Zhou Dong-Mei, Zorn Roman, Kurt Czurda
LMCP, Institute of Soil Science, Chinese Academy of Sciences, Nanjing 210008, China.
J Environ Sci (China). 2003 May;15(3):396-400.
This report examined electrochemical remediation of copper contaminated kaolinite by controlling electrolytes' pH for both of anolyte and catholyte simultaneously. Results showed that electrokinetic process and remediation efficiency varied obviously when different buffer systems, including citric acid (test 1 ) nitric acid + EDTA (test 2) and nitric acid (test 3), were used to control catholyte pH and Na2CO3 was used at the same time to control all anolyte one. It was found that under such pH condition soil's pH in soil column kept at 3.0-7.0 successfully, and correspondingly no copper precipitation and decrease of soil electroconductivity appeared, which are usually observed in electrokinetic process due to OH- introduction into soil column by electrochemical reaction occurred in cathode. Electroosmosis flow rates were almost equal for these three tests, indicating that these buffers did not affect Zeta-potential of kaolinite within the examined duration. More acid and basic solution was added into electrokinetic cell when nitric acid was used as buffer than when nitric acid + EDTA and then citric acid were used. Due to introduction of large amounts of ions into soil column, significant higher current was observed for test 3 than other two. Analysis of copper speciation and total quantity in kaolinite indicated that 22.5%, 23.74% and 55.65% Cu were removed from kaolinite for test 1, test 2 and test 3 respectively after only 10 days' electrokinetic remediation.
本报告研究了通过同时控制阳极电解液和阴极电解液的pH值,对铜污染高岭土进行电化学修复。结果表明,当使用不同的缓冲体系(包括柠檬酸(试验1)、硝酸+乙二胺四乙酸(试验2)和硝酸(试验3))来控制阴极电解液的pH值,同时使用碳酸钠来控制所有阳极电解液的pH值时,电动过程和修复效率有明显差异。研究发现,在这样的pH条件下,土柱中的土壤pH值成功保持在3.0 - 7.0,相应地,没有出现通常在电动过程中由于阴极发生的电化学反应将OH-引入土柱而导致的铜沉淀和土壤电导率降低的情况。这三个试验的电渗流速几乎相等,表明这些缓冲剂在所研究的持续时间内没有影响高岭土的Zeta电位。与使用硝酸+乙二胺四乙酸和柠檬酸作为缓冲剂相比,使用硝酸作为缓冲剂时,需要向电动池中加入更多的酸性和碱性溶液。由于大量离子被引入土柱,试验3观察到的电流明显高于其他两个试验。对高岭土中铜的形态和总量分析表明,仅经过10天的电动修复后,试验1、试验2和试验3分别从高岭土中去除了22.5%、23.74%和55.65%的铜。