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Microalgae: a potential tool for remediating aquatic environments from toxic metals

机译:微藻:一种潜在的工具,用于从有毒金属中修复水生环境

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摘要

In the last few years, due to vigorous expansion of industrialization, toxic metals appear to be in excessive levels in the environment. Ecosystems are now severely threatened by such widespread pollutants. Current reviews show that technologies that are used to remediate infected areas appear to have low efficiency, and this has brought on the need for further investigation. Among biological and non-biological methods which have been proposed for removing such pollutants from the environment, phycoremediation seems to be advantageous. Until recently, many microorganisms (such as fungi, bacteria and waste biomass) have been studied for their ability to remove toxic metals from the aqueous environment. In this review, it is shown that in particular, microalgae have received great attention lately, because of their ability to bind essential quantities of these pollutants. Phycoremediation involves the process of biosorption and bioaccumulation, both of which take part in the metal sequestration. A detailed description of either mechanism with respect to the parameters affecting them is reviewed in this work.
机译:在过去的几年里,由于工业化的蓬勃发展,有毒金属似乎在环境中过度水平。这种普遍污染物现在严重威胁生态系统。目前的评论表明,用于修复感染区域的技术似乎具有低效率,这带来了进一步调查的需求。已经提出从环境中除去这些污染物的生物和非生物学方法中,植物化似乎是有利的。直到最近,已经研究了许多微生物(如真菌,细菌和废物质)的能力从水环境中除去毒性金属。在本次综述中,表明,特别是,微藻最近引起了非常重视,因为它们能够结合必要的这些污染物的必要性。植物修复涉及生物吸附和生物累积的过程,其中两者都参与金属封存。在这项工作中审查了关于影响它们的参数的任何机制的详细描述。

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