全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...

土壤重金属复合污染及其化学钝化修复技术研究进展

Keywords: 土壤,重金属,复合污染,化学钝化,分子机制,现场实例

Full-Text   Cite this paper   Add to My Lib

Abstract:

土壤重金属污染往往是2种或2种以上的多种重金属并存的复合污染。与单一污染相比,重金属复合污染中元素或化合物之间存在相互作用以及对生态效应的综合影响,对其污染土壤的修复具有挑战性。目前,土壤重金属污染的修复主要集中在单一元素上,而对土壤多种重金属并存的复合污染的同时修复研究较少。化学钝化修复是基于向土壤中添加稳定化剂,通过吸附、沉淀、络合、离子交换和氧化还原等一系列反应,以降低污染物的生物有效性和可迁移性,从而达到修复目的的方法。这种方法因投入低、效率高、修复快速、操作简单等优越性,对于大面积污染土壤的修复具有较好的应用前景。系统地综述了国内外土壤多重金属污染的复合作用、生态效应及其定量表征的研究进展,并重点指出土壤重金属复合污染的化学钝化修复技术的稳定化剂类型、作用效果、分子机制、影响因素和现场实例等方面的研究现状、存在问题及发展方向。

References

[1]  Sayer J.A;Cotter-Howells J;Watson C,Lead mineral transformation by fungi,Current Biology,1999(13).
[2]  Cao X.D;Ma L.Q;Gao B,Dairy manure-derived biochar effectively sorbs lead and atrazine,Environmental Science and Technology,2009(09).
[3]  Gary C.W;Dunham S.J;Dennis P.G,Field evaluation of in situ remediation of a heavy metal contaminated soil using lime and red-mud,Environmental Pollution,2006(03).
[4]  Wang B.L;Xie Z.M;Chen J.J,Effects of field application of phosphate fertilizers on the availability and uptake of lead,zinc,and cadmium by cabbage (Brassica chinensis L.) in a mining tailing contaminated soil,Journal of Environmental Sciences,2008(09).
[5]  Dakora F.D;Phillips D.A,Root exudates as mediators of mineral acquisition in low-nutrient environments,Plant and Soil,2002(1).
[6]  Susan E;Bailey H;Trudy J,A review of potentially low-cost sorbents for heavy metals,Water Research,1998(11).
[7]  van Herwijnen R;Hutchings T.R;Al-Tabbaa A,Remediation of metal contaminated soil with mineralamended composts,Environmental Pollution,2007(03).
[8]  da Cunha K.P.V;do Nascimento C.W.A;da Silva A.J,Silicon alleviates the toxicity of cadmium and zinc for maize (Zea mays L.) grown on a contaminated soil,Journal of Plant Nutrition and Soil Science,2008(06).
[9]  Zhang P;Ryan J.A,Transformation of Pb(Ⅱ) from cerrusite to chloropyromophite in the presence of hydroxyapatite under varying conditions of pH,Environmental Science and Technology,1999(04).
[10]  Harmsen H,Behaviour of Heavy Metals in Soils,Wageningen:Center for Agricultural Publishing and Documentation,1977.
[11]  龙新宪;杨肖娥;倪吾钟,重金属污染土壤修复技术研究的现状与展望,应用生态学报,2002(06).
[12]  王晓蓉;郭红岩;林仁漳,污染土壤修复中应关注的几个问题,农业环境科学学报,2006(02).
[13]  Chen H.M;Zheng C.R;Wang S.Q,Combined pollution and pollution index of heavy metals in red soil,Pedosphere,2000(01).
[14]  赵祥伟;骆永明;滕应,重金属复合污染农田土壤的微生物群落遗传多样性研究,环境科学学报,2005(02).
[15]  van der Sloot H.A;Heasman L;Quevauviller Ph,Harmonization of Leaching/extraction Tests,Amsterdam,the Netherlands:Elsevier,1997.
[16]  Lindsay W.L,Chemical Equilibria in Soils,New York:John Wiley and Sons,Inc,1979.
[17]  Bolan N.S;Naidu R,KhanM.A.R,The effects of anion sorption on sorption and leaching of cadmium,Australian Journal of Soil Research,1999(03).
[18]  Agbenin J.O,Phosphate-induced zinc retention in a tropicai semi-arid soil,European Journal of Soil Science,1998(08).
[19]  Bolland M.D.A;Posner A.M;Quirk J.P,Zn adsorption by goethite in the absence and presence of phosphate,Australian Journal of Soil Research,1977(02).
[20]  Guo G.L;Zhou Q.X;Ma L.Q,Availability and assessment of fixing additives for the in situ remediation of heavy metal contaminated soils:A review,Environmental Monitoring and Assessment,2006(1/3).
