Mohammed Z, Yang Y Q, Zhou Y, et al. Incidence of ocular conditions associated with perfluoroalkyl substances exposure:Isomers of C8 Health Project in China[J]. Environment International, 2020, 137:105555
|
史亚利, 蔡亚岐. 全氟和多氟化合物环境问题研究[J]. 化学进展, 2014, 26(4):665-681
Shi Y L, Cai Y Q. Study of per- and polyfluoroalkyl substances related environmental problems[J]. Progress in Chemistry, 2014, 26(4):665-681(in Chinese)
|
Wang S Q, Ma L Y, Chen C, et al. Occurrence and partitioning behavior of per- and polyfluoroalkyl substances (PFASs) in water and sediment from the Jiulong Estuary-Xiamen Bay, China[J]. Chemosphere, 2019, 238:124578
|
Zhou Y Q, Meng J, Zhang M, et al. Which type of pollutants need to be controlled with priority in wastewater treatment plants:Traditional or emerging pollutants?[J]. Environment International, 2019, 131:104982
|
Burcu V E, Elçin B, I·ffet I·B, et al. Assessment of perfluoroalkyl substances levels in tap and bottled water samples from Turkey[J]. Chemosphere, 2019, 235:1162-1171
|
Li B B, Hu L X, Yang Y Y, et al. Contamination profiles and health risks of PFASs in groundwater of the Maozhou River basin[J]. Environmental Pollution, 2020, 260:113996
|
Zhou J, Li Z, Guo X T, et al. Evidences for replacing legacy per- and polyfluoroalkyl substances with emerging ones in Fen and Wei River basins in central and western China[J]. Journal of Hazardous Materials, 2019, 377:78-87
|
Zhang W, Zhang Y T, Sachi T, et al. Distribution and fate of perfluoroalkyl substances in municipal wastewater treatment plants in economically developed areas of China[J]. Environmental Pollution, 2013, 176:10-17
|
Wilhelm M, Bergmann S, Dieter H H. Occurrence of perfluorinated compounds (PFCs) in drinking water of North Rhine-Westphalia, Germany and new approach to assess drinking water contamination by shorter-chained C4-C7 PFCs[J]. International Journal of Hygiene and Environmental Health, 2010, 213(3):224-232
|
Feng X M, Ye M Q, Li Y, et al. Potential sources and sediment-pore water partitioning behaviors of emerging per/polyfluoroalkyl substances in the South Yellow Sea[J]. Journal of Hazardous Materials, 2020, 389:122124
|
Wang Z Y, Cousins I T, Scheringer M, et al. Hazard assessment of fluorinated alternatives to long-chain perfluoroalkyl acids (PFAAs) and their precursors:Status quo, ongoing challenges and possible solutions[J]. Environment International, 2015, 75:172-179
|
Lou Q Q, Zhang Y F, Zhou Z, et al. Effects of perfluorooctanesulfonate and perfluorobutanesulfonate on the growth and sexual development of Xenopus laevis[J]. Ecotoxicology, 2013, 22(7):1133-1144
|
Foreman J E, Chang S C, Ehresman D J, et al. Differential hepatic effects of perfluorobutyrate mediated by mouse and human PPAR-alpha[J]. Toxicological Sciences, 2009, 110(1):204-211
|
Liu S Y, Yang R J, Yin N Y, et al. The short-chain perfluorinated compounds PFBS, PFHxS, PFBA and PFHxA, disrupt human mesenchymal stem cell self-renewal and adipogenic differentiation[J]. Journal of Environmental Sciences, 2020, 88:187-199
|
Ritter S K. Fluorochemicals go short[J]. Chemical & Engineering News, 2010, 88(5):12-17
|
Lee H, D'eon J, Mabury S A. Biodegradation of polyfluoroalkyl phosphates as a source of perfluorinated acids to the environment[J]. Environmental Science & Technology, 2010, 44(9):3305-3310
|
马洁, 陈红瑞, 王娟, 等. 4种短链全氟化合物替代物在城市污水处理厂的污染特征研究[J]. 生态毒理学报, 2017, 12(3):191-202
