[1] 侯珺, 周金龙, 曾妍妍, 等. 新疆石河子地区地下水重(类)金属组分空间分布特征及影响因素 [J]. 新疆农业大学学报, 2017, 40(1): 71-78. doi: 10.3969/j.issn.1007-8614.2017.01.012 HOU J, ZHOU J L, ZENG Y Y, et al. Spatial distribution characteristics and influence factors of heavy metal(metalloid)constituents in groundwater in Shihezi area, Xinjiang [J]. Journal of Xinjiang Agricultural University, 2017, 40(1): 71-78(in Chinese). doi: 10.3969/j.issn.1007-8614.2017.01.012
[2] 栾风娇, 周金龙, 曾妍妍, 等. 新疆南部典型地区地下水中氟的分布特征及其富集因素分析[J]. 环境化学, 2016, 35(6): 1203-1211. LUAN F J, ZHOU J L, ZENG Y Y, et al. Distribution characteristics and enrichment factors of fluorine in groundwater in typical areas of southern Xinjiang [J]. Environmental Chemistry, 2016, 35(6): 1203-1211 (in Chinese).
[3] ZHOU Y Z, ZENG Y Y, ZHOU J L, et al. Distribution of groundwater arsenic in Xinjiang, P. R. China [J]. Applied Geochemistry, 2017, 77: 116-125. doi: 10.1016/j.apgeochem.2016.09.005
[4] FAN W, ZHOU J L, ZHOU Y Z, et al. Factors influencing the distribution of arsenic, fluorine and iodine in shallow groundwater in the oasis zone in the southern margin of the Tarim Basin in Xinjiang, P. R. China [J]. E3S Web of Conference, 2019,98: 09006. doi: 10.1051/e3sconf/20199809006
[5] 王国荃, 肖碧玉, 黄月珍, 等. 新疆地方性氟砷中毒的流行病学调查[J]. 中华预防医学杂志, 1995, 29(1): 30-33. WANG G, XIAO B, HUANG Y, et al. Epidemiological studies on endemic fluorosis and arsenism in Xinjiang. Chinese Journal of Preventive Medicine, 1995, 29(1): 30-33 (in Chinese).
[6] 李巧, 周金龙, 曾妍妍. 奎屯河及玛纳斯河流域平原区地下水中氮素对砷迁移富集的影响[J]. 环境化学, 2017, 36(10): 2227-2234. LI Q, ZHOU J L, ZENG Y Y. Effects of nitrogen on the migration and enrichment of arsenic in the groundwater in the plain area of Kuitun River and Manas River basin[J]. Environmental Chemistry, 2017, 36(10): 2227-2234 (in Chinese).
[7] 张二勇, 张福存, 钱永, 等. 中国典型地区高碘地下水分布特征及启示[J]. 中国地质, 2010, 37(3): 797-802. ZHANG E Y, ZHANG F C, QIAN Y, et al. The distribution of high iodine groundwater in typical areas of China and its inspiration [J]. Geology in China, 2010, 37(3): 797-802 (in Chinese).
[8] 钱永, 张兆吉, 费宇红, 等. 华北平原饮用地下水碘分布及碘盐分区供应探讨[J]. 生态与农村环境学报 , 2014, 30(1): 9-14. QIAN Y, ZHANG Z J, FEI Y H, et al. Spatial distribution of iodine in underground drinking water and discussion on region-specific supply of iodized salt in the north China plain [J]. Journal of Ecology and Rural Environment, 2014, 30(1): 9-14 (in Chinese).
[9] FAREBROTHER J, ZIMMERMANN M B, ABDALLAH F, et al. The effect of excess iodine intake from iodized salt and/or groundwater iodine on thyroid function in non-pregnant and pregnant women, infants and children: A multicenter study in East Africa [J]. Thyroid, 2018, 28(9): 1198-1210. doi: 10.1089/thy.2018.0234
[10] XU F, MA T, SHI L, et al. The hydrogeochemical characteristics of high iodine and fluoride groundwater in the Hetao Plain, Inner Mongolia [J]. Procedia Earth and Planetary Science, 2013, 7: 908-911. doi: 10.1016/j.proeps.2013.03.183
[11] LI J X, WANG Y X, GUO W, et al. Iodine mobilization in groundwater system at Datong basin, China: Evidence from hydrochemistry and fluorescence characteristics [J]. Science of the Total Environment, 2014, 468/469(13): 738-745.
[12] ZHANG Y J, WU Y G, SUN J C, et al. Controls on the spatial distribution of iodine in groundwater in the Hebei Plain, China [J]. Environmental Science and Pollution Research International, 2018, 25(17): 16702-16709. doi: 10.1007/s11356-018-1843-3
[13] 罗婷, 景传勇. 地下水砷污染形成机制研究进展[J]. 环境化学, 2011, 30(1): 77-83. LUO T, JING CY. Research progress on mechanism of arsenic mobilization in groundwater[J]. Environmental Chemistry, 2011, 30(1): 77-83 (in Chinese).