[21]  Laperche V;Logan T.J;Gaddam P,Effect of apatite amendments on plant uptake of lead from contaminated soil,Environmental Science and Technology,1997(10).
[22]  陈世宝;朱永官;杨俊诚,土壤-植物系统中磷对重金属生物有效性的影响机制,环境污染治理技术与设备,2003(08).
[23]  Ford R.C;Sparks D.L,The nature of zinc precipitates formed in the presence of pyropyllite,Environmental Science and Technology,2000(12).
[24]  Bolan N.S;Adriano D.C;Duraisamy P,Immobilization and phytoavailability of cadmium in variable charge soils I. Effect of phosphate addition,Plant and Soil,2003(01).
[25]  华珞;陈世宝;白玲玉,土壤腐殖酸与Cd、Zn及其复合存在的络合物稳定性研究,中国农业科学,2001(02).
[26]  Foster A.L;Brown Jr G.E;Parks G.A,X-ray absorption fine structure study of As (V) and Se (V) sorption complexes on hydrous Mn oxides,Geochimica et Cosmochimica Acta,2003(1).
[27]  Luo L;Zhang S.Z;Shan X.Q,Arsenate sorption on two Chinese red soils evaluated using macroscopix measurements and EXAFS spectroscopy,Environmental Toxicology and Chemistry,2006(11).
[28]  Waychunas G.A;Kim C.S;Banfield J.F,Nanoparticulate iron oxide minerals in soils and sediments:Unique properties and contaminant scavenging mechanisms,Journal of Nanoparticle Research,2005(4/5).
[29]  Liu R.Q;Zhao D.Y,Reducing leachability and bioaccessibility of lead in soils using a new class of stacilized iron phosphate,Water Research,2007(12).
[30]  Xu Y.H;Zhao D.Y,Reductive immobilization of chromate in water and soil using stabilized iron nanoparticles,Water Research,2007(10).
[31]  王立群;罗磊;马义兵,重金属污染土壤原位钝化修复研究进展,应用生态学报,2009(05).
[32]  Cao X.D;Ma L.Q;Chen M,Impacts of phosphate amendments on lead biogeochemistry at a contaminated site,Environmental Science and Technology,2002(24).
[33]  周世伟;徐明岗,磷酸盐修复重金属污染土壤的研究进展,生态学报,2007(07).
[34]  McGowen S.L;Basta N.T;Brown G.O,Use of diammonium phosphate to reduce heavy metal solubility and transport in smelter-contaminated soil,Journal of Environmental Quality,2001(02).
[35]  Chen S.B;Zhu Y.G;Ma Y.B,Effect of bone char application on Pb bioavailability in a Pb-contaminated soil,Environmental Pollution,2006(03).
[36]  龙梅;胡锋;李辉信,低成本含磷材料修复环境重金属污染的研究进展,环境污染治理技术与设备,2006(07).
[37]  Kumpiene J;Ore O;Renella G,Assessment of zero valent iron for stabilization of chromium,copper,and arsenic in soil,Environmental Pollution,2006(1).
[38]  滕应;黄昌勇;骆永明,重金属复合污染下土壤微生物群落功能多样性动力学特征,土壤学报,2004(51).
[39]  Grafe M;Nachtegaal M;Sparks D.L,Formation of metal-arsenate precipitates at the goethite-water interface,Environmental Science and Technology,2004(24).
[40]  Dermatas D;Meng X,Stabilization/Solidification (S/S)of heavy metal contaminated soils by means of a quicklime-based treatment approach,Philadelphia:American Society for Testing and Materials,1996.
[41]  Liu R.Q;Zhao D.Y,In situ immobilization of Cu (Ⅱ)in soils using a new class of iron phosphate nanoparticles,Chemosphere,2007(10).
[42]  Lombi E;Hamon R.E;McGrath S.P,Lability of Cd,Cu,and Zn in polluted soils treated with lime,beringite,and red mud and identification of a non-labile colloidal fraction of metals using isotopic techniques,Environmental Science and Technology,2003(05).
[43]  Tessier A;Campbell P.G.C;Bisson M,Sequential extraction procedure for the speciation of particulate trace metals,Analytical Chemistry,1979(08).
[44]  郑振华;周培疆;吴振斌,复合污染研究的新进展,应用生态学报,2001(03).
