Microorganisms in sediment microbial fuel cells: Ecological niche, microbial response, and environmental function

X Yang, S Chen - Science of The Total Environment, 2021 - Elsevier
A sediment microbial fuel cell (SMFC) is a device that harvests electrical energy from
sediments rich in organic matter. SMFCs have been attracting increasing amounts of interest …

Sediment microbial fuel cells for bioremediation of pollutants and power generation: a review

HZ Hamdan, DA Salam - Environmental Chemistry Letters, 2023 - Springer
Worldwide pollution of almost all natural media by toxic compounds is a major public health
issue requiring the development of advanced remediation techniques such as sediment …

Extracellular electron uptake by autotrophic microbes: physiological, ecological, and evolutionary implications

D Gupta, MS Guzman, A Bose - … Official Journal of the Society for …, 2020 - academic.oup.com
Microbes exchange electrons with their extracellular environment via direct or indirect
means. This exchange is bidirectional and supports essential microbial oxidation–reduction …

[PDF][PDF] Trends and prospects of sediment microbial fuel cells as sustainable aquatic ecosystem remediation technology

S Son, SP Jung - Journal of Korean Society of Environmental …, 2022 - researchgate.net
A sediment microbial fuel cell (SMFC) is a system in which MFC is applied to a sediment
layer of an aqueous system for water purification. SMFCs can remove contaminants from …

Complete pentachlorophenol biodegradation in a dual-working electrode bioelectrochemical system: Performance and functional microorganism identification

X Cai, J Li, F Guan, X Luo, Z Yu, Y Yuan - Water Research, 2023 - Elsevier
Bioelectrochemical system (BES) can effectively promote the reductive dechlorination of
chlorophenols (CPs). However, the complete degradation of CPs with sequential …

Regulating the dechlorination and methanogenesis synchronously to achieve a win-win remediation solution for γ-hexachlorocyclohexane polluted anaerobic …

J Cheng, S Li, X Yang, X Huang, Z Lu, J Xu, Y He - Water Research, 2021 - Elsevier
The wish for rapid degradation of chlorinated organic pollutants along with the increase
concern with respect to greenhouse effect and bioenergy methane production have created …

Anodic Respiration of Vibrio natriegens in a Bioelectrochemical System

A Gemünde, J Gail, D Holtmann - ChemSusChem, 2023 - Wiley Online Library
Vibrio natriegens promises to be a new standard biotechnological working organism since it
grows extraordinarily fast, its productivity surpasses E. coli by far, and genomic tools are …

Efficient natural plasmid transformation of Vibrio natriegens enables zero-capital molecular biology

DA Specht, TJ Sheppard, F Kennedy, S Li… - PNAS …, 2024 - academic.oup.com
The fast-growing microbe Vibrio natriegens is capable of natural transformation where it
draws DNA in from media via an active process under physiological conditions. Using an …

Enrichment of salt-tolerant CO2–fixing communities in microbial electrosynthesis systems using porous ceramic hollow tube wrapped with carbon cloth as cathode …

MF Alqahtani, S Bajracharya, KP Katuri, M Ali… - Science of the Total …, 2021 - Elsevier
Microbial inocula from marine origins are less explored for CO 2 reduction in microbial
electrosynthesis (MES) system, although effective CO 2–fixing communities in marine …

A hybrid extracellular electron transfer pathway enhances the survival of Vibrio natriegens

BE Conley, MT Weinstock, DR Bond… - Applied and …, 2020 - Am Soc Microbiol
Vibrio natriegens is the fastest-growing microorganism discovered to date, making it a useful
model for biotechnology and basic research. While it is recognized for its rapid aerobic …