重金属污染疏浚沉积物修复技术研究进展.ppt
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1、重金属污染疏浚沉积物修复技术研究进展,1 沉积物特征及前处理2 物理分离(physical separation)3 热处理技术(thermal extraction)4 固化或烧结(solidification/vitrification)5 电渗析(electrodialysis)6 化学和生物表面活性剂淋洗7 微生物淋洗(bioleaching)8 植物修复9 结 语参考文献,参考文献,1 2004年中国海洋环境质量公报R.国家海洋局,20052 范成新,张路,王建军,等.湖泊底泥疏浚对内源释放影响的过程与机理J.科学通报,2004,49(15):1523-1528.3 Chen She
2、nyi,Lin Jigaw.Effect of substrate concentration on bioleaching of metal-contaminated sedimentJ.Journal of Hazardous Materials B,2001,82:77-89.4 Nystroem G M,Ottosen L M,Villumsen A.Electrodialytic removal of Cu,Zn,Pb,and Cd from harbor sediment:influence of changing experimental conditionsJ.Environm
3、ental Science and Technology,2005,39(8):2906-2911.5 Stephens S R,Alloway B J,Parker A,et al.Changes in the leachability of metals from dredged canal sediments during drying and oxidationJ.Environmental Pollution,2001,114:407-413.6 Karpuzcu M,Buktel D,Aydin Z S.The dewaterability,heavy metal releleas
4、e and reuse characteristics of Golden Horn surface sedimentJ.Wat.Sci.Tech.,1996,34(7/8):365-374.7 Ramses R,Martine L,Willy BThe mobilisation potential of trace metals in aquatic sediments as a tool for sediment quality classificationJ.Environmental Science&Policy,1999(2):75-86.8 Nystrm G M,Ottosen L
5、 M,Villumsen A.Test of experimental set-ups for electrodialytic removal of Cu,Zn,Pb and Cd from different contaminated harbour sedimentsJ.Engineering Geology,2005,77:349-357.9 Mulligan C N,Yong R N,Gibbs B F.An evaluation of technologies for the heavy metal remediation of dredged sedimentsJ.Journal
6、of Hazardous Materials,2001,85:145-163.10 Rulkens W H,Tichy R.Grotenhuis.Remediation of polluted soil and sediment:perspectives and failures.Wat.Sci.Tech.,1998,37(8):27-35.11 Olin-Estes T J,Palermo M RRecovery of dredged material for beneficial use:the future role of physical separation processesJ.J
7、ournal of Hazardous Materials,2001,85:39-51.12 Vanthuyne M,Maes A,Cauwenberg P.The use of flotation techniques in the remediation of heavy metal contaminated sediments and soils:an overview of controlling factorsJ.Minerals Engineering,2003,16:1131-1141.13 Cauwenberg P,Verdonckt F,Maes A.Flotation as
8、 a remediation technique for heavily polluted dredged material.2.Characterisation of flotated fractionsJ.The Science of the Total Environment,1998,209:121-131.14 Mulligan C N,Yong R N,Gibbs B F.Remediation technologies for metal-contaminated soils and groundwater:an evaluationJ.Journal of Hazardous
9、Materials,2001,60:193-207.15 Volker K,Kay H.pH and grain-size variation in leaching tests with bricks made of harbour sediments compared to commercial bricksJ.The Science of the Total Environment,2001,278:73-85.16 Nystrom G M,Ottosen L M,Villnmsen A.The use of sequential extraction to evaluate the r
10、emediation potential of heavy metals from contaminated harbour sedimentJ.Journal De PhysiqueIV,2003,107:975-978.17 Gunvor M N,Lisbeth M O,Arne V.Test of experimental set-ups for electrodialytic removal of Cu,Zn,Pb and Cd from different contaminated harbour sedimentsJ.Engineering Geology,2005,77:349-
11、357.18 Majid A,Argue S.Remediation of heavy metal contaminated solid wastes using agglomeration techniquesJ.Minerals Engineering,2001,14(11):1513-1525.19 李海波,李培军,孙铁珩,等.用淋洗法修复张士灌区Cd、Pb污染沉积物的研究J.农业环境科学学报,2005,24(2):328-332.20 时进钢,袁兴中,曾光明,等.鼠李糖脂对沉积物中Cd和Pb的去除作用J.环境化学,2005,24(1):10.21 Mulligan C N,Yong R
12、 N,Gibbs B F,et al.Metal removal from contaminated soil and sediments by the biosurfactant surfactinJ.Environmental Science and Technology,1999,33(21):3812-3820.22 Mulligan C N,Yong R N,Gibbs B F.Heavy metal removal from sediments by biosurfactantsJ.Journal of Hazardous Materials,2001,85:111-122.23
13、Marc V,Victor L.Exploiting the genetic and biochemical capacities of bacteria for the remediation of heavy metal pollutionJ.FEMS Microbiology Reviews,2002,26:327-338.24 Mulligan C N,Azma B D.Use of selective sequential extraction for the remediation of contaminated sedimentsJ.ASTM Special Technical
14、Publication,2003,1442:208-223.25 Seidel H,Loser C,Zehnsdorf A,et al.Bioremediation Process for Sediments Contaminated by Heavy Metals:Feasibility Study on a Pilot ScaleJ.Environmental Science and Technology,2004,38(5):1582-1588.26 Seidel H,Ondruschka J,Morgenstern P,et al.Bioleaching of heavy metals
15、 from contaminated aquatic sediments using indigenous sulfur-oxidizing bacteria:a feasibility studyJ.Wat.Sci.Tech.,1998,37(6/7):387-394.27 Chiu K K,Ye Z H,Wong M H.Enhanced uptake of As,Zn,and Cu by Vetiveria zizanioides and Zea mays using chelating agentsJ.Chemosphere,2005,60:1365-1375.28 Paul R,Lu
16、cas B,Jan J,et al.Potentials and drawbacks of chelate-enhanced phytoremediation of soilsJ.Environment Pollution,2002,116:109-121.29 Meers E,Lamsal S,Vervaeke P.Availability of heavy metals for uptake by Salix viminalis on a,1 沉积物特征及前处理,沉积物是存在于港湾、湖泊、河流和海洋的底部的土壤颗粒,是一些矿物质和有机质的来源,由有机物质、铁氧化物、碳酸盐、硫化物和间隙水组
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- 重金属 污染 疏浚 沉积物 修复 技术研究 进展

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