[HTML][HTML] Is bioelectrochemical energy production from wastewater a reality? Identifying and standardising the progress made in scaling up microbial electrolysis cells

D Leicester, J Amezaga, E Heidrich - Renewable and Sustainable Energy …, 2020 - Elsevier
Bioelectrochemical systems (BESs) have the potential to produce energy from wastewater.
However, they are far from ready to be applied into industry. The development of large and …

Bioelectrochemical approaches for removal of sulfate, hydrocarbon and salinity from produced water

P Jain, M Sharma, P Dureja, PM Sarma, B Lal - Chemosphere, 2017 - Elsevier
Produced water (PW) is the largest liquid waste stream generated during the exploration
and drilling process of both the conventional hydrocarbon based resources like crude oil …

Bidirectional microbial electron transfer: Switching an acetate oxidizing biofilm to nitrate reducing conditions

N Pous, AA Carmona-Martínez, A Vilajeliu-Pons… - Biosensors and …, 2016 - Elsevier
Up to date a few electroactive bacteria embedded in biofilms are described to catalyze both
anodic and cathodic reactions in bioelectrochemical systems (ie bidirectional electron …

Cathodic groundwater denitrification with a bioelectrochemical system

D Molognoni, M Devecseri, D Cecconet… - Journal of Water …, 2017 - Elsevier
Nitrate-contaminated groundwater has become a common issue during the last decades,
due to the increased levels of detected contamination, the related potential health hazards …

Microbial fuel cells: a comprehensive review for beginners

AS Vishwanathan - 3 Biotech, 2021 - Springer
Microbial fuel cells (MFCs) have shown immense potential as a one-stop solution for three
major sustainability issues confronting the world today—energy security, global warming …

Effect of the bio-inspired modification of low-cost membranes with TiO2: ZnO as microbial fuel cell membranes

RB Soria, BD Chinchin, D Arboleda, Y Zhao, P Bonilla… - Chemosphere, 2022 - Elsevier
Microbial fuel cells (MFCs) are a novel technique for converting biodegradable materials
into electricity. In this study, the efficiency of mixed crystal (TiO 2: ZnO) as a membrane …

[HTML][HTML] Opportunities for visual techniques to determine characteristics and limitations of electro-active biofilms

J Pereira, S De Nooy, T Sleutels, A Ter Heijne - Biotechnology Advances, 2022 - Elsevier
Optimization of bio-electrochemical systems (BESs) relies on a better understanding of
electro-active biofilms (EABfs). These microbial communities are studied with a range of …

Bioelectrochemical treatment of table olive brine processing wastewater for biogas production and phenolic compounds removal

A Marone, AA Carmona-Martínez, Y Sire, E Meudec… - Water research, 2016 - Elsevier
Industry of table olives is widely distributed over the Mediterranean countries and generates
large volumes of processing wastewaters (TOPWs). TOPWs contain high levels of organic …

Electrical current generation in microbial electrolysis cells by hyperthermophilic archaea Ferroglobus placidus and Geoglobus ahangari

YD Yilmazel, X Zhu, KY Kim, DE Holmes, BE Logan - Bioelectrochemistry, 2018 - Elsevier
Few microorganisms have been examined for current generation under thermophilic (40–
65° C) or hyperthermophilic temperatures (≥ 80° C) in microbial electrochemical systems …

[HTML][HTML] Design and analysis of a low-cost potentiostat for application with microbial electrochemical sensors

A Hill, S Tait, P Harris, C Baillie, B Virdis, BK McCabe - Electrochimica Acta, 2023 - Elsevier
Potentiostats are often limited to relatively costly laboratory-based analysis, which limits their
access and application by researchers and practitioners, including for mobile in-field …
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