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制革废水污染生态系统中重金属的毒性与生物修复:综述

Toxicity and Bioremediation of Heavy Metals Contaminated Ecosystem from Tannery Wastewater: A Review.

作者信息

Igiri Bernard E, Okoduwa Stanley I R, Idoko Grace O, Akabuogu Ebere P, Adeyi Abraham O, Ejiogu Ibe K

机构信息

Chemical and Biochemical Remediation Unit, Directorate of Research and Development, Nigerian Institute of Leather and Science Technology, Zaria 810001, Kaduna State, Nigeria.

Infohealth Awareness Department, SIRONigeria Global Limited, Abuja 900001, FCT, Nigeria.

出版信息

J Toxicol. 2018 Sep 27;2018:2568038. doi: 10.1155/2018/2568038. eCollection 2018.

Abstract

The discharge of untreated tannery wastewater containing biotoxic substances of heavy metals in the ecosystem is one of the most important environmental and health challenges in our society. Hence, there is a growing need for the development of novel, efficient, eco-friendly, and cost-effective approach for the remediation of inorganic metals (Cr, Hg, Cd, and Pb) released into the environment and to safeguard the ecosystem. In this regard, recent advances in microbes-base heavy metal have propelled bioremediation as a prospective alternative to conventional techniques. Heavy metals are nonbiodegradable and could be toxic to microbes. Several microorganisms have evolved to develop detoxification mechanisms to counter the toxic effects of these inorganic metals. This present review offers a critical evaluation of bioremediation capacity of microorganisms, especially in the context of environmental protection. Furthermore, this article discussed the biosorption capacity with respect to the use of bacteria, fungi, biofilm, algae, genetically engineered microbes, and immobilized microbial cell for the removal of heavy metals. The use of biofilm has showed synergetic effects with many fold increase in the removal of heavy metals as sustainable environmental technology in the near future.

摘要

含有重金属生物毒性物质的制革废水未经处理就排放到生态系统中,这是当今社会面临的最重要的环境与健康挑战之一。因此,开发新颖、高效、环保且经济高效的方法来修复释放到环境中的无机金属(铬、汞、镉和铅)并保护生态系统的需求日益增长。在这方面,基于微生物的重金属修复技术的最新进展推动了生物修复成为传统技术的一种有前景的替代方法。重金属不可生物降解,且可能对微生物有毒。一些微生物已经进化出解毒机制来对抗这些无机金属的毒性作用。本综述对微生物的生物修复能力进行了批判性评估,特别是在环境保护的背景下。此外,本文还讨论了利用细菌、真菌、生物膜、藻类、基因工程微生物和固定化微生物细胞去除重金属的生物吸附能力。生物膜的使用已显示出协同效应,在不久的将来作为可持续环境技术,重金属去除量会有许多倍的增加。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1374/6180975/79812ca343c6/JT2018-2568038.001.jpg

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