[45]  Friesl W;Friedl J;Platzer K,Remediation of contaminated agricultural soils near a former Pb/Zn smelter in Austria:Batch,pot and field experiments,Environmental Pollution,2006(01).
[46]  Gogolev A;Wilke B.M,Combination effects of heavy metals and fluoranthene on soil bacteria,Biology and Fertility of Soils,1997(03).
[47]  Wright J;Rice K.R;Murphy B,PIMSTM:Remediation of Soil and Groundwater Contaminated With Metals.ESTCP Final Report,2003.
[48]  U.S. Environmental Protection Agency,Solidification/stabilization at superfund sites.EPA-542-R-00-010,2000.
[49]  Laperche V;Logan T.J;Gaddam P,Effect of appatite amendments on plant uptake of lead from contamianted soil,Environmental Science and Technology,1997(10).
[50]  Hartley W;Dickinson N.M;Riby P,Arsenic mobility in brownfield soils amended with green waste compost or biochar and planted with Miscanthus,Environmental Pollution,2009(10).
[51]  Vaca-Panlín R;Esteller-Alberich V.M;Lugo-de la Fuente J,Effect of sewage sludge or compost on the sorption and distribution of copper and cadmium in soil,Waste Management,2006(01).
[52]  Singh B.R;Oste L,In situ immobilization of metals in contaminated or naturally metal-rich soils,Environmental Review,2001(02).
[53]  周东美;王玉军;仓龙,土壤及土壤-植物系统中复合污染的研究进展,环境污染治理技术与设备,2004(10).
[54]  Zhou D.M;Chen H.M;Wang S.Q,Effects of organic acids,henyleneamine and pyrocatechol on cadmium adsorption and desorption in soil,Water,Air & Soil Pollution,2003(1/4).
[55]  Azpiazu M.N;Romero F;Diaz J.M,Metal distribution and interaction in plant cultures in artificial soil,Water,Air & Soil Pollution,1986(1/2).
[56]  杨志新;冯圣东;刘树庆,镉、锌、铅单元素及其复合污染与土壤过氧化氢酶活性关系的研究,中国生态农业学报,2005(14).
[57]  Ma Q.Y;Logan T.J;Traina S.J,Effects of NO3-,Cl-,F-,SO42-,and CO32-on Pb2+ immobilization by hydroxyapatite,Environmental Science and Technology,1994(03).
[58]  Ma Q.Y;Traina S.J;Logan T.J,Effect of aqueous Al,Cd,Fe(Ⅱ),Ni,and Zn on Pb immobilization by hydroxyapatite,Environmental Science and Technology,1994(7).
[59]  Martinez C.E;Jacobson A.R;McBride M.B,Lead phosphate minerals:Solubility and dissolution by model and natural ligands,Environmental Science and Technology,2004(21).
[60]  Lang F,Effect of dissolved organic matter on the precipitation and mobility of the lead compound chloropyromorphite in solution,European Journal of Soil Science,2003(01).
[61]  Hodson M.E;Valsami-Jones E;Cotter-Howells J.D,Bonemeal additions as a remediation treatment for metal contaminated soil,Environmental Science and Technology,2000(16).
[62]  Matusik J;Bajda T,Immobilization of aqueous cadmium by addition of phosphates,Journal of Hazardous Materials,2008(152).
[63]  Smiciklas I;Onjia A;Markovic J,Comparison of hydroxyapatite sorption properties towards cadmium,lead,zinc and strontium ions,Current Research in Advanced Materlals and Processes Materlals Science Forum,2005.
[64]  宋玉芳;周启星;许华夏,土壤重金属污染对蚯蚓的急性毒性效应研究,应用生态学报,2002(02).
[65]  孙琴;王超,土壤外源Cd和PB复合污染对小麦(Triticum aestwum L.)根系植物络合素和谷胱甘肽合成的影响,生态环境,2008(05).
[66]  Fargasova V.A;Beinrohr E,Meta-metal interactions in accumulation of V,Ni,Mo,Mn,and Cu in under-and above-ground parts of Sinapis alba,Chemosphere,1998(06).
[67]  宋玉芳;许华夏;任丽萍,重金属对西红柿种子发芽与根伸长的抑制效应,中国环境科学,2001(05).
[68]  Appel C;Ma L.Q;Rhue R.D,Sequential sorption of lead and cadmium in three tropical soils,Environmental Pollution,2008(01).
[69]  郭观林;周启星,土壤-植物系统复合污染研究进展,应用生态学报,2003(15).
