首页> 外文期刊>International Journal of Phytoremediation >Evaluation of copper bioaccumulation and translocation in Jatropha curcas grown in a contaminated soil.
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Evaluation of copper bioaccumulation and translocation in Jatropha curcas grown in a contaminated soil.

机译:评价在污染土壤中生长的麻疯树中铜的生物富集和转运。

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摘要

Contamination of soils with copper (Cu) has become a serious problem in the environment. Phytoremediation is an emerging green technology that uses green plants to remediate heavy metal contaminated areas. This study was conducted to evaluate the potential of Jatropha curcas for remediation of soils contaminated with Cu. Seedlings were planted in soils spiked with Cu in amount of 0, 50, 100, 200, 300, and 400 mg kg-1 (Cu0, Cu50, Cu100, Cu200, Cu300, and Cu400) for a period of five months. The maximum height and number of leaves were recorded in control (Cu0) whereas the highest basal stem diameter was found in seedlings exposed to Cu50. Copper concentrations among plant parts were in the following trend: roots > stems > leaves. The highest total Cu concentration (665+or-1 mg kg-1) and total Cu removal (1.2+or-0.2%) based on total plant dry biomass were found in Cu400 and Cu50 treatments, respectively. J. curcas exhibited high root concentration factor (RCF>1) and low translocation factor (TF<1). Although Cu accumulation by the plant didn't reach the criteria of Cu hyperaccumulators, this species showed a potential to be used in phytostabilization of mildly Cu contaminated areas. However, the plant cannot be used for phytoextraction of Cu-contaminated soils.
机译:铜(Cu)污染土壤已成为环境中的一个严重问题。植物修复是一种新兴的绿色技术,使用绿色植物修复重金属污染的区域。进行这项研究是为了评估麻风树麻疯树修复被铜污染的土壤的潜力。将幼苗种植在掺有0、50、100、200、300和400 mg kg -1 (Cu 0 ,Cu 50 ,Cu 100 ,Cu 200 ,Cu 300 和Cu 400 ),持续时间为五个月。在对照(Cu 0 )中记录了最大叶高和最大叶数,而暴露于Cu 50 的幼苗中发现了最大的基茎直径。植物部分中的铜浓度呈以下趋势:根>茎>叶。在Cu 400 <中,发现基于植物总干生物量的最高总Cu浓度(665+或-1 mg kg -1 )和总Cu去除率(1.2+或-0.2%)。 / sub>和Cu 50 处理。麻疯树表现出高的根部浓缩因子(RCF> 1)和低的转运因子(TF <1)。尽管植物积累的铜没有达到铜超富集的标准,但该物种显示出可用于轻度铜污染区的植物稳定化的潜力。但是,该植物不能用于铜污染土壤的植物提取。

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