The objectives of this work are to investigate the use of different eco-technologies as strategies for immobilization of redox enzymes on conductive carbon-based felts, to produce bio-functionalized textiles for a future use in sustainable applications while maintaining low environmental impact. Methods using cold remote plasma, electrically conductive biocompatible coating (PEDOT:PSS) and natural crosslinker for the enzyme (genipin) were tested and showed to be efficient in the intended applications. The enzymatic activity of the used glucose oxidase was maintained for multiple number of uses, and showed potential in sustainable wastewater treatment applications in bio-Fenton and bio-electro-Fenton setups.
Fund:
Project supported by Erasmus Mundus joint Doctorate Program for Sustainable Management and Design for Textiles (SMDTex) [grant number 2015-1594/001-001-EMJD], and Chinese Scholarship Council (CSC) [grant number 2018CEU013907].
May Kahoush,Nemeshwaree Behary,Jinping Guan, et al. Eco-Technologies for Immobilizing Redox Enzymes on Conductive Textiles, for Sustainable Development[J]. Journal of Fiber Bioengineering and Informatics, 2022, 15(1): 45-54.