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EDDS 冲洗柱实验中金属交换的意义。

Significance of metal exchange in EDDS-flushing column experiments.

机构信息

Department of Civil and Environmental Engineering, The Hong Kong University of Science and Technology, Hong Kong, China.

出版信息

Chemosphere. 2011 Mar;83(1):7-13. doi: 10.1016/j.chemosphere.2011.01.040. Epub 2011 Feb 12.

Abstract

Chelating agents have been widely studied for extracting heavy metals from contaminated soils, and the effectiveness of EDDS ([S,S]-ethylene-diamine-disuccinic acid) has aroused extensive attention because of its biodegradability in the natural environment. However, in the course of EDDS-flushing, metal exchange of newly extracted metal-EDDS complexes with other sorbed metals and mineral cations may result in metal re-adsorption on the soil surfaces. Therefore, this study investigated the relative significance of metal exchange under different travel distances of chelant complexes, characteristics of soil contamination, and solution pH in the column experiments. As a result of metal exchange, the elution of Zn and Pb was retarded and the cumulative extraction was lower than those of Ni and Cu, especially over a longer travel distance. Compared with the field-contaminated soils, the effects of metal exchange were even more substantial in the artificially contaminated soil because of a greater amount of extractable metals and a larger proportion of weakly bound fractions. By contrast, metal exchange was insignificant at pH 8, probably due to less adsorption of metal-EDDS complexes. These findings highlight the conditions under which metal exchange of metal-EDDS complexes and the resulting impacts are more significant during EDDS-flushing.

摘要

螯合剂已被广泛研究用于从污染土壤中提取重金属,由于其在自然环境中的可生物降解性,EDDS([S,S]-乙二胺二琥珀酸)的有效性引起了广泛关注。然而,在 EDDS 冲洗过程中,新提取的金属-EDDS 配合物与其他吸附金属和矿物阳离子的金属交换可能导致金属重新吸附在土壤表面上。因此,本研究在柱实验中研究了不同螯合剂络合物迁移距离、土壤污染特征和溶液 pH 值对金属交换的相对重要性。由于金属交换,Zn 和 Pb 的洗脱被延迟,累积提取量低于 Ni 和 Cu,尤其是在较长的迁移距离下。与田间污染土壤相比,由于可提取金属的含量较大且弱结合部分的比例较大,人工污染土壤中金属交换的影响甚至更为显著。相比之下,在 pH 值为 8 时,金属交换不明显,可能是由于金属-EDDS 配合物的吸附较少。这些发现突出了在 EDDS 冲洗过程中,金属-EDDS 配合物的金属交换及其产生的影响更为显著的条件。

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