نتایج جستجو برای: microbial electrolysis cell mec

تعداد نتایج: 1784470  

Journal: :Environmental technology 2013
Minghua Zhou Jie Yang Hongyu Wang Tao Jin Dake Xu Tingyue Gu

Today's global energy crisis requires a multifaceted solution. Bioenergy is an important part of the solution. The microbial fuel cell (MFC) technology stands out as an attractive potential technology in bioenergy. MFCs can convert energy stored in organic matter directly into bioelectricity. MFCs can also be operated in the electrolysis mode as microbial electrolysis cells to produce bioproduc...

2017
Ananda Rao Hari Krishnaveni Venkidusamy Krishna P. Katuri Samik Bagchi Pascal E. Saikaly

Microbial electrolysis cells (MECs) are widely considered as a next generation wastewater treatment system. However, fundamental insight on the temporal dynamics of microbial communities associated with MEC performance under different organic types with varied loading concentrations is still unknown, nevertheless this knowledge is essential for optimizing this technology for real-scale applicat...

Journal: :Water research 2009
Rachel C Wagner John M Regan Sang-Eun Oh Yi Zuo Bruce E Logan

The production of a useful and valuable product during swine wastewater treatment, such as hydrogen gas, could help to lower treatment costs. Hydrogen can theoretically be produced from wastewater by electrohydrogenesis in a microbial electrolysis cell (MEC) or by fermentation. Using a single-chamber MEC with a graphite-fiber brush anode, hydrogen gas was generated at 0.9-1.0 m(3) m(-3) day(-1)...

Journal: :Catalysts 2022

Conventional anaerobic digestion is currently challenged by limited degradability and low methane production. Herein, it proposed that magnetic nanoparticles (Fe3O4-NPs) bioelectrochemical systems can be employed for the improvement of organic content degradation. In this study, effect electrode configuration was examined through application a system Fe3O4-NPs in (AD). A microbial electrolysis ...

Journal: :Environmental science & technology 2014
Krishna P Katuri Craig M Werner Rodrigo J Jimenez-Sandoval Wei Chen Sungil Jeon Bruce E Logan Zhiping Lai Gary L Amy Pascal E Saikaly

A new anaerobic treatment system that combined a microbial electrolysis cell (MEC) with membrane filtration using electrically conductive, porous, nickel-based hollow-fiber membranes (Ni-HFMs) was developed to treat low organic strength solution and recover energy in the form of biogas. This new system is called an anaerobic electrochemical membrane bioreactor (AnEMBR). The Ni-HFM served the du...

Journal: :Environmental science. Processes & impacts 2014
B D Shoener I M Bradley R D Cusick J S Guest

The negative energy balance of wastewater treatment could be reversed if anaerobic technologies were implemented for organic carbon oxidation and phototrophic technologies were utilized for nutrient recovery. To characterize the potential for energy positive wastewater treatment by anaerobic and phototrophic biotechnologies we performed a comprehensive literature review and analysis, focusing o...

Journal: :Bioelectrochemistry 2017
Nicole LaBarge Yasemin Dilsad Yilmazel Pei-Ying Hong Bruce E Logan

Microbial electrolysis cells (MECs) can generate methane by fixing carbon dioxide without using expensive catalysts, but the impact of acclimation procedures on subsequent performance has not been investigated. Granular activated carbon (GAC) was used to pre-enrich electrotrophic methanogenic communities, as GAC has been shown to stimulate direct transfer of electrons between different microbia...

Journal: :Indian journal of experimental biology 2013
Pratima Gupta Piyush Parkhey Komal Joshi Anjali Mahilkar

Anaerobic bacteria were isolated from industrial wastewater and soil samples and tested for exoelectrogenic activity by current production in double chambered microbial fuel cell (MFC), which was further transitioned into a single chambered microbial electrolytic cell to test hydrogen production by electrohydrogenesis. Of all the cultures, the isolate from industrial water sample showed the max...

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