Gujarat Pollution Control Board, Gandhinagar, Gujarat 382 010, India.
Gujarat Pollution Control Board, Gandhinagar, Gujarat 382 010, India; Kadi Sarva Vishwavidyalaya, Gandhinagar, Gujarat 382015, India.
Bioresour Technol. 2020 Oct;314:123728. doi: 10.1016/j.biortech.2020.123728. Epub 2020 Jun 28.
Industrialization increases use of dyes due to its high demand in paper, cosmetic, textile, leather and food industries. This in turn would increase wastewater generation from dye industrial activities. Various dyes and its structural compounds present in dye industrial wastewater have harmful effects on plants, animals and humans. Synthetic dyes are more resistant than natural dyes to physical and chemical methods for remediation which makes them more difficult to get decolorize. Microbial degradation has been researched and reviewed largely for quicker dye degradation. Genetically engineered microorganisms (GEMs) play important role in achieving complete dye degradation. This paper provides scientific and technical information about dyes & dye intermediates and biodegradation of azo dye. It also compiles information about factors affecting dye(s) biodegradation, role of genetically modified organisms (GMOs) in process of dye(s) degradation and perspectives in this field of research.
工业化的发展导致对染料的需求增加,这在造纸、化妆品、纺织、皮革和食品工业中尤为明显。反过来,这将增加来自染料工业活动的废水产生。各种染料及其在染料工业废水中的结构化合物对植物、动物和人类都有有害影响。与天然染料相比,合成染料更能抵抗物理和化学修复方法,这使得它们更难脱色。微生物降解已被广泛研究和综述,以实现更快的染料降解。基因工程微生物(GEM)在实现完全染料降解方面发挥着重要作用。本文提供了有关染料和染料中间体以及偶氮染料生物降解的科学和技术信息。它还汇编了有关影响染料生物降解的因素、基因修饰生物体(GMO)在染料降解过程中的作用以及该研究领域的前景的信息。