[PDF][PDF] Influence of Substrate and Salinity on Electricity Production by Deep-Sea Strain Shewanella sp DS1

BA Wang, XH Chen, FC Xu, W Wang, XJ Xiong… - Power Energy Eng …, 2010 - file.scirp.org
The influences of substrate, concentration and salinity on electricity production in MFCs
were investigated. Deep-sea exoelectrogenic bacterium Shewanella sp. DS1 could not …

Current Production by a Deep-Sea Strain Shewanella sp. DS1

D Wei, X Zhang - Current microbiology, 2007 - Springer
Electricity-generating bacteria have attracted intensive studies in recent years as an
important resource for energy generation. In this investigation, a bacterial isolate capable of …

[HTML][HTML] Electricity production in two-chamber microbial fuel cells using exoelectrogenic Shewanella sp. isolated from sediments of the Caspian Sea

M Mohseni - Cellular and Molecular Research (Iranian Journal of …, 2017 - cell.ijbio.ir
A microbial fuel cell is a bioelectrochemical system that converts chemical energy in organic
compounds to electrical energy through catalytic reactions of microorganisms under …

Influence of environmental factors on electricity production by microbial fuel cell inoculation Shewanella baltica

P Liang, HY Wang, X Huang, XX Cao… - Huan Jing ke Xue …, 2009 - europepmc.org
The influences of the anodic substance, concentration, pH and temperature on the electricity
production by MFCs were discussed. The lactic sodium was better than acetic sodium or …

Shewanella algae relatives capable of generating electricity from acetate contribute to coastal-sediment microbial fuel cells treating complex organic matter

Y Inohana, S Katsuya, R Koga, A Kouzuma… - Microbes and …, 2020 - jstage.jst.go.jp
To identify exoelectrogens involved in the generation of electricity from complex organic
matter in coastal sediment (CS) microbial fuel cells (MFCs), MFCs were inoculated with CS …

Shewanella oneidensis MR-1 compared to mixed cultures for electricity production in four different microbial fuel cell configurations

VJ Watson - 2009 - etda.libraries.psu.edu
Bacteria can produce power in microbial fuel cells (MFCs) by converting organic matter into
electricity. As an added benefit, the organic matter used in the system can come from waste …

Electricity generation at high ionic strength in microbial fuel cell by a newly isolated Shewanella marisflavi EP1

J Huang, B Sun, X Zhang - Applied microbiology and biotechnology, 2010 - Springer
Increasing the ionic strength of the electrolyte in a microbial fuel cell (MFC) can remarkably
increase power output due to the reduction of internal resistance. However, only a few …

Bioelectricity generation from treatment of petroleum refinery wastewater with simultaneous seawater desalination in microbial desalination cells

S Sevda, IM Abu-Reesh, H Yuan, Z He - Energy Conversion and …, 2017 - Elsevier
Petroleum refinery wastewater (PRW) contains a high concentration of pollutants and may
pose serious environmental risks. Conventional treatment methods of PRW are energy …

Microbial desalination cell: a sustainable approach for brackish water desalination and wastewater treatment with bioelectricity generation

S Sevda, Z He, I Abureesh - Qatar Foundation Annual Research …, 2014 - qscience.com
MICROBIAL DESALINATION CELL: A SUSTAINABLE APPROACH FOR BRACKISH
WATER DESALINATION AND WASTEWATER TREATMENT WITH BIOELECTRICITY …

[HTML][HTML] Influence of substrate on electricity generation of Shewanella loihica PV-4 in microbial fuel cells

W Wu, F Yang, X Liu, L Bai - Microbial cell …, 2014 - microbialcellfactories.biomedcentral …
The substrate, serving as carbon and energy source, is one of the major factors affecting the
performance of microbial fuel cells (MFCs). We utilized BIOLOG system to rapidly screen …