[70]  Basta N.T;Gradwohl R;Snethen K.L,Chemical immobilization of lead,zinc,and cadmium in smelter contaminated soils using biosolids and rock phosphate,Journal of Environmental Quality,2001(04).
[71]  Yang J;Mosby D,Field assessment of treatment efficacy by three methods of phosphoric acid application in leadcontaminated urban soil,Science of the Total Environment,2006(01).
[72]  Cao X.D;Ma L.Q;Rhue D.R,Mechanisms of lead,copper,and zinc retention by phosphate rock,Environmental Pollution,2004(03).
[73]  Brown S;Chaney R;Hallfrisch J,In situ soil treatments to reduce the phyto-and bio-availability of lead,zinc,and cadmium,Journal of Environmental Quality,2004(2).
[74]  唐翔宇;朱永官;陈世宝,In vitro法评估铅污染土壤对人体的生物有效性,环境化学,2003(5).
[75]  Kabata-Pendias A;Pendias H,Trace Elements in Soils and Plants,Boca Raton,USA:CRC Press,1992.
[76]  Harter R.D.R;Naidu R,Role of metal-organic complexation in metal sorption by soils,Advances in Agronomy,1995(01).
[77]  Karlsson T;Elgh-Dalgren K;Bjorn E,Complexation of cadmium to sulfur and oxygen functional groups in an organic soil,Geochimica et Cosmochimica Acta,2007(03).
[78]  Wang Y.M;Chen T.C;YehK J,Stabilization of an elevated heavy metal contaminated site,Journal of Hazardous Materials,2001(1 B).
[79]  林爱军;张旭红;苏玉红,骨炭修复重金属污染土壤和降低基因毒性的研究,环境科学,2007(02).
[80]  Usman A;Kuzyakov Y;Stahr K,Effect of clay minerals on immobilization of heavy metals and microbial activity in a sewage sludge-contaminated soil,Journal of Soils and Sediments,2005(04).
[81]  Chrysochoou M;Dermatas D;Grubb D.G,Phosphate application to firing range soils for Pb immobilization:The unclear role of phosphate,Journal of Hazardous Materials,2007(1/2).
[82]  Cao X.D;Ma L.Q;Singh S.P,Phosphate-induced lead immobilization from different lead minerals in soils under varying pH conditions,Environmental Pollution,2008(01).
[83]  Ma L.Q;Logan T.J;Traina S.J,Lead immobilization from aqueous solutions and contaminated soils using phosphate rocks,Environmental Science and Technology,1995(04).
[84]  周秀艳;李培军;孙洪雨,辽宁典型工矿区与污灌区土壤重金属污染状况及原因,土壤,2006(02).
[85]  Yoon J;Cao X.D;Zhou Q,Accumulation of Pb,Cu,and Zn in native plants growing on a contaminated Florida,Science of the Total Environment,2006(2/3).
[86]  Cao X.D;Wabbi A;Ma L.Q,Immobilization of Zn,Cu,and Pb in contaminated soils using phosphate rock and phosphoric acid,Journal of Hazardous Materials,2009(2-3).
[87]  Cao X.D;Ma L.Q;Chen M,Phosphate-induced metal immobilization in a contaminated site,Environmental Pollution,2003(01).
[88]  徐应明,污染土壤修复、诊断与标准体系建立的探讨,农业环境科学学报,2007(02).
[89]  Kumpiene J;Lagerkvist A;Maurice C,Stabilization of As,Cr,Cu,Pb,and Zn in soil using amendments-A review,Waste Management,2008(01).
[90]  Ruby M.V;Schoof R;Brattin W,Advances in evaluating the oral bioavailability of inorganics in soil for use in human health risk assessment,Environmental Science and Technology,1999(21).
[91]  Adriano D.C,Trace elements in terrestrial environments;in Biogeochemistry,Bioavailability and Risks of Metals,New York:Springer-Verlag,2001.
[92]  Zhang P;Ryan J.A,Formation of chloropyromorphite from galena (PbS) in the presence of hydroxyapatite,Environmental Science and Technology,1999(4).
[93]  华珞;白铃玉;韦东普,有机肥-镉-锌交互作用对土壤镉锌形态和小麦生长的影响,中国环境科学,2002(06).

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133