[1] Lelyveld H V, Zoeteman B C J. Water supply and health[M]. New York:Girro, 1981:167-183. [2] World Health Organization. Guidelines for Drinking-Water Quality[M]. Fourth Edition. Malta:Gutenberg, 2011. [3] 欧盟饮用水水质指令(98/83/EC)[J]. 净水技术, 2004(s1):34. [4] USEPA. 美国国家饮用水水质标准[S]. 2001. [5] 中华人民共和国卫生部. GB5749—2006生活饮用水卫生标准[S]. 北京:中国标准出版社, 2006. [6] 林英姿, 吴超. 饮用水中消毒副产物及其控制研究现状[J]. 中国资源综合利用, 2012, 30(10):48-50. [7] 王占生, 刘文君. 微污染水源饮用水处理[M]. 北京:中国建筑工业出版社, 1999. [8] Matilainen A, Vepsalainen M, Sillanpaa M. Natural organic matter removal by coagulation during drinking water treatment:A review[J]. Advances in Colloid and Interface Science, 2010, 159(2):189-197. [9] Heim T H, Dietrich A M. Sensory aspects and water quality impacts of chlorinated and chloraminated drinking water in contact with HDPE and cPVC pipe[J]. Water Research, 2007, 41(4):757-764. [10] Khiari D. Distribution Generated Taste-and-Odor Phenomena[M]. Denver:American Water Works Association, 2002. [11] Gachter R, Muller H. Plastics Additives Handbook[M]. Munich:Hanser Publishers, 1993. [12] Skjevrak I, Due A, Gjerstad K O, et al. Volatile organic components migrating from plastic pipes (HDPE, PEX and PVC)into drinking water[J]. Water Research, 2003, 37(8):1912-1920. [13] Lund V, Anderson-Glenna M, Skjevrak I, et al. Long-term study of migration of volatile organic compounds from cross-linked polyethylene (PEX) pipes and effects on drinking water quality[J]. Journal of Water and Health, 2011, 9(3):483-497. [14] Brocca D, Arvin E, Mosbaek H. Identification of organic compounds migrating from polyethylene pipelines into drinking water[J]. Water Research, 2002, 36(15):3675-3680. [15] Whelton A J, Nguyen T. Contaminant migration from polymeric pipes used in buried potable water distribution systems:A review[J]. Critical Reviews in Environmental Science and Technology, 2013, 43(7):679-751. [16] Sadiki A D, Williams D T. A study on organotin levels in Canadian drinking water distributed through PVC pipes[J]. Chemosphere, 1999, 38(7):1541-1548. [17] 崔福义, 任刚. 饮用水的有机锡问题及对策[J]. 环境工程学报, 2007, 1(1):1-6. [18] Durand M L. Disinfectants and plumbing materials:Effects on the sensory and chemical characteristics of drinking water[D]. Blacksburg:Virginia Tech., 2005. [19] Durand M L, Dietrich A M. Contributions of silane cross-linked PEX pipe to chemical/solvent odours in drinking water[J]. Off-Flavours in the Aquatic Environment Ⅶ, 2005, 55(5):153-160. [20] Banzer J D. The migration of vinyl chloride monomer from PVC pipe into water[J]. Journal of Vinyl Technology, 1979, 1(3):164-167. [21] Flournoy R L, Monroe D, Chestnut N, et al. Health effects from vinyl chloride monomer leaching from pre-1977 PVC pipes[R]. Chicago: American Water Works Association, 1999. [22] Richardson R, Edwards M. Vinyl chloride and organotin stabilizers in water contacting new and aged PVC pipes[R]. Colorado:Water Research Foundation, 2009. [23] 赵洪宾. 给水管道卫生学[M]. 北京:中国建筑工业出版社, 2008. [24] Skjevrak I, Lund V, Ormerod K, et al. Biofilm in water pipelines:A potential source for off-flavours in the drinking water[J]. Water Science and Technology, 2004, 49(9):211-217. [25] Skjevrak I, Lund V, Ormerod K, et al. Volatile organic compounds in natural biofilm in polyethylene pipes supplied with lake water and treated water from the distribution network[J]. Water Research, 2005, 39(17):4133-4141. [26] Höckelmann C, Jüttner F. Off-flavours in water:Hydroxyketones and β-ionone derivatives as new odour compounds of freshwater cyanobacteria[J]. Flavour and Fragrance Journal, 2005, 20(4):387-394. [27] Naohiro K, Naohiro K, Kentaro N, et al. Recent trends in microorganism-related off-flavor problems in drinking water treatment systems in Japan[J]. Water Science & Technology:Water Supply, 2013, 13(5):1228-1235. [28] Krasner S W, Weinberg H S, Richardson S D, et al. Occurrence of a new generation of disinfection byproducts[J]. Environmental Science & Technology, 2006, 40(23):7175-7185. [29] Richardson S D, Plewa M J, Wagner E D, et al. Occurrence, genotoxicity, and carcinogenicity of regulated and emerging disinfection by-products in drinking water:A review and roadmap for research[J]. Mutation Research, 2007, 636(1-3):178-242. [30] Plewa M J, Wagner E D, Muellner M G, et al. Comparative mammalian cell toxicity of N-DBPs and C-DBPs[J]. ACS Symposium Series, 2008, 995:36-50. [31] 刘文君. 饮用水中可生物降解有机物和消毒副产物特性研究[D]. 北京:清华大学, 1999. [32] Mercier Shanks C, Sérodes J B, Rodriguez M J. Spatio-temporal variability of non-regulated disinfection by-products within a drinking water distribution network[J]. Water Research, 2013, 47(9):3231-3243. [33] Rodriguez M J, Sérodes J B, Levallois P. Behavior of trihalomethanes and haloacetic acids in a drinking water distribution system[J]. Water Research, 2004, 38(20):4367-4382. [34] 王丽花, 周鸿, 张晓健. 供水管网中 AOC、消毒副产物的变化规律[J]. 中国给水排水, 2001, 17(6):1-3. [35] Chen W J, Weisel C P. Halogenated DBP:Concentrations in a distribution system[J]. Journal——American Water Works Association, 1998, 90(4):151-163. [36] Wei J R, Ye B X, Wang W Y, et al. Spatial and temporal evaluations of disinfection by-products in drinking water distribution systems in Beijing, China[J]. Science of the Total Environment, 2010, 408(20):4600-4606. [37] Rodriguez M J, Sérodes J B, Levallois P, et al. Chlorinated disinfection by-products in drinking water according to source, treatment, season, and distribution location[J]. Journal of Environmental Engineering and Science, 2007, 6(4):355-365. [38] Nikolaou A D, Kostopoulou M N, Lekkas T D. Organic by-products of drinking water chlorination[J]. Global Nest:Int. J., 1999, 1(3):143-156. [39] 陈萍萍, 张建英, 金坚袁. 饮用水中卤乙酸和三卤甲烷的形成及影响因素研究[J]. 环境化学, 2005, 24(4):434-437. [40] Andra S S, Makris K C, Botsaris G, et al. Evidence of arsenic release promoted by disinfection by-products within drinking-water distribution systems[J]. Science of the Total Environment, 2014, 472:1145-1151. |