Citation: | FEI Juan, YU Yang, ZHENG Hao, DING Zhen. Health risk assessment of trichlormethane in school drinking water of Jiangsu Province[J]. CHINESE JOURNAL OF SCHOOL HEALTH, 2024, 45(11): 1653-1656. doi: 10.16835/j.cnki.1000-9817.2024348 |
[1] |
NHAMO C, SAVIA S M, WELLDONE M, et al. Contemporary issues on the occurrence and removal of disinfection byproducts in drinking water: a review[J]. J Environ Chem Eng, 2020, 8(2): 103659. doi: 10.1016/j.jece.2020.103659
|
[2] |
KELLY-COTO D E, GAMBOA-JIMÉNEZ A, MORA-CAMPOS D, et al. Modeling the formation of trihalomethanes in rural and semi-urban drinking water distribution networks of Costa Rica[J]. Environ Sci Pollut R, 2022, 29(22): 32845-32854. doi: 10.1007/s11356-021-18299-0
|
[3] |
EVLAMPIDOU I, FONTRIBERA L, ROJASRUEDA D, et al. Trihalomethanes in drinking water and bladder cancer burden in the European union[J]. Environ Health Perspect, 2020, 128(1): 017001. doi: 10.1289/EHP4495
|
[4] |
VILLANUEVA C M, GRACIA-LAVEDAN E, BOSETTI C, et al. Colorectal cancer and long-term exposure to trihalomethanes in drinking water: a multicenter case-control study in Spain and Italy[J]. Environ Health Perspect, 2017, 125: 56-65. doi: 10.1289/EHP155
|
[5] |
WHO. Guidelines for drinking-water quality: fourth edition incorporating the first and second addenda[M]. Geneva: WHO, 2022.
|
[6] |
国家市场监督管理总局, 国家标准化管理委员会. 生活饮用水卫生标准: GB 5749—2022[S]. 北京: 中国标准出版社, 2022.
State Administration for Market Regulation, Standardization Administration of the PRC. Standards for drinking water quality: GB 5749-2022[S]. Beijing: China Standards Press, 2022. (in Chinese)
|
[7] |
LI R A, MCDONALD J A, SATHASIVAN A, et al. A multivariate Bayesian network analysis of water quality factors influencing trihalomethanes formation in drinking water distribution systems[J]. Water Res, 2021, 190: 116712. doi: 10.1016/j.watres.2020.116712
|
[8] |
国家市场监督管理总局, 国家标准化管理委员会. 生活饮用水标准检验方法: GB/T 5750—2023[S]. 北京: 中国标准出版社, 2023.
State Administration for Market Regulation, Standardization Administration of the PRC. Standard examination methods for drinking water: GB/T 5750-2023[S]. Beijing: China Standards Press, 2023. (in Chinese)
|
[9] |
U.S. Environmental Protection Agency. Risk assessment guidance for superfund volume Ⅰ: human health evaluation manual (Part A): EPA/540/1-89/002[S]. Washington, D. C. : Office of Emergency and Remedial Response, 1989.
|
[10] |
DU Y J, ZHAO L, BAN J, et al. Cumulative health risk assessment of disinfection by-products in drinking water by different disinfection methods in typical regions of China[J]. Sci Total Environ, 2021, 770: 144662. doi: 10.1016/j.scitotenv.2020.144662
|
[11] |
中华人民共和国环境保护部. 中国人群暴露参数手册(儿童卷: 6~17岁)[M]. 北京: 中国环境出版社, 2016.
Ministry of Environmental Protection of the PRC. Exposure factors handbook of Chinese population(child: 6-17 years)[M]. Beijing: Environment Press, 2016. (in Chinese)
|
[12] |
中华人民共和国环境保护部. 中国人群暴露参数手册(成人卷)[M]. 北京: 中国环境出版社, 2014.
Ministry of Environmental Protection of the PRC. Exposure factors handbook of Chinese population(Adults)[M]. Beijing: China Environment Press, 2014. (in Chinese)
|
[13] |
LEGAY C, RODRIGUEZ MJ, SADIQ R, et al. Spatial variations of human health risk associated with exposure to chlorination by-products occurring in drinking water[J]. J Environ Manage, 2011, 92(3): 892-901. doi: 10.1016/j.jenvman.2010.10.056
|
[14] |
RADWAN E K, BARAKAT M H, IBRAHIMM B M. Hazardous in organic disinfection by-products in Egypt's tap drinking water: occurrence and human health risks assessment studies[J]. Sci Total Environ, 2021, 797: 149069 doi: 10.1016/j.scitotenv.2021.149069
|
[15] |
U.S. Environmental Protection Agency. Toxicological review of chlorofrom: EPA/635/R-01/001[S]. Washington, D. C. : Office of Science and Technology, 2001.
|
[16] |
张磊, 胡海娟, 张可欣, 等. 天津市农村中小学校饮用水中三氯甲烷含量及健康风险评估[J]. 中国学校卫生, 2024, 45(6): 784-787. doi: 10.16835/j.cnki.1000-9817.2024177
ZHANG L, HU H J, ZHANG K X, et al. Concentration and health risk assessment of trichloromethane in drinking water for rural primary and middle school students in Tianjin[J]. Chin J Sch Health, 2024, 45(6): 784-787. (in Chinese) doi: 10.16835/j.cnki.1000-9817.2024177
|
[17] |
DU Y J, ZHAO L, BAN J, et al. Cumulative health risk assessment of disinfection by-products in drinking water by different disinfection methods in typical regions of China[J]. Sci Total Environ, 2021, 770: 144662. doi: 10.1016/j.scitotenv.2020.144662
|
[18] |
AWAD J, VAN LEEUWEN J, CHOW C W K, et al. Seasonal variation in the nature of DOM in a river and drinking water reservoir of a closed catchment[J]. Environ Pollut, 2017, 220: 788-796. doi: 10.1016/j.envpol.2016.10.054
|
[19] |
HONG H C, QIAN L Y, XIONG Y J, et al. Use of multiple regression models to evaluate the formation of halonitromethane via chlorination/chloramination of water from Tai Lake and the Qiantang River, China[J]. Chemosphere, 2015, 119: 540-546. doi: 10.1016/j.chemosphere.2014.06.084
|
[20] |
郭杨, 林国峰, 熊正龙. 江苏省供水安全保障工作探索及实践[J]. 江苏建筑, 2019(1): 112-114.
GUO Y, LIN G F, XIONG Z L. Exploration and practice for water supply security in Jiangsu Province[J]. Jiangsu Constr, 2019(1): 112-114. (in Chinese)
|
[21] |
周闰, 杨丽, 吴宇伉, 等. 无锡市不同生活饮用水中两类消毒副产物三卤甲烷及卤乙酰胺的浓度比较[J]. 环境与职业医学, 2023, 40(4): 456-461.
ZHOU R, YANG L, WU Y K, et al. Trihalomethanes and haloacetamides as disinfection by-products in different types of drinking water of Wuxi[J]. J Environ Occup Med, 2023, 40(4): 456-461. (in Chinese)
|
[22] |
张楷立, 林大瑛, 邱楚茵, 等. 家庭常用处理方法控制氯化消毒饮用水中消毒副产物的研究进展[J]. 净水技术, 2021, 40(7): 60-70.
ZHANG K L, LIN D Y, QIU C Y, et al. Review of household drinking water treatment with DBPs control for chlorinated tap water[J]. Water Purif Technol, 2021, 40(7): 60-70. (in Chinese)
|