[1] D. Deyerling, J. Wang, Y. Bi, C. Peng, G. Pfister, B. Henkelmann, K. Schramm, Depth profile of persistent and emerging organic pollutants upstream of the Three Gorges Dam gathered in 2012/2013, Environ. Sci. Pollut. Res. 23(2016) 5782-5794.[2] D. Liu, J. Liu, M. Guo, H. Xu, S. Zhang, L. Shi, C. Yao, Occurrence, distribution, and risk assessment of alkylphenols, bisphenol A, and tetrabromobisphenol A in surface water, suspended particulate matter, and sediment in Taihu Lake and its tributaries, Mar. Pollut. Bull. 112(2016) 142-150.[3] M. Gavrilescu, K. Demnerova, J. Aamand, S. Agathos, F. Fava, Emerging pollutants in the environment:Present and future challenges in biomonitoring, ecological risks and bioremediation, New Biotechnol. 32(2015) 147-156.[4] J. Cavalheiro, M. Monperrus, D. Amouroux, H. Preud'Homme, A. Prieto, O. Zuloaga, In-port derivatization coupled to different extraction techniques for the determination of alkylphenols in environmental water samples, J. Chromatogr. A 1340(2014) 1-7.[5] W. Giger, F.L.P. Gabriel, N. Jonkers, F.E. Wettstein, H.-P.E. Kohler, Environmental fate of phenolic endocrine disruptors:Field and laboratory studies, Philos. Trans. R. Soc. A Math. Phys. Eng. Sci. 367(2009) 3941-3963.[6] S. Massart, B. Redivo, E. Flamion, S.N. Mandiki, E. Falisse, S. Milla, P. Kestemont, The trenbolone acetate affects the immune system in rainbow trout, Oncorhynchus mykiss, Aquat. Toxicol. 163(2015) 109-120.[7] W. Zheng, S.R. Yates, S.A. Bradford, Analysis of steroid hormones in a typical dairy waste disposal system, Environ. Sci. Technol. 42(2008) 530-535.[8] S. Omero, F. Kara, F.D. Sanin, S. Omerollu, F.K. Murdoch, F.D. Sanin, S. Omeroglu, F. Kara Murdoch, F. Dilek Sanin, Investigation of nonylphenol and nonylphenol ethoxylates in sewage sludge samples from a metropolitan wastewater treatment plant in Turkey, Talanta 131(2015) 650-655.[9] C. Höhne, W. Püttmann, Occurrence and temporal variations of the xenoestrogens bisphenol A, 4-tert-octylphenol, and tech. 4-nonylphenol in two German wastewater treatment plants, Environ. Sci. Pollut. Res. 15(2008) 405-416.[10] N. Mansson, L. Sörme, C. Wahlberg, B. Bergback, Sources of alkylphenols and alkylphenol ethoxylates in wastewater-A substance flow analysis in Stockholm, Sweden, water, air, Soil Pollut. Focus. 8(2008) 445-456.[11] M. Petrovic, M. Sole, M.J. Lopez de Alda, D. Barcelo, Endocrine disruptors in sewage treatment plants, receiving river waters, and sediments:Integration of chemical analysis and biological effects on feral carp, Environ. Toxicol. Chem. 21(2002) 2146-2156.[12] T. Isobe, H. Takada, Determination of degradation products of alkylphenol polyethoxylates in municipal wastewaters and rivers in Tokyo, Japan, Environ. Toxicol. Chem. 23(2004) 599-605.[13] D. Gao, Z. Li, J. Guan, H. Liang, Seasonal variations in the concentration and removal of nonylphenol ethoxylates from the wastewater of a sewage treatment plant, J. Environ. Sci. 54(2017) 217-223.[14] A. Berge, M. Cladiere, J. Gasperi, A. Coursimault, B. Tassin, R. Moilleron, Meta-analysis of environmental contamination by alkylphenols, Environ. Sci. Pollut. Res. 19(2012) 3798-3819.[15] J. Lian, J.X. Liu, Y.S. Wei, Fate of nonylphenol polyethoxylates and their metabolites in four Beijing wastewater treatment plants, Sci. Total Environ. 407(2009) 4261-4268.[16] W.J. Sim, J.W. Lee, S.K. Shin, K.B. Song, J.E. Oh, Assessment of fates of estrogens in wastewater and sludge from various types of wastewater treatment plants, Chemosphere 82(2011) 1448-1453.[17] S. Luo, L. Fang, X. Wang, H. Liu, G. Ouyang, C. Lan, T. Luan, Determination of octylphenol and nonylphenol in aqueous sample using simultaneous derivatization and dispersive liquid-liquid microextraction followed by gas chromatography-Mass spectrometry, J. Chromatogr. A 1217(2010) 6762-6768.[18] M. Rezaee, Y. Assadi, M.