EGGEN T, MOEDER M, ARUKWE A. Municipal landfill leachates:A significant source for new and emerging pollutants[J]. Science of the Total Environment, 2010,408(21):5147-5157.
|
REBECCA R. The long and the short of perfluorinated replacements[J]. Environmental Science & Technology, 2006, 40(1):12-13.
|
RITTER S K. Fluorochemicals go short[J]. Chem Eng News, 2010, 88(5):12-17.
|
MCLAUGHLIN C L, BLAKE S, Co-operation on existing chemicals. Hazard assessment of perfluorooctane sulfonate(PFOS)and its salts[R]. Environment Directorate Joint Meeting of the Chemicals Committee and the Working Party on Chemicals. Pesticides and Biotechnology, Paris, 2002
|
高燕, 傅建捷, 王亚韡, 等.全氟化工厂土芯中全氟化合物的分布规律[J].环境化学, 2014, 33(10):1686-1691.
GAO Y, FU J J, WANG Y W, et al. Spatial and vertical distribution of perfluoroalkyl substances in soil cores around manufacturing facilities in China[J]. Environmental Chemistry, 2014, 33(10):1686-1691(in Chinese).
|
HEKSTER F M, LAANE R W P M, DEVOOGT P. Environmental and toxicity effects of perfluoroalkylated substances[J]. Rev Environ Cont Toxicol, 2003, 179:99-121.
|
BUSCH J, AHRENS L, STURM R, et al. Polyfluoroalkyl compounds in landfill leachates[J]. Environmental Pollution, 2010, 158(5):1467-1471.
|
AHRENS L, SHOEIB M, HARNER T, et al. Wastewater treatment plant and landfills as sources of polyfluoroalkyl compounds to the atmosphere[J]. Environmental Science & Technology, 2011, 45(19):8098-8105.
|
WEINBERG I, DREYER A, EBINGHAUS R. Landfills as sources of polyfluorinated compounds, polybrominated diphenyl ethers and musk fragrances to ambient air[J]. Atmospheric Environment, 2011, 45(4):935-941.
|
HUSET C A, BARLAZ M A, BAROFSKY D F, et al. Quantitative determination of fluorochemicals in municipal landfill leachates[J]. Chemosphere, 2011, 82:1380-1386.
|
ANDREAS W, MIKAEL R. Results from the National Swedish Screening Programme[R]. 2008, IVL Swedish Environmental Research Institute:Stockholm.
|
BOSSI R, STRAND J, SORTKJAER O. Perfluorinated compounds in danish wastewater treatment plants and aquatic environments[J]. Environment International, 2008, 34(4):1-450.
|
BUCK R C, FRANKLIN J, BERGER U, et al. Perfluoroalkyl and polyfluoroalkyl substances in the environment:Terminology, classification, and origins[J]. Integr Environ Assess Manag, 2011, 7(4):513-541.
|
3M. Environmental Monitoring-multi-city-study Water, Sluge, Sediment, POTW Effluent and Landfill Leachate Samples[R]. 3M Environmental Laboratory, 2001:78-82.
|
LI B, DANON-SCHAFFER M N, LI L Y, et al. Occurrence of PFCs and PBDEs in landfill leachates from across Canada[J]. Water Air and Soil Pollution, 2012, 223(6):3365-3372.
|
HUSET C A, BARLAZ M A, BAROFSKY D F, et al. Quantitative determination of fluorochemicals in municipal landfill leachates[J]. Chemosphere, 2011, 82(10):1380-1386.
|
杨琳,李敬光.全氟化合物前体物质生物转化与毒性研究进展[J].环境化学,2015,34(4):649-655.
YANG L, LI J G. Perfluorinated compound precursors:Biotransformation and toxicity[J]. Environmental Chemistry, 2015, 34(4):649-655(in Chinese).
|
周珍, 胡宇宁, 史亚利, 等. 武汉地区水环境中全氟化合物污染水平及其分布特征[J].生态毒理学报,2017,12(3):425-433.
ZHOU Z, HU Y N, SHI Y L, et al. Occurrence and distribution of per-and polufluoroalkyl substances in waste water and surfacewater samples in Wuhan[J] Asian Journal of Ecotoxicology,2017,12(3):425-433(in Chinese).
|
YANG L P, ZHU L Y, LIU Z T. Occurrence and partition of perfluorinated compounds in water and sediment from Liao River and Taihu Lake, China[J]. Chemosphere, 2011, 83(6):806-814.
|
SHOEIB M, HARNER T,WILFORD BH, et al. Perffluorinated sulfonamides in indoor and outdoor air and indoor and dust:Occurrence, partitioning, and human exposure[J] Environmental Science and Technology, 2005, 39(17):6599-6606.
|
FENG X, SIMCIK M F, HALBACH T R, et al. Perfluorooctane sulfonate (PFOS) and perfluorooctanoate (PFOA) in soils and groundwater of a U.S. metropolitan area:Migration and implications for human exposure[J] Water Research, 2015, 72(Sp. Iss. SI):64-74.
|
PAN Y Y, SHI Y L, WANG J M. Pilot investigation of perfluorinated compounds in river water, sediment, soil and fish in Tianjin, China[J]. Blletin of Environmental Contamination & Toxicology, 2011, 87(2):152-157.
|