Pollution, Toxicity and Carcinogenicity of Organic Dyes and their Catalytic Bio-Remediation

环境修复 污染 污染物 化学 废水 废物管理 污水 水污染 环境科学 环境化学 流出物 环境污染 污染 环境工程 环境保护 生物 有机化学 生态学 工程类
作者
Muhammad Ismail,Kalsoom Akhtar,Mohammad Iqbal Khan,Tahseen Kamal,Murad Ali Khan,Abdullah M. Asiri,Jongchul Seo,Sher Bahadar Khan
出处
期刊:Current Pharmaceutical Design [Bentham Science]
卷期号:25 (34): 3645-3663 被引量:410
标识
DOI:10.2174/1381612825666191021142026
摘要

: Water pollution due to waste effluents of the textile industry is seriously causing various health problems in humans. Water pollution with pathogenic bacteria, especially Escherichia coli (E. coli) and other microbes is due to the mixing of fecal material with drinking water, industrial and domestic sewage, pasture and agricultural runoff. Among the chemical pollutants, organic dyes due to toxic nature, are one of the major contaminants of industrial wastewater. Adequate sanitation services and drinking quality water would eliminate 200 million cases of diarrhea, which results in 2.1 million less deaths caused by diarrheal disease due to E. coli each year. Nanotechnology is an excellent platform as compared to conventional treatment methods of water treatment and remediation from microorganisms and organic dyes. In the current study, toxicity and carcinogenicity of the organic dyes have been studied as well as the remediation/inactivation of dyes and microorganism has been discussed. Remediation by biological, physical and chemical methods has been reviewed critically. A physical process like adsorption is cost-effective, but can’t degrade dyes. Biological methods were considered to be ecofriendly and cost-effective. Microbiological degradation of dyes is cost-effective, eco-friendly and alternative to the chemical reduction. Besides, certain enzymes especially horseradish peroxidase are used as versatile catalysts in a number of industrial processes. Moreover, this document has been prepared by gathering recent research works related to the dyes and microbial pollution elimination from water sources by using heterogeneous photocatalysts, metal nanoparticles catalysts, metal oxides and enzymes.
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