Centre for Energy and Environmental Sustainability, Lucknow, 226 029, India.
CSIR-Indian Institute of Toxicology Research, Lucknow, India.
Chemosphere. 2021 Jun;272:129936. doi: 10.1016/j.chemosphere.2021.129936. Epub 2021 Feb 11.
An increasing quantum of pollutants from various industrial sector activities represents a severe menace to environmental & ecological balance. Bioremediation is gaining flow globally due to its cost-effective and environment-friendly nature. Understanding biodegradation mechanisms is of high ecological significance. Application of microbial enzymes has been reported as sustainable approach to mitigate the pollution. Immobilized enzyme catalyzed transformations are getting accelerated attention as potential alternatives to physical and chemical methods. The attention is now also focused on developing novel protein engineering strategies and bioreactor design systems to ameliorate overall biocatalysis and waste treatment further. This paper presents and discusses the most advanced and state of the art scientific & technical developments about biocatalytic remediation of industrial pollutants. It also covers various biocatalysts and the associated sustainable technologies to remediate various pollutants from waste streams. Enzyme production and immobilization in bioreactors have also been discussed. This paper also covers challenges and future research directions in this field.
各种工业部门活动产生的污染物越来越多,对环境和生态平衡构成了严重威胁。由于具有成本效益和环境友好的特点,生物修复在全球范围内得到了广泛应用。理解生物降解机制具有重要的生态意义。微生物酶的应用已被报道为减轻污染的可持续方法。固定化酶催化转化作为物理和化学方法的潜在替代品,受到了越来越多的关注。现在人们的注意力也集中在开发新的蛋白质工程策略和生物反应器设计系统上,以进一步改善整体生物催化和废物处理。本文介绍并讨论了工业污染物生物催化修复方面最先进和最先进的科学和技术发展。它还涵盖了各种生物催化剂和相关的可持续技术,以修复废水中的各种污染物。生物反应器中的酶生产和固定化也进行了讨论。本文还介绍了该领域的挑战和未来研究方向。