郭华明,杨素珍,沈照理.富砷地下水研究进展.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.Advance in Earth Sciences,2007,22(11):1109-1117(in Chinese)
[2]
庄金陵.砷对世界地下水源的污染.矿产与地质,2003,17(2):177-178 Zhuang J.L.Worldwide underground water pollution by arsenic.Mineral Resources and Geology,2003,17(2):177-178(in Chinese)
[3]
Zhu C.S.,Bai G.L.,Liu X.L.,et al.Screening high-fluoride and high-arsenic drinking waters and surveying endemic fluorosis and arsenism in Shanxi Province in western China.Water Research,2006,40(16):30-31
[4]
聂静.有色金属冶炼生产中含砷废水及废渣的治理研究.武汉:武汉理工大学硕士学位论文,2006 Nie Jing.The research of the arsenic wastewater and waste residue in non-ferrous metals smeltery company.Wuhan:Master\'s Degree Thesis of Wuhan University of Technology,2006 (in Chinese)
[5]
丁爱中,杨双喜,张宏达.地下水砷污染分析.吉林大学学报(地球科学版),2007,37(2):319-325 Ding A.Z.,Yang S.X.,Zhang H.D.Analysis on arsenic contamination in groundwater.Journal of Jilin University(Earth Science Edition),2007,37(2):319-325(in Chinese)
[6]
刘秉志,郑晓玉.砷与人体健康.内蒙古民族大学学报(自然科学版),2007,22(4):436-438 Liu B.Z.,Zheng X.Y.Arsenic and human health.Inner Mongolia National University Journal (Natural Science Edition),2007,22(4):436-438(in Chinese)
[7]
霍金仙,郭永,王志.含砷(Ⅲ)水处理技术的回顾及展望.环境科学与技术,2009,32(11):102-107 Huo J.X.,Guo Y.,Wang Z.Arsenic (Ⅲ) water treatment technology review and prospect.Environmental Science and Technology,2009,32(11):102-107(in Chinese)
[8]
丁爱中,陈海英,程莉蓉,等.地下水除砷技术的研究进展.安徽农业科学,2008,36(27):11979-11982 Ding A.Z.,Chen H.Y.,Cheng L.R.,et.Research progress on the arsenic removal techniques for groundwater.Journal of Anhui Agricultural Sciences,2008,36(27):11979-11982(in Chinese)
[9]
庄明龙,柴立元,闽小波,等.含砷废水处理研究进展.工业水处理,2004,24(7):13-17 Zhuang M.L.,Cai L.Y.,Min X.B.,et al.The progress of research of treating As-containing wastewater.Industrial Water Treatment,2004,2(7):13-17(in Chinese)
[10]
李晓波.饮用水除砷技术研究进展.环境工程学报,2009,3(5):777-781 Li X.B.Research advances in arsenic removal from drinking water.Chinese Journal of Environmental Engineering,2009,3(5):777-781(in Chinese)
[11]
李明玉,马培培,曹刚,等.强化混凝去除微污染饮用原水中的As(III).中国环境科学,2010,30(3):345-348 Li M.Y.,Ma P.P.,Cao G.,et al.The enhanced coagulation remove the pollution of drinking water As (III).China Environmental Science,2010,12(3):345-348(in Chinese)
[12]
李晓波.混凝微滤工艺处理高砷水源水和低放废水的试验研究.天津:天津大学硕士学位论文,2007 Li X.B.Experimental research on high-arsenic source water and low-level liquid radioactive waste treatment by coagulation/microfiltration process.Tianjin:Master\'s Degree Thesis of Tianjin University,2007(in Chinese)
[13]
Ioannis A.Katsoyiannis,Thomas Ruettimann,Stephan J.Hug.pH dependence of Fenton reagent generation and As(III) oxidation and removal by corrosion of zero valent iron in aerated water.Environ.Sci.Technol.,2008,43(10):7424-7430
[14]
熊慧欣,周立祥.不同晶型羟基氧化铁(FeOOH)的形成及其在吸附去除Cr(Ⅵ)上的作用.岩石矿物学杂志,2008,27(6):559-566 Xiong H.X.,Zhou L.X.Synthesis of iron oxy hydroxides of different crystal forms and their roles in adsorption and removal of Cr(Ⅵ) from aqueous solutions.Petromineralogy,2008,27(6):559-566(in Chinese)
[15]
郭慧.氢氧化铁和羟基氧化铁的催化相转化机理研究.石家庄:河北师范大学硕士学位论文,2004 Guo Hui.Study on the catalytic phase transformation mechanism of ferric hydroxide/oxo hydroxides.Shijiazhuang:Master\'s Degree Thesis of Hebei Normal University,2004(in Chinese)
[16]
王华东,郝春曦,王建.环境中的砷—行为、影响、控制.北京:中国环境科学出版社,1992
[17]
Gallard H.,Laat J.D.Kinetic modelling of Fe(Ⅲ)/H2O2 oxidation reactions in dilute aqueous solution using atrazine as a model organic compound.Water Res.,2000,34(12):3007-3017
[18]
陈胜兵,何少华,娄金生,等.Fenton试剂的氧化作用机理及其应用.环境科学与技术,2004,27(3):105-107 Chen S.B.,He S.H.,Lou J.S.,et al.Oxidation mechanism and application of Fenton reagent.Environmental Science and Technology,2004,27(3):105-107(in Chinese)