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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Heavy metal pollution induced due to coal mining effluent on surrounding aquatic ecosystem and its management through naturally occurring aquatic macrophytes
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Heavy metal pollution induced due to coal mining effluent on surrounding aquatic ecosystem and its management through naturally occurring aquatic macrophytes

机译:煤炭开采废水对周围水生生态系统的污染及通过天然存在的水生植物的治理

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摘要

Three aquatic plants Eichhornia crassipes, Lemna minor and Spirodela polyrhhiza were used in laboratory for the removal of heavy metals from the coal mining effluent. Plants were grown singly as well as in combination during 21 days phytoremediation experiment. Results revealed that combination of E crassipes and L. minor was the most efficient for the removal of heavy metals while E. crassipes was the most efficient in monoculture. Significant correlations between metal concentration in final water and macrophytes were obtained. Translocation factor i.e. ratio of shoot to root metal concentration revealed that metals were largely retained in the roots of aquatic macrophytes. Analytical results showed that plant roots have accumulated heavy metals approximately 10 times of its initial concentration. These plants were also subjected to toxicity assessment and no symptom of metal toxicity was found therefore, this method can be applied on the large scale treatment of waste water where volumes generated are very high and concentrations of pollutants are low. (c) 2007 Elsevier Ltd. All rights reserved.
机译:实验室使用了三种水生植物凤眼莲,小Lemna和Spirodela polyrhhiza来去除煤炭开采废水中的重金属。在21天的植物修复实验中,植物既可以单独生长也可以联合生长。结果表明,在单一养殖中,十字花科小孢子和小L. L.的组合是去除重金属最有效的方法,而十字花科小花的E. crassipes最有效。获得了最终水中的金属浓度与大型植物之间的显着相关性。易位因子,即枝条与根金属浓度的比率表明,金属大部分保留在水生植物的根中。分析结果表明,植物根部积累的重金属约为其初始浓度的10倍。这些工厂也进行了毒性评估,没有发现金属毒性的症状,因此,该方法可用于大规模处理废水的大规模处理,因为废水的产生量很大而污染物的浓度很低。 (c)2007 Elsevier Ltd.保留所有权利。

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