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Ethylenediamine-NN′-Disuccinic Acid (EDDS)—Enhanced Flushing Optimization for Contaminated Agricultural Soil Remediation and Assessment of Prospective Cu and Zn Transport

机译:乙二胺-NN-二丁二酸(EDDS)—改进的冲洗量优化了污染的农业土壤的修复并评估了铜和锌的迁移潜力

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摘要

This paper presents the results of an experimental study aimed at investigating the effect of operative parameters on the efficiency of a soil flushing process, conducted on real contaminated soil containing high amounts of Cu and Zn. Soil flushing tests were carried out with Ethylenediamine-N,N′-disuccinic acid (EDDS) as a flushing agent due to its high biodegradability and environmentally friendly characteristics. Process parameters such as Empty-Bed Contact Time (EBCT) and EDDS solution molarity were varied from 21–33 h and from 0.36–3.6 mM, respectively. Effects on the mobility of cations such as Fe and Mn were also investigated. Results showed that very high performances can be obtained at [EDDS] = 3.6 mM and EBCT = 33 h. In these conditions, in fact, the amount of removed Cu was 53%, and the amount of removed Zn was 46%. Metal distribution at different depths from the top surface revealed that Cu has higher mobility than Zn. The process results were strongly dependent on the exchange of metals due to the different stability constants of the EDDS complexes. Finally, results from a comparative study showed that soil washing treatment reached the same removal efficiency of the flushing process in a shorter time but required a larger amount of the EDDS solution.
机译:本文介绍了一项旨在研究操作参数对冲洗土壤效率的实验研究结果,该实验是在含有大量铜和锌的实际污染土壤上进行的。由于乙二胺-N,N'-二琥珀酸(EDDS)具有高生物降解性和环保特性,因此使用乙二胺-N,N'-二琥珀酸(EDDS)作为冲洗剂进行了土壤冲洗试验。诸如空床接触时间(EBCT)和EDDS溶液摩尔浓度之类的工艺参数分别在21–33 h和0.36–3.6 mM之间变化。还研究了对诸如Fe和Mn等阳离子迁移率的影响。结果表明,在[EDDS] = 3.6 mM和EBCT = 33 h时可以获得非常高的性能。实际上,在这些条件下,Cu的去除量为53%,Zn的去除量为46%。从顶表面到不同深度的金属分布表明,铜的迁移率高于锌。由于EDDS配合物的稳定性常数不同,因此工艺结果强烈依赖于金属的交换。最后,一项比较研究的结果表明,土壤冲洗处理在较短的时间内达到了冲洗过程的相同去除效率,但需要大量的EDDS溶液。

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