纳米植物修复土壤重金属的研究进展

P. Prakash, S. S
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引用次数: 2

摘要

重金属污染是各种人为活动引起的主要全球性问题之一。重金属具有很强的持久性、生物蓄积性和不可生物降解性,可能对自然栖息地和人类健康造成危害。因此,从土壤生态系统中消除重金属是创建一个安全、可行和零废物生态系统的关键责任。有许多技术可以消除环境中的重金属,但每种技术都有自己的优点和缺点。当使用生物制剂来降解污染物时,这个过程被称为生物修复。纳米植物修复是纳米技术领域的一种新兴的生物修复方法,它利用生物合成的纳米颗粒和植物物种去除环境中的有毒重金属。这是一种高效、经济、环保的技术。研究发现,工程纳米材料大大减少了金属暴露对不同植物物种的不良影响。由于其微小的尺寸和巨大的表面积,纳米材料对金属具有吸引力,因此可以迅速进入金属挑战的生态系统的污染区。本文综述了纳米植物修复重金属修复的各个方面。
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Nano-Phytoremediation of Heavy Metals from Soil: A Critical Review
Heavy metal pollution is one of the major global issues arising from various anthropogenic activities. The natural habitat and human health may be at peril from heavy metal exposure since they are tenacious, bio-accumulative, and non-biodegradable. Therefore, eradicating heavy metals from the soil ecosystem is a crucial responsibility to create a secure, viable, and zero-waste ecosystem. There are numerous techniques for eliminating heavy metals from the environment, but each has its own benefits and drawbacks. When a biological agent is used to degrade pollutants, this process is called bioremediation. Nano-phytoremediation, an emerging bioremediation approach in the field of nanotechnology, uses biosynthesized nanoparticles and plant species for the removal of toxic heavy metals from the environment. It is an efficient, economical, and environmentally friendly technique. The adverse consequences of metal exposure on different plant species have been discovered to be greatly reduced by engineered nanomaterials. Because of their tiny dimensions and huge surface area, nanomaterials have an attraction towards metals and can thus quickly enter the contaminated zone of ecosystems that are metal-challenged. The current review provides an overview of various aspects of nano-phytoremediation for heavy metal remediation.
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