An Evaluation of the Performance and Economics of Membranes and Separators in Single Chamber Microbial Fuel Cells Treating Domestic Wastewater.

PubWeight™: 0.75‹?›

🔗 View Article (PMC 4548946)

Published in PLoS One on August 25, 2015

Authors

Beate Christgen1, Keith Scott2, Jan Dolfing1, Ian M Head1, Thomas P Curtis1

Author Affiliations

1: School of Civil Engineering and Geosciences, Newcastle University, Newcastle upon Tyne, United Kingdom.
2: School of Chemical Engineering and Advanced Materials, Newcastle University, Newcastle upon Tyne, United Kingdom.

Articles cited by this

Microbial fuel cells: methodology and technology. Environ Sci Technol (2006) 4.20

State of understanding of nafion. Chem Rev (2004) 3.70

Battery separators. Chem Rev (2004) 2.93

Electricity generation using an air-cathode single chamber microbial fuel cell in the presence and absence of a proton exchange membrane. Environ Sci Technol (2004) 1.68

Towards practical implementation of bioelectrochemical wastewater treatment. Trends Biotechnol (2008) 1.63

Increased power generation in a continuous flow MFC with advective flow through the porous anode and reduced electrode spacing. Environ Sci Technol (2006) 1.34

Challenges and constraints of using oxygen cathodes in microbial fuel cells. Environ Sci Technol (2006) 1.22

Effects of membrane cation transport on pH and microbial fuel cell performance. Environ Sci Technol (2006) 1.17

Power generation using different cation, anion, and ultrafiltration membranes in microbial fuel cells. Environ Sci Technol (2007) 1.11

Determination of the internal chemical energy of wastewater. Environ Sci Technol (2010) 1.06

Electrolytic oxygen generation for subsurface delivery: effects of precipitation at the cathode and an assessment of side reactions. Water Res (2002) 1.00

The suitability of monopolar and bipolar ion exchange membranes as separators for biological fuel cells. Environ Sci Technol (2008) 0.89

Recent advances in the separators for microbial fuel cells. Bioresour Technol (2010) 0.88

Separator characteristics for increasing performance of microbial fuel cells. Environ Sci Technol (2009) 0.86

Modeling the ion transfer and polarization of ion exchange membranes in bioelectrochemical systems. Bioelectrochemistry (2009) 0.81

Examination of microbial fuel cell start-up times with domestic wastewater and additional amendments. Bioresour Technol (2011) 0.81

Improved performance of single-chamber microbial fuel cells through control of membrane deformation. Biosens Bioelectron (2009) 0.79