微生物燃料电池
生物膜
阳极
生物反应器
介电谱
聚苯胺
废水
寡养单胞菌
材料科学
化学需氧量
胞外聚合物
核化学
化学
化学工程
制浆造纸工业
电化学
电极
细菌
假单胞菌
废物管理
生物
聚合物
复合材料
有机化学
物理化学
遗传学
工程类
聚合
作者
Mohammad Danish Khan,Shamas Tabraiz,Ravikumar Thimmappa,Da Li,Abdul Hakeem Anwer,Keith Scott,Mohammad Zain Khan,Eileen Hao Yu,Mohammad Zain Khan,Eileen Hao Yu
标识
DOI:10.3389/fceng.2022.877255
摘要
This study investigated the advantages of using low-cost polyaniline-fabricated stainless steel fiber felt anode-based microbial fuel cells (PANI-SSFF-MFCs) for azo dye acid blue 29 (AB29) containing wastewater treatment integrated with an aerobic bioreactor. The findings of electrochemical impedance spectroscopy (EIS) and polarization studies showed that the PANI–SSFF anode considerably decreased the MFC internal resistance. The highest power density of 103 ± 3.6 mW m −2 was achieved by PANI-SSFF-MFCs with a decolorization efficiency of 93 ± 3.1% and a start-up time of 13 days. The final chemical oxygen demand (COD) removal efficiencies for integrated PANI–SSFF–MFC–bioreactor and SSFF–MFC–bioreactor set-ups were 92.5 ± 2% and 80 ± 2%, respectively. Based on 16S rRNA gene sequencing, a substantial microbial community change was observed in MFCs. The majority of sequences were from the Proteobacteria phylum, accounting for 72% and 55% in PANI–SSFF–anodic biofilm and suspension, respectively, and 58 and 45% in SSFF–anodic biofilm and suspension, respectively. The relative abundance of the seven most abundant genera ( Pseudomonas, Acinetobacter , Stenotrophomonas, Geothrix , Dysgonomonas, Shinella , and Rhizobiales ) was higher in PANI–SSFF–MFCs (46.1% in biofilm and 55.4% in suspension) as compared to SSFF–MFC (43% in biofilm and 40.8% in suspension) which predominantly contributed to the decolorization of AB29 and/or electron transfer. We demonstrate in this work that microbial consortia acclimated to the MFC environment and PANI-fabricated anodes are capable of high decolorization rates with enhanced electricity production. A combined single-chamber MFC (SMFC)-aerobic bioreactor operation was also performed in this study for the efficient biodegradation of AB29.
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