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无定形Fe(OH)_3和Fe_3O_4共沉淀态As的化学提取 被引量:3

Chemical Extraction of Arsenic Co-precipitated with Amorphous Fe(OH)_3 and Fe_3O_4
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摘要 无定形铁氧化物结合态砷的迁移性和生物可利用性易受环境变化影响.分别以1 mol·L-1盐酸和0.2 mol·L-1草酸铵缓冲溶液为提取剂,以新制备和室温老化(3个月、6个月)的共沉淀态Fe(OH)3-As和Fe3O4-As为提取对象,研究提取时间、液固比、Fe/As摩尔比和室温老化对As提取效率的影响.结果表明,1 mol·L-1盐酸提取Fe(OH)3-As、Fe3O4-As共沉淀时液固比应分别为50、200左右,0.2 mol·L-1草酸铵缓冲溶液提取Fe(OH)3-As、Fe3O4-As共沉淀时需保证加入的草酸根与固相中Fe的摩尔比分别为4、2.5;盐酸和草酸铵缓冲溶液提取时间2 h即可.样品Fe/As摩尔比和室温老化对Fe(OH)3-As共沉淀的溶解提取影响不大,但对Fe3O4-As共沉淀的提取影响比较大,Fe/As摩尔比越大,Fe3O4-As共沉淀越不易被提取;老化时间越长,其中共沉淀的As越不易被溶解提取.值得注意的是:盐酸和草酸铵缓冲溶液提取过程中如果有不溶固相存在,会发生As的再吸附,使无定形铁氧化物共沉淀态砷的测定不准确. The mobility and bioavailability of As combining with amorphous Fe oxides is vulnerable to the environment.In order to figure out the specific effects of ageing time,Fe/As molar ratio and extractant-to-solid ratio on As extraction procedure,we chose 1 mol·L-1 hydrochloride acid and 0.2 mol·L-1 ammonium oxalate/oxalic acid as extractants to extract synthetic Fe(OH)3-As and Fe3O4-As co-precipitates.The results showed that: ① During the extraction of Fe(OH)3-As and Fe3O4-As co-precipitates by 1 mol·L-1 hydrochloride acid,extractant-to-solid ratio should be 50 and 200,respectively;while extracted by 0.2 mol·L-1 ammonium oxalate/oxalic acid,the molar ratio of C2O2-4 to Fe in Fe(OH)3 and Fe3O4 solid phases should be 4 and 2.5,② The extraction time conducted by hydrochloride acid and ammonium oxalate/oxalic acid should be within 2 hours.③ The Fe-to-As molar ratio and ageing at room temperature had a little influence on the extraction of Fe(OH)3-As co-precipitation,but significantly influenced on Fe3O4-As co-precipitation.With increase of the Fe/As molar ratio and extension of the ageing time,the Fe3O4-As co-precipitate became more difficult to be dissolved.④ It was worth noting that,As would be re-adsorpted by the insoluble solid phase during the extraction by hydrochloride acid and ammonium oxalate/oxalic acid.So the inaccurate measurement would emerge during the extraction of As combining with amorphous Fe oxides.
出处 《环境科学》 EI CAS CSCD 北大核心 2013年第1期308-314,共7页 Environmental Science
基金 中国科学院知识创新工程重要方向项目(KZCX2-YW-JS405)
关键词 铁氧化物 As形态 老化 提取时间 液固比 FE As摩尔比 iron oxides arsenic species ageing extraction time extractant-to-solid ratio Fe/As molar ratio
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  • 1孙歆,韦朝阳,王五一.土壤中砷的形态分析和生物有效性研究进展[J].地球科学进展,2006,21(6):625-632. 被引量:38
  • 2Wang S L, Mulligan C N. Speciation and surface structure of inorganic arsenic in solid phases: a review [ J ]. Environment International, 2008, 34(6): 867-879. 被引量:1
  • 3Keon N E, Swartz C H, Brabander D J, et al. Validation of an arsenic sequential extraction method for evaluating mobility in sediments[ J]. Environmental Science & Technology, 2001, 35 (13) : 2778-2784. 被引量:1
  • 4Johnston S G, Keene A F, Burton E D, et al. Iron and arsenic cycling in intertidal surface sediments during wetland rernediation [J]. Environmental Science & Technology, 2011, 45 (6): 2179-2185. 被引量:1
  • 5Smedley P L, Kinniburgh D G. A review of the source, behaviour and distribution of arsenic in natural waters [ J ]. Applied Geochemistry, 2002, 17(5) : 517-568. 被引量:1
  • 6Bowel1 R J. Sorption of arsenic by iron oxides and oxyhydroxides in soils [ J]. Applied Geochemistry, 1994, 9 (3) : 279-286. 被引量:1
  • 7Belzile N, Lebel J. Capture of arsenic by pyrite in near-shore marine sediments [ J]. Chemical Geology, 1986, 54 (3-4) : 279- 281. 被引量:1
  • 8Moore J N, Ficklin W H, Johns C. Partitioning of arsenic and metals in reducing sulfidic sediments[ J]. Environmental Science & Technology, 1988, 22(4) : 432-437. 被引量:1
  • 9Xie X J, Wang Y X, Su C L, et al. Arsenic mobilization in shallow . aquifers of Datong Basin: Hydrochemical and mineralogical evidences[J]. Journal of Geochemical Exploration, 2008, 98(3) : 107-115. 被引量:1
  • 10熊毅等编著..土壤胶体[M].北京:科学出版社,1983:440.

