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·632 工程科学学报,第37卷,第5期 sponge iron sphere prepared by charcoal direct reduction.J Enri- (9):3167 ron Sci,2009,21:S60 (张显龙,张思阳,冯婧微.纳米铁的制备及去除废水中的 [10]Wu L M,Liao L B,Li G C,et al.Micro-eleetrolysis of Cr(VI) C(Vm).环境工程学报,2012,6(9):3167) in the nanoscale zero-valent iron loaded activated carbon.J Haz- [16]Park D,Yun Y S and Park J M.Mechanisms of the removal of ardous Mater,2013,254-255:277 hexavalent chromium by biomaterials or biomaterial-based activa- [11]Hoch L B,Mack E J,Hydutsky B W,et al.Carbothermal syn- ted carbons.J Hazard Mater,2006,137 (2)1254 thesis of carbon-supported nanoscale zeoalent iron particles for [17]Argun M E,Dursun S,Ozdemir C,et al.Heavy metal adsorp- the remediation of hexavalent chromium.Environ Sci Technol, tion by modified oak sawdust:thermodynamics and kinetics. 2008,42(7):2600 Hazard Mater,2007,141(1):77 [12]Alowitz M J,Scherer MM.Kinetics of nitrate,nitrite,and 18] Powell R M,Puls R W.Proton generation by dissolution of in- Cr(VI)reduction by iron metal.Environ Sci Technol,2002,36 trinsic or augmented aluminosilicate minerals for in situ contami- (3):299 nant remediation by zero-valencestate iron.Enriron Sci Technol, [13]Shi L N,Zhang X,Chen Z L.Removal of chromium (VI)from 1997,31(8):2244 wastewater using bentonitesupported nanoscale zerovalent iron. [19]Wu Y J.Chromium (VI)Reduction in Aqueous Solutions by Water Res,2011,45(2):886 Fe:0a-stabilized Fe Nanoparticles [Dissertation].Hangzhou: 14]Wang W.Preparation of Polymer Coated Nanoiron particles for Zhejiang University,2010 Remediation of Contaminated Groundwater [Dissertation].Tian- (吴燕君.Fe30,稳定化纳米Fe°对水体中Cr(VI)的去除研 jing:Nankai University.2008 究[学位论文].杭州:浙江大学,2010) (王薇.包覆型纳米铁的制备及用于地下水污染修复的实验 0]Yang X W,Qiu D F.Hydrometallurgy.Beijing:Metallurgical 研究[学位论文].天津:南开大学,2008) Industry Press,1998 [15]Zhang X L,Zhang S Y,Feng J W.Preparation of nano-iron for (杨显万,邱定蕃.湿法治金.北京:治金工业出版社, removing Cr from wastewaters.Chin J Enriron Eng,2012,6 1998)工程科学学报,第 37 卷,第 5 期 sponge iron sphere prepared by charcoal direct reduction. J Envi￾ron Sci,2009,21: S60 [10] Wu L M,Liao L B,Lü G C,et al. Micro-electrolysis of Cr( VI) in the nanoscale zero-valent iron loaded activated carbon. J Haz￾ardous Mater,2013,254-255: 277 [11] Hoch L B,Mack E J,Hydutsky B W,et al. Carbothermal syn￾thesis of carbon-supported nanoscale zero-valent iron particles for the remediation of hexavalent chromium. Environ Sci Technol, 2008,42( 7) : 2600 [12] Alowitz M J,Scherer M M. Kinetics of nitrate,nitrite,and Cr( VI) reduction by iron metal. Environ Sci Technol,2002,36 ( 3) : 299 [13] Shi L N,Zhang X,Chen Z L. Removal of chromium ( VI) from wastewater using bentonite-supported nanoscale zero-valent iron. Water Res,2011,45( 2) : 886 [14] Wang W. Preparation of Polymer Coated Nanoiron particles for Remediation of Contaminated Groundwater[Dissertation]. Tian￾jing: Nankai University. 2008 ( 王薇. 包覆型纳米铁的制备及用于地下水污染修复的实验 研究[学位论文]. 天津: 南开大学,2008) [15] Zhang X L,Zhang S Y,Feng J W. Preparation of nano-iron for removing Cr from wastewaters. Chin J Environ Eng,2012,6 ( 9) : 3167 ( 张显龙,张思阳,冯婧微. 纳米铁的制备及去除废水中的 Cr( VI) . 环境工程学报,2012,6( 9) : 3167) [16] Park D,Yun Y S and Park J M. Mechanisms of the removal of hexavalent chromium by biomaterials or biomaterial-based activa￾ted carbons. J Hazard Mater,2006,137( 2) : 1254 [17] Argun M E,Dursun S,Ozdemir C,et al. Heavy metal adsorp￾tion by modified oak sawdust: thermodynamics and kinetics. J Hazard Mater,2007,141( 1) : 77 [18] Powell R M,Puls R W. Proton generation by dissolution of in￾trinsic or augmented aluminosilicate minerals for in situ contami￾nant remediation by zero-valence-state iron. Environ Sci Technol, 1997,31( 8) : 2244 [19] Wu Y J. Chromium ( VI) Reduction in Aqueous Solutions by Fe3O4 -stabilized Fe0 Nanoparticles [Dissertation]. Hangzhou: Zhejiang University,2010 ( 吴燕君. Fe3O4稳定化纳米 Fe0 对水体中 Cr( VI) 的去除研 究[学位论文]. 杭州: 浙江大学,2010) [20] Yang X W,Qiu D F. Hydrometallurgy. Beijing: Metallurgical Industry Press,1998 ( 杨显万,邱 定 蕃. 湿 法 冶 金. 北 京: 冶金工业出版社, 1998) · 236 ·
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