KRISHNA M, CHANDRASEKARAN K, KARUNASAGA D, et al. A combined treatment approach using Fenton' s reagent and zero valent Iron for the removal of arsenic from drinking water[J].Journal of Hazardous Materials,2001, 84:229-240.
郭华明,郭琦,贾永锋,等.中国不同区域高砷地下水化学特征及形成过程[J].地球科学与环境学报,2013,35(3):83-96. GUO H M, GUO Q, JIA Y F, et al. Characteristics and geochemical process of high arsenic groundwater in different regions of China[J].Journal of Earth Sciences and Environment,2013,35(3):83-96(in Chinese).
王连方,刘鸿德,徐训风,等.新疆奎屯垦区慢性地方性砷中毒调查报告[J].中国地方病学杂志,1983(2):71-71. WANG L F, LIU H D, XU X F, et al. Investigation report of chronic endemic arsenism in Kuitun, Xinjiang[J].Chinese Journal of Endemiology,1983 (2):71-71(in Chinese).
袁雪花,苏玉红.奎屯高砷地下水灌溉区居民头发和指甲中砷含量研究[J].安全与环境学报,2017,17(4):1519-1523. YUAN X H, SU Y H. Research review on the recycled-use of the waste propellants in the industrial explosives[J].Journal of Safety and Environment,2017,17(4):1519-1523(in Chinese).
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 nitrogens 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).
BOYLE D R, TURNER R J W, HALL G E. Anomalous arsenic concentrations in groundwaters of an island community, Bowen Island, British Columbia. Environmental Geochemistry and Health, 1998, 20:199-212.
MARINER P E, HOLZMER F J, TACKSON R E et al. Effects of high pH on arsenic mobility in a shallow sandy aquifer and on aquifer permeability along the Adjacent Shoreline, Commencement Bay Superfund Site, Tacoma, Washington[J]. Environmental Science& Technology, 1996, 30:1645-1651.
郭华明,王焰新,李永敏.山阴水砷中毒区地下水砷的富集因素分析[J].环境科学,2003,24(4):60-67. GUO H M, WANG Y X, LI Y M. Analysis of factors resulting in anomalous arsenic concentration in groundwaters of Shanyin, Shanxi Province[J].Environmental Science,2003,24(4):60-67(in Chinese).
张丽萍,谢先军,李俊霞,等.大同盆地地下水中砷的形态、分布及其富集过程研究[J].地质科技情报,2014,33(1):178-184. ZHANG L P, XIE X J, LI J X, et al. Spatial variation, speciation and enrichment of arsenic in groundwater from the Datong Basin, Northern China[J].Geological Science and Technology Information,2014,33(1):178-184(in Chinese).
张昌延,何江涛,张小文,等.珠江三角洲高砷地下水赋存环境特征及成因分析[J].环境科学,2018,39(8):3631-3639. ZHANG C Y,HE J T,ZHANG X W, et al. Geochemical characteristics and genesis analyses of high-arsenic groundwater in the Pearl River Delta[J].Environmental Science,2018,39(8):3631-3639(in Chinese).
马玉玲,马杰,陈雅丽,等.水铁矿及其胶体对砷的吸附与吸附形态[J].环境科学,2018,39(1):179-186. MA Y L,MA J,CHEN Y L, et al. Arsenic adsorption and its species on ferrihydrite and ferrihydrite colloid[J]. Environmental Science, 2018, 39(1):179-186(in Chinese).
高存荣,刘文波,冯翠娥,等.干旱、半干旱地区高砷地下水形成机理研究:以中国内蒙古河套平原为例[J].地学前缘,2014,21(4):13-29. GAO C R,LIU W B,FENG C E, et al. Research on the formation mechanism of high arsenic groundwater in arid and semi-arid regions:A case study of Hetao Plain in Inner Mongolia, China[J].Earth Science Fronyiers,2014,21(4):13-29(in Chinese).
王焰新,苏春利,谢先军,等.大同盆地地下水砷异常及其成因研究[J].中国地质,2010,37(3):771-780. WANG Y X, SU C L, XIE X J, et al. The genesis of high arsenic groundwater:A case study in Datong basin[J].Geology in China,2010,37(3):771-780(in Chinese).
ROBERTSON F N.Arsenic in groundwater under oxidizing conditions, south-west United States[J]. Environmental Geochemistry and Health, 1989, 11(11):171-185.
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 C Y. Research progress on mechanism of arsenic mobilization in groundwater[J].Environmental Chemistry, 2011,30(1):77-83(in Chinese).
郭华明,杨素珍,沈照理.富砷地下水研究进展[J].地球科学进展,2007,22(11):1109-1117. GUO H M, YANG S Z, SHEN Z L. High arsenic groundwater in the world:Overview and research perspectives[J].Advances in Earth Science, 2007, 22(11):1109-1117(in Chinese).
洪里.新疆奎屯北部车排子地区高氟、高砷水的病害与形成环境的初步研究[J].新疆环境保护,1983,10(1):22-28. HONG L.A preliminary study on the formation environment and disease of high fluorine and high arsenic water in Chepaizi Area, Northern Kuitun, Xinjiang[J].Environmental Protection of Xinjiang,1983,10(1):22-28(in Chinese).
裴捍华,梁树雄,宁联元.大同盆地地下水中砷的富集规律及成因探讨[J].水文地质工程地质,2005,32(4):65-69. FEI H H, LIANG S X, NING L Y.A discussion of the enrichment and formation of arsenic in groundwater in Datong Basin[J].Hydrogeology Engineering Geology,2005,32(4):65-69(in Chinese).
罗艳丽,李晶,蒋平安,等.新疆高砷地区地下水水化学特征及其成因分析[J].干旱区资源与环境,2017,31(8):116-121. LUO Y L, LI J, JIANG P A, et al. Hydro-chemical characteristics and the formations for groundwater in Kuitun, Xinjiang[J].Journal of Arid Land Resources and Environment, 2017, 31(8):116-121(in Chinese).