Ma J, Chen H R, Wang J, et al. Pollution characteristics of four short chain perfluorinated compound substitutes in municipal wastewater treatment plant[J]. Asian Journal of Ecotoxicology, 2017, 12(3):191-202(in Chinese)
|
Chen S Q, Zhou Y Q, Meng J, et al. Seasonal and annual variations in removal efficiency of perfluoroalkyl substances by different wastewater treatment processes[J]. Environmental Pollution, 2018, 242:2059-2067
|
Filipovic M, Berger U. Are perfluoroalkyl acids in waste water treatment plant effluents the result of primary emissions from the technosphere or of environmental recirculation?[J]. Chemosphere, 2015, 129:74-80
|
Thompson J, Eaglesham G, Reungoat J, et al. Removal of PFOS, PFOA and other perfluoroalkyl acids at water reclamation plants in South East Queensland Australia[J]. Chemosphere, 2011, 82(1):9-17
|
Ma X Y Y, Wang Y K, Dong K, et al. The treatability of trace organic pollutants in WWTP effluent and associated biotoxicity reduction by advanced treatment processes for effluent quality improvement[J]. Water Research, 2019, 159:423-433
|
Cerreta G, Roccamante M A, Plaza-Bolanos P, et al. Advanced treatment of urban wastewater by UV-C/free chlorine process:Micro-pollutants removal and effect of UV-C radiation on trihalomethanes formation[J]. Water Research, 2020, 169:115220
|
Glover C M, Quiñones O, Dickenson E R V. Removal of perfluoroalkyl and polyfluoroalkyl substances in potable reuse systems[J]. Water Research, 2018, 144:454-461
|
仝贵婵, 叶裕才, 云桂春, 等. 城市污水深度处理中有机物的去除[J]. 环境科学, 2000, 21(6):73-76
Tong G C, Ye Y C, Yun G C, et al. Removal of organism from secondary effluent in advanced wastewater treatment for groundwater recharge[J]. Environmental Science, 2000, 21(6):73-76(in Chinese)
|
Sun H W, Zhang X Z, Wang L, et al. Perfluoroalkyl compounds in municipal WWTPs in Tianjin, China-Concentrations, distribution and mass flow[J]. Environmental Science and Pollution Research, 2012, 19(5):1405-1415
|
Pan C G, Liu Y S, Ying G G. Perfluoroalkyl substances (PFASs) in wastewater treatment plants and drinking water treatment plants:Removal efficiency and exposure risk[J]. Water Research, 2016, 106:562-570
|
Kibambe M G, Momba M N B, Daso A P, et al. Evaluation of the efficiency of selected wastewater treatment processes in removing selected perfluoroalkyl substances (PFASs)[J]. Journal of Environmental Management, 2020, 255:109945
|
Suzanne A G, Scott A M. Aqueous photolysis of 8:2 fluorotelomer alcohol[J]. Environmental Toxicology and Chemistry, 2005, 24(8):1837-1846
|
Anumol T, Dagnino S, Vandervort D R, et al. Transformation of polyfluorinated compounds in natural waters by advanced oxidation processes[J]. Chemosphere, 2016, 144:1780-1787
|
Zhang B, He Y, Huang Y Y, et al. Novel and legacy poly- and perfluoroalkyl substances (PFASs) in indoor dust from urban, industrial, and e-waste dismantling areas:The emergence of PFAS alternatives in China[J]. Environmental Pollution, 2020, 263(Pt A):114461
|
Zhou Q, Deng S B, Zhang Q Y, et al. Sorption of perfluorooctane sulfonate and perfluorooctanoate on activated sludge[J]. Chemosphere, 2010, 81(4):453-458
|
Chen H R, Peng H, Yang M, et al. Detection, occurrence, and fate of fluorotelomer alcohols in municipal wastewater treatment plants[J]. Environmental Science & Technology, 2017, 51(16):8953-8961
|
Dinglasan M J A, Ye Y, Edwards E A, et al. Fluorotelomer alcohol biodegradation yields poly- and perfluorinated acids[J]. Environmental Science & Technology, 2004, 38(10):2857-2864
|