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利用玉米和微胶囊化 EDTA 对 Pb 和 Cu 污染土壤进行植物提取。

Phytoextraction of Pb and Cu contaminated soil with maize and microencapsulated EDTA.

机构信息

Guangzhou Institute of Geochemistry, Chinese Academy of Sciences, Guangzhou, China.

出版信息

Int J Phytoremediation. 2012 Sep;14(8):727-40. doi: 10.1080/15226510903390452.

Abstract

Chelate-assisted phytoextraction using agricultural crops has been widely investigated as a remediation technique for soils contaminated with low mobility potentially toxic elements. Here, we report the use of a controlled-release microencapsulated EDTA (Cap-EDTA) by emulsion solvent evaporation to phytoremediate soil contaminated with Pb and Cu. Incubation experiments were carried out to assess the effect of Cap- and non-microencapsulated EDTA (Ncap-EDTA) on the mobility of soil metals. Results showed EDTA effectively increased the mobility of Pb and Cu in the soil solution and Cap-EDTA application provided lower and more constant water-soluble concentrations of Pb and Cu in comparison with. Phytotoxicity may be alleviated and plant uptake of Pb and Cu may be increased after the incorporation of Cap-EDTA. In addition phytoextraction efficiencies of maize after Cap- and Ncap-EDTA application were tested in a pot experiment. Maize shoot concentrations of Pb and Cu were lower with Cap-EDTA application than with Ncap-EDTA. However, shoot dry weight was significantly higher with Cap-EDTA application. Consequently, the Pb and Cu phytoextraction potential of maize significantly increased with Cap-EDTA application compared with the control and Ncap-EDTA application.

摘要

螯合辅助植物提取技术已被广泛研究用于修复低迁移性潜在有毒元素污染的土壤。在这里,我们报告了使用乳液溶剂蒸发法制备的控释微胶囊化 EDTA(Cap-EDTA)来修复受 Pb 和 Cu 污染的土壤。通过培养实验评估了 Cap-EDTA 和非微胶囊化 EDTA(Ncap-EDTA)对土壤金属迁移性的影响。结果表明,EDTA 能有效提高土壤溶液中 Pb 和 Cu 的迁移性,与 Ncap-EDTA 相比,Cap-EDTA 应用提供了更低且更稳定的水溶性 Pb 和 Cu 浓度。掺入 Cap-EDTA 后,可能会减轻植物的毒性,并增加植物对 Pb 和 Cu 的吸收。此外,还在盆栽实验中测试了施用 Cap-EDTA 和 Ncap-EDTA 后玉米对 Pb 和 Cu 的植物提取效率。与 Ncap-EDTA 相比,施用 Cap-EDTA 后玉米地上部的 Pb 和 Cu 浓度较低,但地上部干重显著增加。因此,与对照和 Ncap-EDTA 相比,施用 Cap-EDTA 后玉米的 Pb 和 Cu 植物提取潜力显著增加。

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