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Microbial and Plant-Assisted Bioremediation of Heavy Metal Polluted Environments: A Review

机译:微生物和植物辅助的重金属污染环境的生物修复:综述

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摘要

Environmental pollution from hazardous waste materials, organic pollutants and heavy metals, has adversely affected the natural ecosystem to the detriment of man. These pollutants arise from anthropogenic sources as well as natural disasters such as hurricanes and volcanic eruptions. Toxic metals could accumulate in agricultural soils and get into the food chain, thereby becoming a major threat to food security. Conventional and physical methods are expensive and not effective in areas with low metal toxicity. Bioremediation is therefore an eco-friendly and efficient method of reclaiming environments contaminated with heavy metals by making use of the inherent biological mechanisms of microorganisms and plants to eradicate hazardous contaminants. This review discusses the toxic effects of heavy metal pollution and the mechanisms used by microbes and plants for environmental remediation. It also emphasized the importance of modern biotechnological techniques and approaches in improving the ability of microbial enzymes to effectively degrade heavy metals at a faster rate, highlighting recent advances in microbial bioremediation and phytoremediation for the removal of heavy metals from the environment as well as future prospects and limitations. However, strict adherence to biosafety regulations must be followed in the use of biotechnological methods to ensure safety of the environment.
机译:有害废料,有机污染物和重金属造成的环境污染对自然生态系统造成了不利影响,损害了人类。这些污染物来自人为来源以及自然灾害,例如飓风和火山喷发。有毒金属可能在农业土壤中积累并进入食物链,从而成为对粮食安全的主要威胁。常规和物理方法昂贵,并且在金属毒性低的区域无效。因此,生物修复是一种生态友好且有效的方法,可利用微生物和植物的固有生物机制消除有害污染物,从而回收被重金属污染的环境。这篇综述讨论了重金属污染的毒性作用以及微生物和植物用于环境修复的机制。它还强调了现代生物技术技术和方法在提高微生物酶以更快的速度有效降解重金属的能力中的重要性,强调了微生物生物修复和植物修复在从环境中去除重金属方面的最新进展以及未来的前景。和限制。但是,在使用生物技术方法时必须严格遵守生物安全法规,以确保环境安全。

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