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环境威胁性纺织整理染料生物脱色和生物降解的最新进展

Recent advances in biodecolorization and biodegradation of environmental threatening textile finishing dyes.

作者信息

Sehar Shama, Rasool Tabassum, Syed Hasnain M, Mir M Amin, Naz Iffat, Rehman Abdul, Shah Mir Sadiq, Akhter Mohammad Salim, Mahmood Qaisar, Younis Adnan

机构信息

Department of Biology, College of Science, University of Bahrain, P.O. Box 32038, Sakhir, Kingdom of Bahrain.

Department of Microbiology, Quaid-i-Azam University, Islamabad, 45320 Pakistan.

出版信息

3 Biotech. 2022 Sep;12(9):186. doi: 10.1007/s13205-022-03247-7. Epub 2022 Jul 21.

Abstract

Organic nature of dyes and their commercially made products are widely utilized in many industries including paper, cosmetics, pharmaceuticals, photography, petroleum as well as in textile manufacturing. The textile industry being the top most consumer of a large variety of dyes during various unit processes operation generates substantial amount of wastewater; hence, nominated as "Major Polluter of Potable Water". The direct discharge of such effluents into environment poses serious threats to the functioning of biotic communities of natural ecosystems. The detection of these synthetic dyes is considered as relatively easy, however, it is extremely difficult to completely eliminate them from wastewater and freshwater ecosystems. Aromatic chemical structure seems to be the main reason behind low biodegradability of these dyes. Currently, various physiochemical and biological methods are employed for their remediation. Among them, microbial degradation has attracted greater attention due to its sustainability, high efficiency, cost effectiveness, and eco-friendly nature. The current review presents recent advances in biodegradation of industrial dyes towards a sustainable and tangible technological innovative solutions as an alternative to existing conventional physicochemical treatment processes.

摘要

染料及其商业制成品的有机性质在许多行业中得到广泛应用,包括造纸、化妆品、制药、摄影、石油以及纺织制造业。纺织业在各种单元工艺操作中是多种染料的最大消费行业,会产生大量废水;因此,被提名为“饮用水的主要污染者”。此类废水直接排放到环境中对自然生态系统生物群落的功能构成严重威胁。这些合成染料的检测相对容易,然而,要从废水和淡水生态系统中完全消除它们却极其困难。芳香族化学结构似乎是这些染料生物降解性低的主要原因。目前,采用了各种物理化学和生物方法对其进行修复。其中,微生物降解因其可持续性、高效性、成本效益和生态友好性而受到更多关注。本综述介绍了工业染料生物降解方面的最新进展,以寻求可持续且切实可行的技术创新解决方案,作为现有传统物理化学处理工艺的替代方法。

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