Saichek R.E.,Reddy K.R.Effect of pH control at the anode for the electrokinetic removal of phenanthrene from kaolin soil.Chemosphere,2003,51:273 ~ 287
[3]
Ko S.,Schlautman M.A.,Carraway E.R.Cyclodextrinen hanced electrokinetic removal of phenanthrene from a model.Environ.Sci.Technol.,2000,34:1535 ~1541
[4]
Li A.,Cheung K.A.,Reddy K.R.Cosolvent-enhanced electrokinetic remediation of soils contaminated with phenanthrene.J.Environ.Eng.,2000,126 (6):527 ~533
[5]
Popov K.,Kolosov A.,et al.A laboratory-scale study of applied voltage and chelating agent on the electrokinetic separation of phenol from soil.Separation Science and Technology,2001,36 (13):2971 ~ 2982
[6]
R(o)hrs J.,Ludwig G.,Rahner D.Electrochemically induced reactions in soils:A new approach to the in-situ remediation of contaminated soils Part 2:Remediation experiments with a natural soil containing highly chlorinated hydrocarbons.Electrochimica Acta,2002,47:1405 ~ 1414
[7]
Yang G.C.,Long Y.W.Removal and degradation of phenol in a saturated flow by in-situ electrokinetic remediation and Fenton-like process.J.Haz.Mat.,1999,B69:259~271
[8]
Yang G.C.,Liu C.Y.Remediation of TCE contaminated soils by in-situ EK-Fenton process.J.Haz.Mat.,2001,B85:317 ~331
[9]
Ho S.V.,Sheridan P.W.,Athmer C.J.,et al.Integrated in situ soil remediation technology:The Lasagna process.Environ.Sci.Technol.,1995,29:2528~2534
[10]
Maini G.,Sharman A.K.,Knowles C.J.,et al.Electrokinetic remediation of metals and organics from historically contaminated soil.J.Chem.Technol.Biotechnol.,2000,75:657 ~ 664
[11]
Chung Ha Ik,Kamon Masashi.Ultrasonically enhanced electrokinetic remediation for removal of Pb and phenanthrene in contaminated soils.Engineering Geology,2005,77:233 ~ 242
[12]
Page M.M.,Page C.L.Electroremediation of contaminated soils.J.Environ.Eng.,2002,128 (3):208 ~219
[13]
Acar Y.B.,Alshawabkeh A.N.Principles of electrokinetic remediation.Environ.Sci.Technol.,1993,27 (13):2638 ~ 2647
[14]
Ho S.V.,Athmer C.J.,Sheridan P.W.,et al.Scale-up aspects of the LasagnaTM process for in situ soil decontamination.Journal of Hazardous Materials,1997,55:39~60
[15]
Ho S.V.,Athmer C.J.,Sheridan P.W.,et al.The Lasagna technology for in situ soil remediation:1.Small field test.Environ.Sci.Technol.,1999,33:1086~1091
[16]
Ho S.V.,Athmer C.J.,Sheridan P.W.,et al.The Lasagna technology for in situ soil remediation:2.Large field test.Environ.Sci.Technol.,1999,33:1092 ~1099
[17]
DeFlaun M.F.,Condee C.W.Electrokinetic transport of bacteria.Journal of Hazardous Materials,1997,55:263~ 277
[18]
Acar Y.B.,Rabbi M.F.,Ozsu E.E.Electrokinetic injection of ammonium and sulfate ions into sand and kaolinite beds.J.Geotech.Geoenviron Eng.,1997,123 (3):239~249
[19]
RabbiM.F.,Clark B.,Gale R.J.,et al.Insitu TCE bioremediation study using electrokinetic cometabolite injection.Waste Management,2000,20:279 ~ 286
[20]
Luo Qishi,Zhang Xihui,Wang Hui,et al.Mobilization of phenol and dichlorophenol in unsaturated soils by nonuniform electrokinetics.Chemosphere,2005,59:1289 ~1298
[21]
Luo Qishi,Zhang Xihui,Wang Hui,et al.The use of non-uniform electrokinetics to enhance in situ bioremediation of phenol-contaminated soil.Journal of Hazardous Materials,2005,B121:187~194
Luo Qishi,Wang Hui,Zhang Xihui,et al.In situ bioelectrokinetic remediation of phenol-contaminated soil by use of an electrode matrix and a rotational operation mode.Chemosphere,2006,64:415 ~ 422