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从废水生物修复重金属:基于微藻的未来的最新视角。

Bioremediation of heavy metals from wastewater: a current perspective on microalgae-based future.

机构信息

Bioprocess and Bioenergy Laboratory, Department of Microbiology, Central University of Rajasthan, Ajmer, Rajasthan, India.

Industrial Waste Water Research, Division of Applied and Environmental Microbiology, Environment Technology Ltd, Ankleshwar, Gujarat, India.

出版信息

Lett Appl Microbiol. 2022 Oct;75(4):701-717. doi: 10.1111/lam.13564. Epub 2021 Oct 4.

Abstract

Heavy metals-containing drinking water and wastewater are posing a severe threat to the environment, and living beings on land, air and water. Different conventional, advanced nanomaterials-based and biological method has been employed for the treatment of heavy metals. Among the biological methods, microalgae are an important group of micro-organisms that have numerous environmental applications and can remediate heavy metals from wastewater. Also, it has numerous advantages over conventional remediation processes. Microalgae cells can uptake the heavy metal via different physiological and biological methods and are utilized as a nutrient source to regulate its metabolic process for the production of biomass. Furthermore, the enhancement in heavy metal removal efficiency can be improved using different strategies such as immobilization of algal cells, development of algal consortia and designing of microalgae-based nanocomposite materials. Also, it can significantly contribute towards environmental sustainability and future. Thus, the review provides a critical overview of heavy metals and their existence along with their negative effects on humans. This review provides insight on recent advanced nanomaterial approaches for the removal of heavy metals, overviews of microalgae-based heavy metal uptake mechanisms and their potential for the amputation of different heavy metals. Furthermore, the special focus is on recent strategies that enhance heavy metal removal efficiency and contribute towards sustainability for the development of a microalgae-based future.

摘要

含重金属的饮用水和废水对环境和陆地、空气和水中的生物构成了严重威胁。已经采用了不同的传统、先进的基于纳米材料的和生物方法来处理重金属。在生物方法中,微藻是一种重要的微生物群,具有许多环境应用,可从废水中修复重金属。此外,它比传统的修复过程具有许多优势。微藻细胞可以通过不同的生理和生物方法吸收重金属,并将其用作营养源来调节其代谢过程以生产生物质。此外,通过不同的策略可以提高重金属去除效率,例如固定藻细胞、开发藻共生体和设计基于微藻的纳米复合材料。此外,它可以为环境可持续性和未来做出重大贡献。因此,本综述批判性地概述了重金属及其存在,以及它们对人类的负面影响。本综述介绍了用于去除重金属的最新先进纳米材料方法,基于微藻的重金属吸收机制及其对不同重金属去除的潜力。此外,特别关注最近提高重金属去除效率并为基于微藻的未来发展做出可持续贡献的策略。

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