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Remediation of Copper and Cadmium in Contaminated Soils using Compost with Inorganic Amendments

机译:堆肥与无机改良剂修复污染土壤中的铜和镉

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Compost enriched with inorganic amendments has been evaluated in laboratory-based experiments for its effectiveness to immobilise heavy metals in contaminated soils. This paper reports the results pertaining to copper (Cu) and cadmium (Cd) only. The inorganic amendments used were naturally occurring zeolite-Clinoptilolite and synthetic iron oxide (Fe2O3). A series of experiments have been performed on the amended soils and the results demonstrated that a combination of compost/iron oxide was effective in reducing the uptake of Cu in rye grass (Lolium perenne L.) whereas compost/iron oxide as well as compost/zeolite mixture was effective for reducing Cd uptake. The amended compost performed better in re-vegetating contaminated soil compared to compost or amendments alone. The sequential extraction of the control sample showed that major fraction of both Cu and Cd were associated with organic fraction indicating that the metals might be available to plants under oxidising conditions of soil. The percentage of Cu in the control sample associated with different fractions was in the following order: Organic > Residual > Reducible > Exchangeable fraction whereas for Cd it was: Organic > Reducible > Residual > Exchangeable. The sequential extraction of amended soils showed that exchangeable Cu decreased by 50% to 92% compared to the control. An increase in residual fraction of Cd (up to 40%) was observed in the amended soils. It was concluded that zeolite and/or iron oxide enriched compost can be used effectively for immobilising Cu and Cd in contaminated soils. The effect of amended compost on other metals should be taken into consideration for real field applicaitons.
机译:富含无机改良剂的堆肥已经在基于实验室的实验中进行了评估,以证明其将重金属固定在污染土壤中的有效性。本文仅报告与铜(Cu)和镉(Cd)有关的结果。使用的无机改性剂为天然沸石-斜发沸石和合成氧化铁(Fe 2 O 3 )。在改良的土壤上进行了一系列实验,结果表明,堆肥/氧化铁的组合可有效减少黑麦草(黑麦草)中Cu的吸收,而堆肥/氧化铁以及堆肥/沸石混合物对于减少Cd的吸收是有效的。与仅使用堆肥或改良剂相比,经修正的堆肥在恢复受污染的土壤方面表现更好。对照样品的顺序提取表明,Cu和Cd的主要部分都与有机部分有关,这表明金属可能在土壤氧化条件下可用于植物。对照样品中与不同馏分相关的铜百分比按以下顺序排列:有机>残留>可还原>可交换馏分,而对于Cd,则为:有机>可还原>残留>可交换。修正土壤的顺序提取表明,与对照相比,可交换铜含量降低了50%至92%。在改良土壤中,镉的残留分数增加(最高40%)。得出的结论是,富含沸石和/或氧化铁的堆肥可有效地用于固定污染土壤中的Cu和Cd。实际应用中应考虑修正的堆肥对其他金属的影响。

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