gnj.002926 - Electricity Generation and Color Removal at Sulfate-Reducing Conditions in Micro
• 0
gnj.001925 - Evaluvation of Paper recycling Wastewater Treatment Accompanied by power generat
• 0
gnj.06011 - Exploring the Role of Microbial Fuel Cells in Sustainable Wastewater Treatment a
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Discover Sustainability • 2025
gnc2021.00293 - The effect of catalysts MnO2 activated carbon and fly ash on the performance of
• 0
gjpas.v26i2.5 - Application of some selected yeasts isolates in bioelectricity generation using
• 0
fsci.2026.1688727 - Waste to value microbial electrochemical technologies for sustainable water mate
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Water • 2026
fsab2018.v1.i2.6 - Effect of the Electrodes Type on the Energy Efficiency of Microbial Fuel Cells
• 0
Biophotovoltaics Green Power Generation From Sunlight and Water
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Frontiers in Microbiology • 2019
Biophotovoltaics is a relatively new discipline in microbial fuel cell research. The basic idea is the conversion of light energy into electrical energy using photosynthetic microorganisms. The microbes will use their photosynthetic apparatus and the incoming light to split the water molecule. The generated protons and electrons are harvested using a bioelectrochemical system. The key challenge is the extraction of electrons from the microbial electron transport chains into a solid-state anode. On the cathode, a corresponding electrochemical counter reaction will consume the protons and electrons, e.g., through the oxygen reduction to water, or hydrogen formation. In this review, we are aiming to summarize the current state of the art and point out some limitations. We put a specific emphasis on cyanobacteria, as these microbes are considered future workhorses for photobiotechnology and are currently the most widely applied microbes in biophotovoltaics research. Current progress in biophotovoltaics is limited by very low current outputs of the devices while a lack of comparability and standardization of the experimental set-up hinders a systematic optimization of the systems. Nevertheless, the fundamental questions of redox homeostasis in photoautotrophs and the potential to directly harvest light energy from a highly efficient photosystem, rather than through oxidation of inefficiently produced biomass are highly relevant aspects of biophotovoltaics.
A revolving algae biofilm based photosynthetic microbial fuel cell for simultane
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Identification of Electrode Respiring Hydrocarbonoclastic Bacterial Strain Steno
• 0
RETRACTED Treatment mechanism of hexavalent chromium wastewater in constructed w
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Heliyon • 2024
fjs-2024-0804-2684 - PERFORMANCE ASSESSMENT OF A SINGLE CHAMBER MICROBIAL FUEL CELL MFC
• 0
Design and application of enhanced extended state observer for improving bus vol
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Journal of Occupational Health Psychology • 2016
Biofilm Engineering Approaches for Improving the Performance of Microbial Fuel C
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Microbial Biotechnology • 2020
fcomp.2024.1447745 - Time-series forecasting of microbial fuel cell energy generation using deep lear
• 0
Synergistic advancements in sewage-driven microbial fuel cells novel carbon nano
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Applied Water Science • 2016
Iron OxideModified Carbon Electrode and Sulfate-Reducing Bacteria for Simultaneo
• 0
esj-2019-01174 - Decreasing Microbial Fuel Cell Start-Up Time Using Multi-Walled Carbon Nanotubes
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American journal of biochemistry & biotechnology/American journal of biochemistry and biotechnology • 2021
ejmse.2021.06.02.089 - GUAR GUM HYDROGEL MICROBIAL FUEL CELL USING BMEGATERIUM
• 0
ert.881517 - Investigation of electricity generation performance of grape marc in membrane-le
[object Object], [object Object], [object Object]
Waste Management • 2025
eer.2024.135 - Promotion and mechanism of defective hematite on the power generation and phenan
• 0
eco-tech.2010.097 - Bioelectricity Generation From Synthetic Wastewater Treatment in a Membrane-Less
• 0
ejcs.6121.3763 - Enhanced Electrochemical Treatment of Phenanthrene-polluted Soil using Microbial
• 0
e.v19i1.6479 - The Effect of Adding Activated Sludge and Types of Series Circuit Systems Microb
• 0
d3gc01548c - Efficient algal lipid extraction via green bio-electro- Fenton process and its c
[object Object], [object Object], [object Object] et al.
Heliyon • 2024
d210450 - Isolation and selection of cellulolytic bacteria from rice straw for consortium
[object Object], [object Object], [object Object]
Journal of Tropical Life Science • 2023
d1ra08487a - Bio-electrochemical frameworks governing microbial fuel cell performance technic
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The Science of The Total Environment • 2023
coj.v8i2.55742 - Performance Enhancement of Microbial Fuel Cells from Fishery Wastewater Using Bo
• 0
cset.v1i1.338 - Electric Potential Value of Microbial Fuel Cell Technology from Chinese Food Res
• 0
bjrst.6163.2024 - Simulation of Hybrid Microbial Fuel Cell-Adsorption System Performance Effect of
• 0
briac124.56015609 - Electricity Generation from Hospital Wastewater in Microbial Fuel Cell using Rad
• 0
bj-v39n0a2023-68225 - Analysis and study of the bioelectric production potential of actinomycete and m
[object Object], [object Object], [object Object] et al.
African Journal of Biomedical Research • 2024
bitlisfen.1491127 - A Multi-Input Multi-Output Energy Harvesting Architecture for Microbial Fuel Cel
• 0
biotechstudies.1784164 - Effects of arsenate on electricity generation and microbial communities in singl
• 0
bioedupat.v3.i1.pp90-94 - Potential of vegetable waste as alternative production bioelectricity
• 0
biocons.v6i1.1808 - Pemanfaatan Limbah Cair Tempe dengan Penambahan Lactobacillus acidophilus Menggu
• 0
bcse.v38i5.22 - Investigation of the electrical potential of whey using a river sediment microbi
• 0
bcrec.20259 - Performance of a Batch Operation Microbial Fuel Cell MFC with Cobalt Micronutrie
• 0
asset.v6i2.17931 - Optimization of Biogas Liquid Waste from Livestock Manure as a Source of Renewab
• 0
art2020163 - Electricity Production Potential of Microbial Fuel Cell from Sewage Sludge
[object Object], [object Object], [object Object] et al.
International Journal of Science and Research (IJSR) • 2021