[1] |
LUO Ting, CUI Jinli, HU Shan, et al. Arsenic removal and recovery from copper smelting wastewater using TiO2[J]. Environmental Science & Technology, 2010, 44(23):9094-9098
|
[2] |
DUDKA S, ADRIANO D C. Environmental impacts of metal ore mining and processing:A review[J]. Journal of Environmental Quality, 1997, 26(3):590-602
|
[3] |
NORDSTROM D K. Worldwide occurrences of arsenic in ground water[J]. Science, 2002, 296(5576):2143-2145
|
[4] |
MCDONALD D M, WEBB J A, TAYLOR J. Chemical stability of acid rock drainage treatment sludge and implications for sludge management[J]. Environmental Science & Technology, 2006, 40(6):1984-1990
|
[5] |
WANG J W, BEJAN D, BUNCE N J. Removal of arsenic from synthetic acid mine drainage by electrochemical pH adjustment and coprecipitation with iron hydroxide[J]. Environmental Science & Technology, 2003, 37(19):4500-4506
|
[6] |
BASHA C A, SELVI S J, RAMASAMY E, et al. Removal of arsenic and sulphate from the copper smelting industrial effluent[J]. Chemical Engineering Journal, 2008, 141(1/2/3):89-98
|
[7] |
何孝磊, 程一松, 何丽. HDS工艺处理某矿山酸性废水试验研究[J]. 金属矿山, 2010(1):147-150
|
[8] |
MAHONEY J, LANGMUIR D, GOSSELIN N, et al. Arsenic readily released to pore waters from buried mill tailings[J]. Applied Geochemistry, 2005, 20(5):947-959
|
[9] |
KRAUSE E, ETTEL V A. Solubilities and stabilities of ferric arsenate compounds[J]. Hydrometallurgy, 1989, 22(3):311-337
|
[10] |
RIVEROS P A, DUTRIZAC J E, SPENCER P. Arsenic disposal practices in the metallurgical industry[J]. Canadian Metallurgical Quarterly:The Canadian Journal of Metallurgy and Materials Science, 2001, 40(4):395-420
|
[11] |
BANG S, PATEL M, LIPPINCOTT L, et al. Removal of arsenic from groundwater by granular titanium dioxide adsorbent[J]. Chemosphere, 2005, 60(3):389-397
|
[12] |
KHANDAKER N R, KRUMHANSL J, NEIDEL L, et al. Performance evaluation of AlCAN-AASF50-ferric coated activated alumina and granular ferric hydroxide (GFH)for arsenic removal in the presence of competitive ions in an active well:Kirtland field trial-initial studies[R]. SAND2005-7693. Albuquerque, New Mexico and Livermore, California, USA:Sandia National Laboratories, 2006
|
[13] |
崔金立, 罗婷, 景传勇. 一种用于吸附重金属的纳米二氧化钛的合成方法与应用:200910238505[P]. 2009-11-27
|
[14] |
汪昆平, 邓荣森. 活性炭吸附饮用水中卤乙酸的RSSCT试验研究[J]. 水处理技术, 2006, 32(10):21-24
|
[15] |
樊建新, 王玉军, 崔晓丹, 等. 基于同步辐射的硬X射线荧光技术分析污染土壤中重金属分布[J]. 生态与农村环境学报, 2013, 29(3):375-379
|
[16] |
CULLEN W R, REIMER K J. Arsenic speciation in the environment[J]. Chemical Reviews, 1989, 89(4):713-764
|