Department of Biomedical Sciences, School of Biosciences and Technology, VIT University, Vellore, Tamilnadu, 632014, India.
Biodegradation. 2024 Apr;35(2):173-193. doi: 10.1007/s10532-023-10047-0. Epub 2023 Sep 1.
Textile industries release major fraction of dyestuffs in effluents leading to a major environmental concern. These effluents often contain more than one dyestuff, which complicates dye degradation. In this study ten reactive dyes (Reactive Yellow 145, Reactive Yellow 160, Reactive Orange 16, Reactive Orange 107, Reactive Red 195, Reactive Blue 21, Reactive Blue 198, Reactive Blue 221, Reactive Blue 250, and Reactive Black 5) that are used in textile industries were subjected to biodegradation by a bacterial consortium VITPBC6, formulated in our previous study. Consortium VITPBC6 caused single dye degradation of all the mentioned dyes except for Reactive Yellow 160. Further, VITPBC6 efficiently degraded a five-dye mixture (Reactive Red 195, Reactive Orange 16, Reactive Black 5, Reactive Blue 221, and Reactive Blue 250). Kinetic studies revealed that the five-dye mixture was decolorized by VITPBC6 following zero order reaction kinetic; V and K values of the enzyme catalyzed five-dye decolorization were 128.88 mg L day and 1003.226 mg L respectively. VITPBC6 degraded the dye mixture into delta-3,4,5,6-Tetrachlorocyclohexene, sulfuric acid, 1,2-dichloroethane, and hydroxyphenoxyethylaminohydroxypropanol. Phytotoxicity, cytogenotoxicity, microtoxicity, and biotoxicity assays conducted with the biodegraded metabolites revealed that VITPBC6 lowered the toxicity of five-dye mixture significantly after biodegradation.
纺织工业在废水排放中释放了大部分染料,这引起了重大的环境问题。这些废水中通常含有不止一种染料,这使得染料降解变得复杂。在这项研究中,十种用于纺织工业的活性染料(活性黄 145、活性黄 160、活性橙 16、活性橙 107、活性红 195、活性蓝 21、活性蓝 198、活性蓝 221、活性蓝 250 和活性黑 5)被我们之前研究中所组成的细菌联合体 VITPBC6 进行了生物降解。联合体 VITPBC6 导致除了活性黄 160 之外的所有提到的染料的单一染料降解。此外,VITPBC6 有效地降解了一种五染料混合物(活性红 195、活性橙 16、活性黑 5、活性蓝 221 和活性蓝 250)。动力学研究表明,VITPBC6 按照零级反应动力学对五染料混合物进行脱色;酶催化五染料脱色的 V 和 K 值分别为 128.88 mg L day 和 1003.226 mg L。VITPBC6 将染料混合物降解为 delta-3,4,5,6-四氯环己烯、硫酸、1,2-二氯乙烷和羟苯氧基乙氨基羟丙醇。用生物降解代谢物进行的植物毒性、细胞遗传毒性、微毒性和生物毒性试验表明,VITPBC6 在生物降解后显著降低了五染料混合物的毒性。