozonation characteristics of bisphenol A in water. Environ. Technol., 24, 2002, pp. 241-248.10.1080/0959333030938555512666793Search in Google Scholar

[33] Rudder J.D., Wiele T.V.D., Dhooge W., Comhaire F., Verstraete W., Advanced water treatment with manganese oxide for the removal of 17[alpha]- ethynylestradiol (EE2). Water Res., 38, 2004. pp. 184-192.10.1016/j.watres.2003.09.01814630116Search in Google Scholar

[34] Lee Y., Yoon J. and Von Gunten U., Kinetics of the oxidation of phenols and phenolic endocrine disruptors during water treatment with ferrate (Fe(VI)). Environ. Sci. Technol., 39, 2005, pp. 8978-8984.10.1021/es051198w16323803Search in Google Scholar

[35] Mizuguchi T., Shibayama Y., Mitamura K. and Shimada, K., Contribution of glucuronic acid and sulfonic acid moieties during photocatalytic degradation of estrogen conjugates. J. Health Sci., 51, 2005, pp. 447-452.10.1248/jhs.51.447Search in Google Scholar

eISSN:
2657-6902
Langue:
Anglais