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Interaction of organic sorbents and liming in remediation of light soil contaminated with copper and zinc

机译:有机吸附剂和石灰的相互作用修复被铜和锌污染的轻质土壤

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The objective of the study has been to determine the effectiveness of organic sorbents (peat and coprolite humus) applied separately or together with liming in preventing the phytotoxic effect produced by excessive amounts of copper and zinc in light soil. The study was conducted in pot trials on white mustard. Phytotoxicity of the metals in light soil revealed itself very clearly at the level of soil contamination equal to 150 mg of a metal·kg<'1> of soil. At higher levels of pollution (300 and 450 mg metal · kg<'1> soil) complete reduction of yield was observed. High effectiveness of the above soil remediation methods in restoration of light soil productivity potential has been demonstrated, with the best effect obtained from pots treated with a combination of one of the sorbents and lime. The effectiveness of peat as a factor limiting the transfer of copper from soil to plant tissues was higher than that of coprolite humus, which in turn proved to be more effective in zinc contaminated soil.
机译:这项研究的目的是确定有机吸附剂(豌豆和腐殖质腐殖质)单独使用或与石灰配合使用在防止轻质土壤中过量的铜和锌产生的植物毒性作用方面的有效性。该研究在白芥末的盆栽试验中进行。在等于150 mg金属·kg'1土壤的土壤污染水平下,轻土壤中金属的植物毒性非常明显。在较高的污染水平下(300和450 mg金属·kg'1土壤),观察到产量完全降低。已经证明上述土壤修复方法在恢复轻土壤生产力潜力方面具有很高的效率,而用吸附剂和石灰中的一种组合处理的盆具有最佳效果。泥炭作为限制铜从土壤向植物组织转移的因素,其有效性高于共腐殖质腐殖质,腐殖土反过来又被证明在受锌污染的土壤中更有效。

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