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评估石墨、石墨烯及亲水处理石墨烯电极以改善微生物燃料电池中的发电及废水处理效果

Assessment of Graphite, Graphene, and Hydrophilic-Treated Graphene Electrodes to Improve Power Generation and Wastewater Treatment in Microbial Fuel Cells.

作者信息

Borja-Maldonado Fátima, López Zavala Miguel Ángel

机构信息

Tecnologico de Monterrey, School of Engineering and Sciences, Avenue Eugenio Garza Sada 2501, Monterrey 64849, Mexico.

出版信息

Bioengineering (Basel). 2023 Mar 19;10(3):378. doi: 10.3390/bioengineering10030378.

Abstract

In this study, graphite, graphene, and hydrophilic-treated graphene electrodes were evaluated in a dual-chamber microbial fuel cell (DC-MFC). Free-oxygen conditions were promoted in anodic and cathodic chambers. Hydrochloric acid at 0.1 M and pH 1.1 was used as a catholyte, in addition to deionized water in the cathodic chamber. Domestic wastewater was used as a substrate, and a DuPontTM Nafion 117 membrane was used as a proton exchange membrane. The maximum power density of 32.07 mW·m-2 was obtained using hydrophilic-treated graphene electrodes and hydrochloric acid as catholyte. This power density was 1.4-fold and 32-fold greater than that of graphene (22.15 mW·m-2) and graphite (1.02 mW·m-2), respectively, under the same operational conditions. In addition, the maximum organic matter removal efficiencies of 69.8% and 75.5% were obtained using hydrophilic-treated graphene electrodes, for hydrochloric acid catholyte and deionized water, respectively. Therefore, the results suggest that the use of hydrophilic-treated graphene functioning as electrodes in DC-MFCs, and hydrochloric acid as a catholyte, favored power density when domestic wastewater is degraded. This opens up new possibilities for improving DC-MFC performance through the selection of suitable new electrode materials and catholytes.

摘要

在本研究中,对石墨、石墨烯和亲水处理的石墨烯电极在双室微生物燃料电池(DC-MFC)中进行了评估。在阳极室和阴极室中促进了自由氧条件。除了阴极室中的去离子水外,0.1 M、pH值为1.1的盐酸用作阴极电解液。生活污水用作底物,杜邦TM Nafion 117膜用作质子交换膜。使用亲水处理的石墨烯电极和盐酸作为阴极电解液时,获得的最大功率密度为32.07 mW·m-2。在相同操作条件下,该功率密度分别比石墨烯(22.15 mW·m-2)和石墨(1.02 mW·m-2)的功率密度高1.4倍和32倍。此外,使用亲水处理的石墨烯电极,分别以盐酸作为阴极电解液和去离子水时,最大有机物去除效率分别为69.8%和75.5%。因此,结果表明,在DC-MFC中使用亲水处理的石墨烯作为电极,以及使用盐酸作为阴极电解液,在降解生活污水时有利于提高功率密度。这为通过选择合适的新型电极材料和阴极电解液来提高DC-MFC性能开辟了新的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35cf/10045180/19bb538b5f02/bioengineering-10-00378-g001.jpg

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