[14] 吴飞, 王曾祺, 童秀娟, 等. 我国典型地区浅层高碘地下水分布特征及其赋存环境[J]. 水资源与水工程学报, 2017, 28(2): 99-104. WU F, WANG Z Q, TONG X J, et al. The distribution characteristics and storage environments of rich iodine in shallow groundwater of typical areas in China[J]. Journal of Water Resources and Water Engineering, 2017, 28(2): 99-104 (in Chinese).
[15] 徐芬, 马腾, 石柳, 等. 内蒙古河套平原高碘地下水的水文地球化学特征 [J]. 水文地质工程地质, 2012, 39(5): 8-15. XU F, MA T, SHI L, et al. The distribution characteristics and storage environments of rich iodine in shallow groundwater of typical areas in China [J]. Hydrogeology & Engineering Geology, 2012, 39(5): 8-15(in Chinese).
[16] PI K F, WANG Y X, XIE X J, et al. Hydrogeochemistry of co-occurring geogenic arsenic, fluoride and iodine in groundwater at Datong Basin, northern China. Journal of Hazardous Materials, 2015, 300: 652-661.
[17] 张艳. 干旱区地下水文生态安全评价信息系统研究: 以新疆石河子垦区为例 [D]. 西安: 长安大学, 2011. ZHANG Y. Study on groundwater hydro-ecological security evaluation information system in arid areas--a case of ShiHeZi oasis in XinJiang [D]. Xi’an: Chang’an University, 2011 (in Chinese).
[18] 范丽红, 崔彦军, 何清. 新疆石河子地区近40 a来气候变化特征分析 [J]. 干旱区研究, 2006, 23(2): 334-338. FAN L H, CUI Y J, HE Q. Analysis on the climate change characteristics in the Shihezi region, Xinjiang in recent 40 Years [J]. Arid Zone Research, 2006, 23(2): 334-338(in Chinese).
[19] 陈冰, 刘斌, 李清明, 等. 新疆维吾尔自治区石河子市城市地质勘查报告 [R]. 昌吉: 新疆地质矿产局第二水文地质工程地质大队, 1990. CHEN B, LIU B, LI Q M, et al. Urban geology investigation report in the Shihezi City in Xinjiang Uygur Autonomous Region [R]. Changji: No. 2 Hydrogeology and Engineering Geology Party of Xinjiang Bureau of Geology and Mineral Resources Exploration and Development, 1990 (in Chinese).
[20] 段磊, 王文科, 曹玉清等. 天山北麓中段地下水水化学特征及其形成作用 [J]. 干旱区资源与环境, 2007, 21(9): 29-34. doi: 10.3969/j.issn.1003-7578.2007.09.007 DUAN L, WANG W K, CAO Y Q, et al. Hydrochemical characteristics and formation mechanics of groundwater in the middle of northern slope of Tianshan Mountains [J]. Journal of Arid Land Resources and Environment, 2007, 21(9): 29-34(in Chinese). doi: 10.3969/j.issn.1003-7578.2007.09.007
[21] 董新光, 邓铭江. 新疆地下水资源 [M]. 乌鲁木齐: 新疆科学技术出版社, 2005. DONG X G, DENG M J. Xinjiang groundwater resources [M]. Urumqi: Xinjiang Science and Technology Press, 2005 (in Chinese).
[22] 栾风娇, 周殷竹, 周金龙, 等. 新疆石河子地区地下水氟分布及富集因素分析 [J]. 人民黄河, 2016, 3: 64-67. doi: 10.3969/j.issn.1000-1379.2016.09.016 LUAN F J, ZHOU Y Z, ZHOU J L, et al. Distribution characteristics and enrichment factors of groundwater fluorine in Shihezi Area of Xinjiang [J]. Yellow River, 2016, 3: 64-67(in Chinese). doi: 10.3969/j.issn.1000-1379.2016.09.016
[23] 吴彬. 石河子市地下水系统演化规律与水环境效应研究[D]. 乌鲁木齐: 新疆农业大学, 2007. WU B. Study on groundwater system evolvement law and water environment effect of Shihezi City[D]. Urumqi: Xinjiang Agriculture University, 2007 (in Chinese).
[24] 齐万秋, 周金龙. 石河子市地下水环境背景值[J]. 干旱环境监测, 1994, 8(1): 14-16. QI W Q, ZHOU J L. Environmental background values of the groundwater of Shihezi City [J]. Arid Environmental Monitoring, 1994, 8(1): 14-16 (in Chinese).
[25] 侯珺. 石河子地区地下水水质演化与微量无机组分形成机理研究[D]. 乌鲁木齐: 新疆农业大学, 2018. HOU J. Research of evolution of groundwater quality and occurrence mechanism of trace inorganic components in Shihezi Area[D]. Urumqi: Xinjiang Agriculture University, 2018 (in Chinese).