Chen Zhonghao, Oh Wen-Da, Yap Pow-Seng
Department of Civil Engineering, Xi'an Jiaotong-Liverpool University, Suzhou, 215123, China.
School of Chemical Sciences, Universiti Sains Malaysia, 11800, Penang, Malaysia.
Chemosphere. 2022 Nov;307(Pt 3):135824. doi: 10.1016/j.chemosphere.2022.135824. Epub 2022 Aug 6.
Phenolic compounds such as phenol, bisphenol A, 2,4-dichlorophenol, 2,4-dinitrophenol, 4-chlorophenol and 4-nitrophenol are well known to be highly detrimental to both human and living beings. Thus, it is of critical importance that suitable remediation technologies are developed to effectively remove phenolic compounds from aqueous solutions. Biodegradation utilizing enzymatic technologies is a promising biotechnological solution to sustainably address the pollution in the aquatic environment as caused by phenolic compounds under a defined environmentally optimized strategy and thus should be investigated in great detail. This review aims to present the latest developments in the employment of immobilized laccase for the degradation of phenolic compounds in water. The review first succinctly delineates the fundamentals of biological enzyme degradation along with a critical discussion on the myriad types of laccase immobilization techniques, which include physical adsorption, ionic adsorption, covalent binding, entrapment, and self-immobilization. Then, this review presents the major properties of immobilized laccase, namely pH stability, thermal stability, reusability, and storage stability, as well as the degradation efficiencies and associated kinetic parameters. In addition, the optimization of the immobilized enzyme, specifically on laccase immobilization methods and multi-enzyme system are critically discussed. Finally, pertinent future perspectives are elucidated in order to significantly advance the developments of this research field to a higher level.
酚类化合物,如苯酚、双酚A、2,4-二氯苯酚、2,4-二硝基苯酚、4-氯苯酚和4-硝基苯酚,众所周知对人类和生物都具有高度危害性。因此,开发合适的修复技术以有效去除水溶液中的酚类化合物至关重要。利用酶技术进行生物降解是一种有前景的生物技术解决方案,可在特定的环境优化策略下可持续地解决酚类化合物对水生环境造成的污染,因此应进行详细研究。本综述旨在介绍固定化漆酶用于降解水中酚类化合物的最新进展。综述首先简要阐述了生物酶降解的基本原理,并对多种漆酶固定化技术进行了批判性讨论,这些技术包括物理吸附、离子吸附、共价结合、包埋和自固定化。然后,本综述介绍了固定化漆酶的主要特性,即pH稳定性、热稳定性、可重复使用性和储存稳定性,以及降解效率和相关动力学参数。此外,还对固定化酶的优化,特别是漆酶固定化方法和多酶系统进行了批判性讨论。最后,阐明了相关的未来展望,以便将该研究领域的发展显著提升到更高水平。