二级参考文献46

  • 1何小青,刘湘生,潘元海,姚建明.HPLC-ICP-MS联用技术应用于砷的形态分析[J].现代科学仪器,2004,21(4):33-36. 被引量:20
  • 2朱永官,陈保冬,林爱军,叶志鸿,黄铭洪.珠江三角洲地区土壤重金属污染控制与修复研究的若干思考[J].环境科学学报,2005,25(12):1575-1579. 被引量:79
  • 3Meng X G,Wang W.Speciation of Arsenic by Disposable Cartridges"[C]∥Posters of the Third International Conference on Arsenic Exposure and Health Effects:Society of Environmental Geochemistry and Health.University of Colorado at Denver,1998. 被引量:1
  • 4Meng X G,Korfiatis G P,Jing C Y,et al.Redox transformations of arsenic and iron in water treatment sludge during aging and TCLP extraction[J].Environmental Science and Technology,2001,35:3 476-3 481. 被引量:1
  • 5Meng X G,Sunbaek B,George P K.Effects of silicate,sulfate,and carbonate on arsenic removal by ferric chloride[J].Water Research,2000,34(4):1 255-1 261. 被引量:1
  • 6Chiu V Q,Hering J G.Arsenic adsorption and oxidation at manganite surfaces.1.Method for simultaneous determination of adsorbed and dissolved arsenic species[J].Environmental Science and Technology,2000,34:2 029-2 034. 被引量:1
  • 7Semple T K,Doick J K,Jones C K.Defining bioavailability and bioaccessibility of contaminated soil and sediment is complicated[J].Environmental Science and Technology,2004,38:228-231. 被引量:1
  • 8Ruby M V,Schoof R,Brattin W,et al.Advances in evaluating the oral bioavailability of inorganics in soil for use in human health risk assessment[J].Environmental Science and Technology,1999,33:3 697-3 705. 被引量:1
  • 9Caussy D.Case studies of the impact of understanding bioavailability:Arsenic[J].Ecotoxicology and Environment Safety,2003,56(1):164-173. 被引量:1
  • 10Robin R R,Nicholas T B.An in vitro gastrointestinal method to estimate bioavailable arsenic in contaminated soils and solid media[J].Environmental Science and Technology,1999,33(4):642-649. 被引量:1

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