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A milk-processing plant was drafted as a distinctive staple industry amid the diverse field of industries. Dairy products such as yogurt, cheese, milk powder, etc., consume a huge amount of water not only for product processing, but also for sanitary ...
Anusha Ganta, Yasser Bashir, Sovik Das
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Innovative bioreactor designs for enhancing electron transfer, mass transfer, and product yields in microbial electrosynthesis [PDF]
Microbial electrosynthesis (MES), a form of bioelectrochemical system (BES) is an emerging versatile platform for the electrobioconversion of CO2 and diverse array of organic wastes into fuels and chemicals. However, its practical deployment suffers from
Swabhiman Mohanty +6 more
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Microbial Electrochemical Systems: Principles, Construction and Biosensing Applications [PDF]
Microbial electrochemical systems are a fast emerging technology that use microorganisms to harvest the chemical energy from bioorganic materials to produce electrical power. Due to their flexibility and the wide variety of materials that can be used as a source, these devices show promise for applications in many fields including energy, environment ...
Rabeay Y. A. Hassan +2 more
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Trends and Prospects of Sediment Microbial Fuel Cells as Sustainable Aquatic Ecosystem Remediation Technology [PDF]
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 sediments and decompose organic matter while simultaneously producing electrical
Sunghoon Son, Sokhee P. Jung
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Trends and perspectives of microbial electrolysis cell technology for ultimate green hydrogen production [PDF]
Currently, gray hydrogen and blue hydrogen are widely recognized as renewable energy, but in reality, they are made from fossil fuels. The most important task to achieve the hydrogen-based society is the development of economic green hydrogen production ...
Bonyoung Koo, Sokhee P. Jung
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Oxygen-reducing bidirectional microbial electrodes: A mini-review
Aerobic bidirectional microbial electrodes (ABME) oxidize matter in anodic conditions (substrate supply, no oxygen) and reduce oxygen in cathodic conditions (oxygen supply, no substrate).
Morgane Hoareau +2 more
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Redox Mediators in Microbial Electrochemical Systems
AbstractRedox mediators are commonly used in microbial electrochemical systems to enable or enhance the electron transfer between microorganisms and electrodes. In recent studies, new insights into the mechanism of mediated extracellular electron transfer were gained, but some questions remain unanswered.
André Gemünde +4 more
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Microbial electrosynthesis is a promising solution for removing nitrate from water with a low concentration of electron donors. Three single-chamber microbial electrosynthesis reactors were constructed and operated for almost 2 years.
Rauno Lust +6 more
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Possibilities for extremophilic microorganisms in microbial electrochemical systems [PDF]
Microbial electrochemical systems exploit the metabolism of microorganisms to generate electrical energy or a useful product. In the past couple of decades, the application of microbial electrochemical systems has increased from the use of wastewaters to produce electricity to a versatile technology that can use numerous sources for the extraction of ...
Dopson, Mark +2 more
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Sensitivity to Oxygen in Microbial Electrochemical Systems Biofilms [PDF]
The formation and bioelectric performance of anode biofilms in microbial electrochemical systems (MESs) are sensitive to oxygen. Investigating the temporal-spatial structure of anode biofilms will help elucidate the interfaces between oxygen and bacteria, thereby facilitating the applications of MESs in wastewater treatment and energy recovery.
Jiawei Yang +4 more
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