[1]. Bour M. and Yousefi Kebria D., “Effects of Biosurfactants in Electrokinetic Remediation of contaminated soils. Second International Conference on Geotechnique, Construction Matrials and Environment”, Kuala Lumpur, Malaysia, 2012. Nov. pp. 14-16, (ISBN: 978-4-9905958-1-4 C3051), 2012.##
[2]. سیدعلیخانی س،. شرفا م،. توسلی ا،. ابراهیمی س،. بررسی اثر رشد گیاهان در تراکمهای مختلف بر پاکسازی هیدروکربنهای نفتی خاک. نشریه آب و خاک، (25) 1390.##
[3]. Khodadadi A., Yousefi D,. Ganjidoust H., and Yari M, “Bioremediation of diesel- contaminated soil using bacillus sp”, (stratin TMY-2) in soil by uniform and non- uniform electrokinetic technology field. Journal of Toxicology and Environmental Heaith Sciences, 3(15): pp. 376-384, 2011.##
[4]. Kebria D. Y., Khodadadi A.Ganjidoust H., Badkoubi A., and Amoozegar M. A,. “Isolation and characterization of a novel native Bacillus strain capable of degrading diesel fuel”, International Journal of Environmental Science and Technology, 2009. 6(3): pp. 435-442.##
[5]. Shariatmadari N., Weng C. H., and Daryaee H., “Enhancement of hexavalent chromium [Cr (VI)] remediation from clayey soils by electrokinetics coupled with a nano-sized zero-valent iron barrier”, Environmental Engineering Science, 2009. 26(6): p. 1071-1079.##
[6]. Yalcin B., Li H., R. J., “Phenol removal from kaolinite by electrokinetics”, J. Geotech. Eng, 1992. 118(11): pp. 1837-1853.##
[7]. Ho V. S., “The lasagnatechnology for in-situ soil remediation: small field test”, Environmental Engineering Science, 33(7): pp. 1086-1091, 1999.##
[8]. Weng, C.H., C. Yuan, and H.H. Tu, “Removal of trichloroethylene from clay soil by series-electrokinetic process”, Practice Periodical of Hazardous, Toxic, and Radioactive Waste Management, 7(1): pp. 25-30, 2003.##
[9]. Alshawabkeh A. N., Yeung A.T., and Bricka M. R., “Practical aspects of in-situ electrokinetic extraction”, Journal of Environmental Engineering, 125(1): pp. 27-35, 1999.##
[10]. Coletta T. F., Bruell C. F., and Rayan D. K., “Cation- enhance removal of lead from kaolinite by electrokinetics”, Environmental Engineering Science, 123(12): pp. 1227-1233, 1997.##
[11]. Sah J. G. and Lin L. Y., “Electrokinetic study on copper contaminated soils”, Journal of Environmental Science & Health Part A, 35(7): pp. 1117-1139, 2000.##
[12]. Gholami M. and Yousefi Kebria D., “The comparison of phytoremediation and electrokinetic methods in remediation of petroleum hydrocarbons contaminated soil”, Second International Conference on Geotechnique, Construction Matrials and Environment, Kuala lumpur, Malaysia, 2012. Nov. 14-16, (ISBN: 978-4-9905958-1-4 C3051, 2012.##
[13]. Adams A., “Transport of nanoscale zero valent iron using electrokinetic phenomena”, Honours Dissertation, The University of Western Australia, Crawley, 2006.##
[14]. Zeng S., Chen C., Mikkelsen J., and Santiago J. G.,, “Fabrication and characterization of electroosmotic micropumps”, Sensors and Acuators B 79, 2001.##
[15]. Acar YB A.A., “Principles of electrokinetic remediation”, Environ. Sci. Technol., 27(13): pp. 2638-2647, 1993.##
[16]. Van Cauwenberghe L., “Electrokinetics. Ground Water Remediation Technologies Analysis Center”, TO-97-03, 1997.##
[17]. Braraud F T. S. and Astruc M., “Ion velocity in soil solution during electrokinetic remediation”, Journal of Hazardous Materials, 56: pp. 315-332, 1997.##
[18]. Taylor J., Zafiratos C. D., and Dubson M. A.,, Modern Physics for Scientists and Engineers, Prentice Hall, Upper Saddle River, 2004.##
[19]. Virkutyte J., M. Sillanpää, and P. Latostenmaa, “Electrokinetic soil remediation— critical overview”, Science of The Total Environment, 289(1-3): pp. 97-121, 2002.##
[20]. Zelina JP R. J., Electrochemical Remediation of Soils, pp. 532-539, 1999.##
[21]. عندلیب مقدم س. ح.، عبادی ت.، خدادادی دربان ا،. بررسی کارایی دو محلول سورفکتانت آنیونی و غیر یونی در حذف هیدروکربنهای نفتی از خاک آلوده به روش خاکشویی، سمینار تخصص نفت، گاز و محیط زیست-شیراز، 1387.##
[22]. Ahn C. K. Y., Woo S., and Park J., Soil washing using various nonionic surfactants and their recovery by selective adsorption with activated carbon. Hazardous Materials, 2007.##
[23]. Song G., L. C., and Lin J., Application of surfactants and microemulsions to the extraction of pyrene and phenanthrene from soil with three different extraction methods, Chimica Acta, 2007.##
[24]. Astm E., “06a standard test method for measurement of fracture toughness”, Annual Book of ASTM Standards, Philadelphia PA: American Society for Testing and Materials, 2006.##
[25]. یوسفی کبریا د.، زیست سالمسازی خاک آلوده به مواد نفتی به روش الکتروکینیتیک ناهمگن، دانشکده فنی و مهندسی،دانشگاه تربیت مدرس، 1388.##
[26]. ناهید م.، تشریح روشها و بررسیهای آزمایشگاهی روی نمونههای خاک و آب، نشریه شماره 168, 1365. موسسه تحقیقات خاک و آب.##
[27]. Organization W. H., “Concise International Chemical Assessment Document 68”, Tetrachloroethylene, 2006.##
[28]. http:/en.wikipedia.org/wiki/Triton X-100.##
[29]. Yuan S., Tian M., and Lu X., “Electrokinetic movement of hexachlorobenzene in clayed soils enhanced by Tween 80 and B-cyclodextrin”, J Hazard Mater, B137: p. 1218-1225, 2006.##