Center for Soil and Environmental Science, Agronomy Department, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.
Water Res. 2012 Apr 15;46(6):1999-2008. doi: 10.1016/j.watres.2012.01.018. Epub 2012 Jan 25.
The use of EDTA in soil washing technologies to remediate soils contaminated with toxic metals is prohibitive because of the large volumes of waste washing solution generated, which must be treated before disposal. Degradation of EDTA in the waste solution and the removal of Pb, Zn and Cd were investigated using electrochemical advanced oxidation processes (EAOP) with a boron-doped diamond anode (BDDA), graphite and iron anodes and a stainless-steel cathode. In addition to EAOP, the efficiency of electro-Fenton reactions, induced by the addition of H(2)O(2) and the regulation of electrochemical systems to pH 3, was also investigated. Soil extraction with 15 mmol kg(-1) of soil EDTA yielded waste washing solution with 566 ± 1, 152 ± 1 and 5.5 ± 0.1 mg L(-1) of Pb, Zn and Cd, respectively. Treatments of the waste solution in pH unregulated electrochemical systems with a BDDA and graphite anode (current density 67 mA cm(-2)) were the most efficient and removed up to 98 ± 1, 96 ± 1, 99 ± 1% of Pb, Zn and Cd, respectively, by electrodeposition on the cathode and oxidatively degraded up to 99 ± 1% of chelant. In the electrochemical system with an Fe anode operated at pH 3, the chelant remained preserved in the treated solution, while metals were removed by electrodeposition. This separation opens up the possibility of a new EDTA recycling method from waste soil washing solution.
使用 EDTA 进行土壤洗涤技术来修复受有毒金属污染的土壤是不可行的,因为产生的大量洗涤废溶液必须在处理后才能处置。采用掺硼金刚石阳极(BDDA)、石墨和铁阳极以及不锈钢阴极的电化学高级氧化工艺(EAOP)对 EDTA 废溶液的降解以及 Pb、Zn 和 Cd 的去除进行了研究。除了 EAOP 之外,还研究了通过添加 H(2)O(2)和调节电化学系统的 pH 值至 3 来诱导电芬顿反应的效率。用 15 mmol kg(-1)的土壤 EDTA 提取土壤后,得到的废洗涤溶液中 Pb、Zn 和 Cd 的浓度分别为 566 ± 1、152 ± 1 和 5.5 ± 0.1 mg L(-1)。在未调节 pH 值的电化学系统中,用 BDDA 和石墨阳极(电流密度 67 mA cm(-2))处理废溶液的效果最为显著,Pb、Zn 和 Cd 的去除率分别高达 98 ± 1%、96 ± 1%和 99 ± 1%,通过在阴极上电沉积和氧化降解,螯合剂的去除率高达 99 ± 1%。在 pH 为 3 的铁阳极电化学系统中,螯合剂在处理后的溶液中得以保留,而金属则通过电沉积去除。这种分离为从废土壤洗涤溶液中回收 EDTA 开辟了新的可能性。