桄榔子(ponamia pinnata, L.)植株部分六价铬积累的分析研究皮埃尔和污染土壤的修复

Q3 Agricultural and Biological Sciences
Das Pratyush Kumar, Das Bidyut Prava, Das Patitapaban
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引用次数: 4

摘要

六价铬[Cr(VI)]是一种有毒氧化态的重金属Cr,具有广泛的工业应用。Cr基开采和工业活动将Cr(VI)作为污染物释放到土壤中,是造成污染的主要原因。这些矿区和工业区的土壤质量恢复对可持续发展和健康生活至关重要。利用植物系统作为碳汇修复富含铬(VI)的土壤是一种经济有效的土壤污染治理技术。本研究的研究对象是Pongamia pinnata (L.)。Pierre作为修复Cr(VI)污染土壤的生物汇。桄榔子属植物部分Cr(VI)积累的分析研究按照美国公共卫生协会的标准方法对皮埃尔及其根际土壤中存在的铬(六)的状况进行了研究。分析结果表明,随着根际土壤中Cr(VI)浓度的增加,目标植物各部分Cr(VI)积累量稳步增加。本研究的新颖之处在于对羽石楠(P. pinnata (L.))的生存研究。高Cr(VI)胁迫条件下土壤中Cr(VI)的差异积累及其重要营养部位对土壤中有毒金属的吸收以减少污染。受污染根际土壤对Cr(VI)的吸收具有较高的相关系数值,其浓度可达200 μg/g。Cr(VI)在根>叶>茎中的积累顺序显著(p = 0.05和p = 0.01)。对该植物的进一步研究,P. pinnata (L.)皮埃尔,可以使其成为修复Cr(VI)污染土壤的精英物种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analytical study on hexavalent chromium accumulation in plant parts of Pongamia pinnata (L.) Pierre and remediation of contaminated soil
Hexavalent chromium [Cr(VI)] is a toxic oxidation state of the heavy metal Cr, which has a wide range of industrial applications. Cr-based mining and industrial activities release Cr(VI) as a pollutant into the soil, which is responsible for pollution. Restoration of soil quality in these mining and industrial areas is highly essential for sustainable development and healthy living. The application of plant systems as a sink for the remediation of soil rich in Cr(VI) is a cost-effective technique to control soil pollution. The present study targets Pongamia pinnata (L.) Pierre as a biological sink for the remediation of Cr(VI)-contaminated soil. The analytical study on Cr(VI) accumulation in plant parts of P. pinnata (L.) Pierre and the status of Cr(VI) present in its rhizospheric soil were carried out following the standard methodologies of the American Public Health Association. The results of the analysis are in favor of the steady increase in Cr(VI) accumulation in plant parts of the targeted plant with the increase in its concentration in rhizospheric soil. The novelty of this study focuses on the survival of P. pinnata (L.) Pierre on soil under high Cr(VI) stress conditions and the differential accumulation of Cr(VI) in its vital vegetative parts with the uptake of the toxic metal from the soil to reduce pollution. It is supported by the higher value coefficient of correlation during the uptake of Cr(VI) from polluted rhizospheric soil with its concentration in soils up to 200 μg/g soil. The order of accumulation of Cr(VI) in root > leaf > stem is significant at p = 0.05 and p = 0.01. Further work on this plant species, P. pinnata (L.) Pierre, can make it an elite species for remediation of Cr(VI)-polluted soil.
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来源期刊
Journal of Applied Biology and Biotechnology
Journal of Applied Biology and Biotechnology Agricultural and Biological Sciences-Food Science
CiteScore
1.80
自引率
0.00%
发文量
181
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