-R. Milani Hosseini, E. Aghaee, F. Ahmadi, S. Berijani, Determination of organic compounds in water using dispersive liquid-liquid microextraction, J. Chromatogr. A 1116(2006) 1-9.[19] A. Gonzalez, J. Avivar, V. Cerdà, Estrogens determination in wastewater samples by automatic in-syringe dispersive liquid-liquid microextraction prior silylation and gas chromatography, J. Chromatogr. A 1413(2015) 1-8.[20] S.C. Cunha, A. Pena, J.O. Fernandes, Dispersive liquid-liquid microextraction followed by microwave-assisted silylation and gas chromatography-mass spectrometry analysis for simultaneous trace quantification of bisphenol A and 13 ultraviolet filters in wastewaters, J. Chromatogr. A 1414(2015) 10-21.[21] M.M. Parrilla Vazquez, P. Parrilla Vazquez, M. Martlnez Galera, M.D. Gil Garcla, A. Ucles, Ultrasound-assisted ionic liquid dispersive liquid-liquid microextraction coupled with liquid chromatography-quadrupole-linear ion trap-mass spectrometry for simultaneous analysis of pharmaceuticals in wastewaters, J. Chromatogr. A 1291(2013) 19-26.[22] X. Chen, J. Hu, Adsorption of natural estrogens and their conjugates by activated sludge, Water Air Soil Pollut. 206(2010) 251-261.[23] S. Roberts, C. Higgins, J. McCray, Sorption of emerging organic wastewater contaminants to four soils, Water (Switzerland) 6(2014) 1028-1042.[24] A.A. Oketola, T.K. Fagbemigun, Determination of nonylphenol, octylphenol and bisphenol-A in water and sediments of two major rivers in Lagos, Nigeria, J. Environ. Prot. (Irvine. Calif.) 4(2013) 38-45.[25] BKH Consulting Engineers, Chemical Study on Alkylphenols, The Hague, the Netherlands, 2001.[26] M.V.F. Andrade, I.K. Sakamoto, J.J. Corbi, E.L. Silva, M.B.A. Varesche, Effects of hydraulic retention time, co-substrate and nitrogen source on laundry wastewater anionic surfactant degradation in fluidized bed reactors, Bioresour. Technol. 224(2017) 246-254.[27] Y. Chen, H. Zhang, H. Wang, K. Yang, Effects of dietary addition of non-ionic surfactants on ruminal metabolism and nutrient digestion of Chinese merino sheep, Asian J. Anim. Vet. Adv. 6(2011) 688-696.[28] C.H. Kim, J.N. Kim, J.K. Ha, S.G. Yun, S.S. Lee, Effects of dietary addition of surfactant tween 80 on ruminal fermentation and nutrient digestibility of Hanwoo steers, Asian Australas. J. Anim. Sci. 17(2004) 337-342.[29] Y. Gu, J. Yu, X. Hu, D. Yin, Characteristics of the alkylphenol and bisphenol A distributions in marine organisms and implications for human health:A case study of the East China Sea, Sci. Total Environ. 539(2016) 460-469.[30] M. Pernica, P. Poloucka, M. Seifertova, Z. Simek, Determination of alkylphenols in water samples using liquid chromatography-tandem mass spectrometry after precolumn derivatization with dansyl chloride, J. Chromatogr. A 1417(2015) 49-56.[31] O. Ros, A. Vallejo, L. Blanco-Zubiaguirre, M. Olivares, A. Delgado, N. Etxebarria, A. Prieto, Microextraction with polyethersulfone for bisphenol-A, alkylphenols and hormones determination in water samples by means of gas chromatographymass spectrometry and liquid chromatography-tandem mass spectrometry analysis, Talanta 134(2015) 247-255.[32] USEPA, Treating Contaminants of Emerging Concern. A Literature Review Database, 2010100.[33] U. Bolz, H. Hagenmaier, W. Körner, Input/output balance of phenolic xenoestrogens in sewage treatment plants (STPs), 11th Annu. Meet. SETAC Eur., Poster at 11th Annual Meeting of SETAC Europe, Madrid 2001, p. 72076.[34] T. Isobe, H. Nishiyama, A. Nakashima, H. Takada, Distribution and behavior of nonylphenol, octylphenol, and nonylphenol monoethoxylate in Tokyo metropolitan area:Their association with aquatic particles and sedimentary distributions, Environ. Sci. Technol. 35(2001) 1041-1049.[35] G.-G. Ying, B. Williams, R. Kookana, Environmental fate of alkylphenols and alkylphenol ethoxylates-A review, Environ. Int. 28(2002) 215-226. |