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Use of leonardite humic acids for metals extraction in mine soils

机译:莱诺石腐殖酸在矿山土壤中提取金属的用途

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摘要

Mine soils usually exhibit high levels of metal contamination. Phytoextraction is an environmental friendly and cost-effective technique for soil remediation, which consists of removal of metals from soil by plant roots and their translocation to aerial parts. Humic substances used as soil amendments could enhance metal mobility and uptake by plants due to formation of soluble complexes. This study aimed to evaluate the effects of a commercial humic acid derived from leonardite added at different rates and pH to a contaminated soil from an abandoned copper mine in Colmenarejo (Madrid, Spain) on metal mobility. The objective was to assess its potential as soil amendment for phytoextraction. Soil samples (10 g) were sequentially extracted 6 times with 20 mL of solution containing humic acid at: 0 (control), 0.25, 1, and 5 g L-1. Solutions were previously adjusted to pH: 4, 6.1 (natural soil pH) and 8. Extracts were analyzed for pH, electrical conductivity, metal concentrations (Cu and Zn) and ratio of absorption at 465 to 665 nm (E4/E6) as an indirect measure of soluble organic matter content. Results showed that addition of higher doses of humic acid increased soluble organic matter content, and therefore extracted a higher concentration of Zn and particularly Cu, due to formation of soluble humic complexes. At higher pH humic acid became more soluble and managed to extract increasing amounts of metals, except in the highest humic acid treatment due to its precipitation or flocculation. The use of this humic acid as soil amendment could promote metal phytoextraction by tolerant plants in contaminated mine soils, but it should be applied at proper pH and other soil conditions to avoid risk of metal leaching to groundwater
机译:矿土通常表现出高水平的金属污染。植物提取是一种环境友好且具有成本效益的土壤修复技术,该技术包括通过植物根部去除土壤中的金属并将其转移到地上部分。由于形成可溶性复合物,用作土壤改良剂的腐殖质可增强植物的金属迁移率和吸收能力。这项研究旨在评估以不同比例和pH值添加的,以褐煤石为原料的商业腐殖酸对Colmenarejo(西班牙马德里)一座废弃铜矿的污染土壤中金属迁移率的影响。目的是评估其作为植物提取土壤改良剂的潜力。将土壤样品(10 g)依次用20 mL含腐殖酸的溶液在0(对照),0.25、1和5 g L-1下萃取6次。预先将溶液的pH值分别调整为4、6.1(自然土壤pH)和8。分析提取液的pH,电导率,金属浓度(铜和锌)以及在465至665 nm处的吸收率(E4 / E6)。可溶性有机物含量的间接测量。结果表明,添加较高剂量的腐殖酸会增加可溶性有机物的含量,因此会由于可溶性腐殖质络合物的形成而提取较高浓度的Zn,尤其是Cu。在较高的pH值下,腐殖酸变得更易溶解,并设法提取出越来越多的金属,但由于其沉淀或絮凝作用,在最高腐殖酸处理中除外。使用这种腐殖酸作为土壤改良剂可促进植物在受污染的土壤中提取金属,但应在适当的pH值和其他土壤条件下使用,以避免金属浸出到地下水中的风险。

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