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从微酸性热带土壤中提取金属:螯合剂、pH 值和土壤类型之间的相互作用。

Extraction of metals from mildly acidic tropical soils: Interactions between chelating ligand, pH and soil type.

机构信息

James Cook University, College of Science and Engineering, Cairns, QLD, 4878, Australia.

Swinburne University of Technology, Faculty of Science, Engineering and Technology, Hawthorn, VIC, 3122, Australia; James Cook University, College of Science and Engineering, Townsville, QLD, 4814, Australia.

出版信息

Chemosphere. 2020 Jun;248:126060. doi: 10.1016/j.chemosphere.2020.126060. Epub 2020 Jan 29.

Abstract

Naturally occurring and synthetic chelating ligands can act as suppressants for fungal pathogens, nematodes and weeds, based on their ability to alter micronutrient bioavailability in soil, particularly iron. Chelators are also used as detergents, for remediation of heavy metal contamination and for supplying metals as fertiliser. The aim of this work was to test the ability of chelators to solubilise metals, in particular iron, in tropical soils over an environmentally relevant pH range. Six topsoils from farms in North Queensland, Australia were adjusted to pH 5, 6 and 7 and then extracted with CaCl, EDTA, DTPA, EDDHA and mimosine. The extracts were analysed for concentrations of aluminium, copper, iron, magnesium, manganese, potassium, strontium and zinc. EDDHA solubilised iron effectively under all of the conditions tested, indicating its likely suitability for pest suppression. The concentration of aluminium in EDDHA extracts was positively correlated with pH, and at pH 7 the concentration of aluminium was far greater than that of iron. An increase in the mobility of aluminium from EDDHA application to soil may lead to aluminium toxicity in plants, which should be considered further in any practical application of EDDHA. Mimosine, which is also a strong chelator, was a poor extractor of all metals, possibly due to adsorption to the soil.

摘要

天然和合成螯合剂可以作为真菌病原体、线虫和杂草的抑制剂,这是基于它们改变土壤中微量元素生物利用度的能力,特别是铁。螯合剂也被用作洗涤剂,用于修复重金属污染和作为肥料供应金属。本工作的目的是测试螯合剂在环境相关 pH 范围内溶解金属,特别是铁的能力。从澳大利亚北昆士兰州的 6 个农场表层土中,将 pH 调节至 5、6 和 7,然后用 CaCl、EDTA、DTPA、EDDHA 和金合欢素进行提取。分析了提取物中铝、铜、铁、镁、锰、钾、锶和锌的浓度。EDDHA 在所有测试条件下都能有效地溶解铁,表明其可能适合用于害虫防治。EDDHA 提取物中铝的浓度与 pH 呈正相关,在 pH 7 时,铝的浓度远远高于铁的浓度。EDDHA 施用到土壤中后,铝的迁移率增加可能导致植物的铝毒性,在任何 EDDHA 的实际应用中都应进一步考虑这一点。金合欢素也是一种很强的螯合剂,但它对所有金属的提取能力都很差,这可能是由于它被土壤吸附。

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