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Potential of Soil Amendments and Jatropha Curcas Plant in the Remediation of Heavy Metals Contaminated Agricultural Land

机译:土壤修正和麻疹姜黄植物在重金属修复中的土壤修正植物污染农业土地

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Textile wastewater contaminated by heavy metal has been polluted to the agricultural land in Rancaekek, Bandung. To overcome the heavy metal contamination, phytoremediation technology has been proposed. Jatropha curcas plant with soil amendments (compost and EDTA) was utilized to investigate the heavy metal remediation in the contaminated soil. Five experimental treatments viz. S0 S1 S2 S3 and Se were set up for ninety days. The plant growth behaviour, heavy metal accumulation, and translocation (TF) and bioaccumulation (BAF) factors were determined. The untreated soil was indicated as silty loam containing Cd, Cr and Pb concentrations approximately 0.79,100.15, and 8.43 mg/kg, respectively. The heavy metals were highly accumulated in the plant for treatments S3 and Se compared to control So. The accumulation of Cd. Cr and Pb in different J. curcas tissues can be classified as follow: root >shoot >leaves. Bioaccumulation and translocation factor of Cd were greater than one (BAF, TF >1) while Cr and Pb were less than one (BAF, TF < 1). The highly removal of heavy metal was found that Cd = 81.73 % and Cr = 41.15% in S3 while Pb = 65.20 % in SE. To sum up, J. curcas species represented high TF and BAF in Cd removal, and low in Cr and Pb removal. It revealed that Jatropha curcas plant was suitable for phytoremediation of heavy metal contaminated soil, especially, combination with both compost and EDTA. Moreover, Jatropha curcas could be an emerging technology plant to alleviate the contaminated soil with multi-metal for sustainability of land resources.
机译:受重金属污染的纺织废水已被涌入朗达克克克克克克克的农业用地污染。为了克服重金属污染,已经提出了植物修复技术。利用土壤修正案(COPOST和EDTA)的麻风树姜黄植物研究污染土壤中的重金属修复。五个实验治疗Ziz。 S0 S1 S2 S3和SE设置为90天。确定植物生长行为,重金属积累和易位(TF)和生物累积(BAF)因子。将未处理的土壤表示为含有Cd,Cr和Pb浓度约0.79,100.15和8.43mg / kg的硅壤土。与对照相比,在植物中,重金属在植物中积累了高度积累的植物S3和SE。 CD的积累。不同J.Curcas组织的Cr和Pb可以归类如下:根>射击>叶子。 CD的生物累积和易位因子大于一个(BAF,TF> 1),而Cr和Pb小于一个(Baf,TF <1)。发现高度除去重金属,Cd = 81.73%,Cr = 41.15%在S3中,而Pb = 65.20%。总结,J.Curcas物种在Cd去除中具有高TF和BaF,Cr和Pb脱离。它揭示了麻风树姜黄植物适用于重金属污染土壤的植物化,特别是与堆肥和EDTA的组合。此外,麻风树图Curcas可以是一种新兴技术植物,以缓解土地资源可持续性的多金属污染土壤。

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