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首页> 外文期刊>Chemosphere >The use of zero-valent Fe for curbing toxic emissions after EDTA-based washing of Pb, Zn and Cd contaminated calcareous and acidic soil
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The use of zero-valent Fe for curbing toxic emissions after EDTA-based washing of Pb, Zn and Cd contaminated calcareous and acidic soil

机译:EDTA洗涤污染的钙质和酸性土壤的EDTA基洗涤后,使用零价铁抑制有毒物质排放

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The use of EDTA-based soil washing is prevented by chelant environmental persistence and the hazard of toxic post-remedial emissions. Calcareous and acidic soils with 828 and 673 mg Pb kg(-1) , respectively, and co-contaminated with Zn and Cd, were washed with 90 and 60 mM EDTA, respectively, to remove 67 and 80% of Pb. Washed soils were rinsed until 6.5 and 5.1 mM EDTA, respectively, was measured in the final rinsing solutions. Emissions of residual EDTA and chelated metals from remediated soils were mitigated by adsorption on zero-valent Fe (ZVI), which was added (0.5-1.5%, w/w) to the slurry of washed soil immediately before rinsing. ZVI addition prevented the initial post-remedial surge of toxic metals leachability and minimised toxic emissions from calcareous and acidic soil as soon as 6 and 7 days after remediation, respectively. The extractability/leachability of EDTA and toxic metals from remediated and ZVI amended soils diminished to close to emissions from the original soils, frequently below the limit of quantification by flame-AAS, and was not affected by the pH of the leaching solutions. Efficient curbing of toxic post-remediation emissions as demonstrated herein is of paramount importance for recognition of EDTA-based remediation as environmentally safe. (C) 2018 Elsevier Ltd. All rights reserved.
机译:螯合剂在环境中的持久性以及有毒的补救后排放物的危害阻止了基于EDTA的土壤洗涤的使用。分别用90和60 mM EDTA洗涤分别含828和673 mg Pb kg(-1)并被Zn和Cd共同污染的钙质和酸性土壤,以去除67%和80%的Pb。冲洗后的污垢要冲洗到最终冲洗溶液中的EDTA分别为6.5和5.1 mM。通过吸附在零价铁(ZVI)上,可以减轻修复土壤中残留的EDTA和螯合金属的排放,然后在漂洗前将其添加(0.5-1.5%,w / w)到洗涤过的土壤浆料中。 ZVI的添加分别在修复后的6天和7天阻止了有毒金属的初始补救后激增,并使石灰性和酸性土壤中的有毒物质排放最小化。 EDTA和有毒金属从修复土壤和ZVI改良土壤中的可萃取性/可浸出性降低至接近原始土壤的排放,通常低于火焰AAS的定量极限,并且不受浸提溶液pH值的影响。如本文所述,有效遏制有毒的修复后排放对于承认基于EDTA的修复为环境安全至关重要。 (C)2018 Elsevier Ltd.保留所有权利。

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