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Copper extraction effectiveness and soil dissolution issues of EDTA-flushing of artificially contaminated soils

机译:人工污染土壤的EDTA冲洗铜提取效率和土壤溶解问题

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Ethylenediaminetetraacetic acid (EDTA) was used as a reference chelating agent in column experiments to investigate the effectiveness of chelant-enhanced flushing of soils artificially contaminated under various conditions (low/high Cu loading, and aging). The associated soil dissolution issues were of particular concern. Dissolution of indigenous Fe/Al oxides, Ca carbonates and organic matter was monitored over the course of flushing. Regardless of contamination condition, above 85% extraction efficiency could be accomplished by 10~(-2) and 10~(-3) M EDTA-flushing, but not 10~(-4) M. The Cu extraction kinetics positively correlated to EDTA concentration but inversely to Cu loading in soils. In addition to extraction from weakly sorbed fractions, a large portion of Cu was extracted from oxide, organic matter and residual fractions, which appears to derive from soil dissolution. Cumulative dissolved amounts of Fe, Al, and Ca were found to reach as high as hundreds of mg kg~(-1), which were comparable to Cu contamination. Soil organic matter, which is known to strongly interact with Fe and Al oxides, was also mobilized. The rate and extent of these soil dissolutions were also positively correlated to EDTA concentration. Therefore, the co-extraction of soil minerals and organic matter during chelant-enhanced flushing, which would alter both physical structure and chemical properties of the soils, is detrimental to future land use and deserves greater attention. The concentration of chelating agent is the most crucial factor for an effective soil flushing with minimal damage.
机译:乙二胺四乙酸(EDTA)在柱实验中用作参考螯合剂,以研究在各种条件下(低/高Cu含量和老化)对螯合剂增强冲洗的人工污染土壤的有效性。相关的土壤溶解问题特别令人关注。在冲洗过程中监测了本地铁/铝氧化物,碳酸钙和有机物的溶解情况。不论污染条件如何,通过10〜(-2)和10〜(-3)M EDTA冲洗均可达到85%以上的萃取效率,而10〜(-4)M则无此效果。Cu萃取动力学与EDTA正相关浓度,但与土壤中的铜含量成反比。除了从吸附较弱的馏分中萃取外,还从氧化物,有机物和残留馏分中萃取了大部分的铜,这些铜似乎来自土壤溶解。发现Fe,Al和Ca的累积溶解量高达数百mg kg〜(-1),与Cu污染相当。还动员了已知会与Fe和Al氧化物强烈相互作用的土壤有机质。这些土壤溶解的速度和程度也与EDTA浓度呈正相关。因此,在螯合剂-增强冲洗过程中土壤矿物质和有机物的共提取会改变土壤的物理结构和化学性质,不利于将来的土地利用,应引起更多关注。螯合剂的浓度是有效冲洗土壤且损害最小的最关键因素。

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