Yuan Songhu, Zheng Zhonghua, Chen Jing, Lu Xiaohua
Environmental Science Research Institute, Huazhong University of Science and Technology, Wuhan 430074, PR China.
J Hazard Mater. 2009 Mar 15;162(2-3):1583-7. doi: 10.1016/j.jhazmat.2008.06.038. Epub 2008 Jun 20.
This preliminary study used a solar cell, instead of direct current (DC) power supply, to generate electric field for electrokinetic (EK) remediation of cadmium-contaminated soil. Three EK tests were conducted and compared; one was conducted on a cloudy and rainy day with solar cell, one was conducted on a sunny day with solar cell and another was conducted periodically with DC power supply. It was found that the output potential of solar cell depended on daytime and was influenced by weather conditions; the applied potential in soil was affected by the output potential and weather conditions, and the current achieved by solar cell was comparable with that achieved by DC power supply. Solar cell could be used to drive the electromigration of cadmium in contaminated soil, and removal efficiency achieved by solar cell was comparable with that achieved by DC power supply. Compared with traditional DC power supply, using solar cell as power supply for EK remediation can greatly reduce energy expenditure. This study provided an alternative to improve the EK soil remediation and expanded the use of solar cell in environmental remediation.
这项初步研究使用太阳能电池而非直流电源来产生电场,用于对镉污染土壤进行电动修复。进行并比较了三项电动修复试验;一项在阴天和雨天使用太阳能电池进行,一项在晴天使用太阳能电池进行,另一项定期使用直流电源进行。研究发现,太阳能电池的输出电势取决于白天时间,并受天气条件影响;土壤中的施加电势受输出电势和天气条件影响,且太阳能电池实现的电流与直流电源实现的电流相当。太阳能电池可用于驱动污染土壤中镉的电迁移,且太阳能电池实现的去除效率与直流电源实现的相当。与传统直流电源相比,使用太阳能电池作为电动修复的电源可大幅降低能源消耗。本研究为改进电动土壤修复提供了一种替代方法,并拓展了太阳能电池在环境修复中的应用。