School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou 510275, PR China.
J Hazard Mater. 2013 Nov 15;262:464-71. doi: 10.1016/j.jhazmat.2013.08.069. Epub 2013 Sep 1.
Soil washing is one of the few permanent treatment alternatives for removing metal contaminants. Ethylenediaminetetraacetic acid (EDTA) and its salts can substantially increase heavy metal removal from contaminated soils and have been extensively studied for soil washing. However, EDTA has a poor utilization ratio due to its low selectivity resulting from the competition between soil major cations and trace metal ions for chelation. The present study evaluated the potential for soil washing using EDTA and three of its derivatives: CDTA (trans-1,2-cyclohexanediaminetetraacetic acid), BDTA (benzyldiaminetetraacetic acid), and PDTA (phenyldiaminetetraacetic acid), which contain a cylcohexane ring, a benzyl group, and a phenyl group, respectively. Titration results showed that PDTA had the highest stability constants for Cu(2+) and Ni(2+) and the highest overall selectivity for trace metals over major cations. Equilibrium batch experiments were conducted to evaluate the efficacy of the EDTA derivatives at extracting Cu(2+), Zn(2+), Ni(2+), Pb(2+), Ca(2+), and Fe(3+) from a contaminated soil. At pH 7.0, PDTA extracted 1.5 times more Cu(2+) than did EDTA, but only 75% as much Ca(2+). Although CDTA was a strong chelator of heavy metal ions, its overall selectivity was lower and comparable to that of EDTA. BDTA was the least effective extractant because its stability constants with heavy metals were low. PDTA is potentially a practical washing agent for soils contaminated with trace metals.
土壤洗脱是去除金属污染物的少数几种永久性处理方法之一。乙二胺四乙酸(EDTA)及其盐类可以大大增加受污染土壤中重金属的去除率,并且已经广泛研究用于土壤洗脱。然而,由于土壤主要阳离子和痕量金属离子之间的螯合竞争导致其选择性较低,EDTA 的利用率很低。本研究评估了使用 EDTA 及其三种衍生物(CDTA(反式-1,2-环己二胺四乙酸)、BDTA(苄基二胺四乙酸)和 PDTA(苯二胺四乙酸))进行土壤洗脱的潜力,它们分别含有环己烷环、苄基和苯基。滴定结果表明,PDTA 对 Cu(2+) 和 Ni(2+) 的稳定常数最高,对痕量金属相对于主要阳离子的整体选择性最高。平衡批实验评估了 EDTA 衍生物从受污染土壤中提取 Cu(2+)、Zn(2+)、Ni(2+)、Pb(2+)、Ca(2+) 和 Fe(3+)的效果。在 pH 7.0 时,PDTA 提取的 Cu(2+)比 EDTA 多 1.5 倍,但仅提取了 75%的 Ca(2+)。虽然 CDTA 是重金属离子的强螯合剂,但它的整体选择性较低,与 EDTA 相当。BDTA 是最无效的提取剂,因为其与重金属的稳定常数较低。PDTA 有可能成为受痕量金属污染土壤的实用洗脱剂。