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References
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Aulenta, F., Verdini, R., Zeppilli, M., Zanaroli, G., Fava, F., Rossetti, S. and Majone, M. (2013), "
Electrochemical stimulation of microbial cis-dichloroethene (cis-DCE) oxidation by an ethene-assimilating culture
",
New Biotechnology
,
10.1016/j.nbt.2013.04.003
.
2013/5/10
Goldbeck, Cheryl P. and , et al (2013), "
Tuning promoter strengths for improved synthesis and function of electron conduits in Escherichia coli
",
ACS Synthetic Biology
.
2013/2/18
Aulenta, F., Rossetti, S., Amalfitano, S., Majone, M. and Tandoi, V. (2013), "
Conductive magnetite nanoparticles accelerate the microbial reductive dechlorination of trichloroethene by promoting interspecies electron transfer processes
",
ChemSusChem
,
6(3)
: 433-436.
2013/1/5
Angenent, L.T. and Rosenbaum, M.A. (2013), "
Microbial electrocatalysis to guide biofuel and biochemical bioprocessing
",
Biofuels
.
2013/1/21
Goldbeck, Cheryl P., Jensen, Heather M., TerAvest, Michaela A., Yancey Appling, Nicole Beedle,, Hepler, Matt, Cambray, Guillaume, Mutalik, Vivek, Angenent, Largus T. and Ajo-Franklin, Caroline M. (2013), "
Tuning promoter strengths for improved synthesis and function of electron conduits in Escherichia coli
",
ACS Synthetic Biology
.
2013/1/21
Villano, M., Scardala, S., Aulenta, F. and Majone, M. (2013), "
Carbon and nitrogen removal and enhanced methane production in a microbial electrolysis cell
",
Bioresource Technology
,
130
: 366 - 371.
2013/1/1
Aulenta, F., Catapano, L., Snip, L., Villano, M. and Majone, M. (2012), "
Linking bacterial metabolism to graphite cathodes: Electrochemical insights into the H 2-producing capability of desulfovibrio sp.
",
ChemSusChem
,
5
,
6
: 1080-1085.
2013/1/1
Villano, M., Aulenta, F. and Majone, M. (2012), "
Perspectives of biofuels production from renewable resources with bioelectrochemical systems
",
Asia-Pacific Journal of Chemical Engineering
,
7
,
SUPPL. 3
: S263-S274.
2013/1/1
Di Battista, A., Verdini, R., Rossetti, S., Pietrangeli, B., Majone, M. and Aulenta, F. (2012), "
CARD-FISH analysis of a TCE-dechlorinating biocathode operated at different set potentials
",
New Biotechnology
,
30
,
1
: 33-38.
2013/1/1
Gil-Carrera, L., Escapa, A., Mehta, P., Santoyo, G., Guiot, S. R., Morán, A. and Tartakovsky, B. (2013), "
Microbial electrolysis cell scale-up for combined wastewater treatment and hydrogen production
",
Bioresource Technology
,
130
,
February 2013
: 584–591.
2013-01-30
Gil-Carrera, L., Mehta, P., Escapa, A., Morán, A., García, V., Guiot, S. R. and Tartakovsky, B. (2011), "
Optimizing the electrode size and arrangement in a microbial electrolysis cell
",
Bioresource Technology
,
102
: 9593–9598.
2013-01-30
Escapa, A., Gómez, X., Tartakovsky, B. and Morán, A. (2012), "
Estimating microbial electrolysis cell (MEC) investment costs in wastewater treatment plants: Case study
",
International Journal of Hydrogen Energy
,
37
,
24
: 18641-18653.
2012/12/12
TerAvest, M.A and Angenent, L.T (2013), "
Engineering bacterial biocomputers using a top-down approach and dynamic genetic circuits
",
International Journal of Unconventional Computing
.
2012/11/09
TerAvest, M.A, Li, Z and Angenent, L.T (2012), "
Development of bacteria-based Cellular Computing Circuits for sensing and control in biological systems (Chapter 14, pp. 265-277)
",
Biomolecular information processing: from logic systems to smart sensors and actuators
.
2012/11/09
Friedman, E.S, TerAvest, M.A, Venkataraman, A. and Angenent, L.T (2012), "
Enzymatic and Microbial Electrochemical Systems
",
Encyclopedia of Agricultural, Food, and Biological Engineering
.
2012/11/09
Chiranjeevi, P., Mohana Krishna, G. and Venkata Mohan, S. (2012), "
Rhizosphere mediated electrogenesis with the function of anode placement for harnessing bioenergy through CO2 sequestration
",
Bioresource Technology
,
124
: 364-370.
2012/09/17
Rashmi Chandra, Venkata Subhash, G. and Venkata Mohan, S. (2012), "
Mixotrophic operation of photo-bioelectrocatalytic fuel cell under anoxygenic microenvironment enhances the light dependent bioelectrogenic activity
",
Bioresource Technology
,
109
: 46-56.
2012/09/11
Mohanakrishna, G., Krishna Mohan, S. and Venkata Mohan, S. (2012), "
Carbon based nanotubes and nanopowder as impregnated electrode structures for enhanced power generation: Evaluation with real field wastewater
",
Applied Energy
,
95
: 31-37.
2012/09/11
Srikanth, S. and Venkata Mohan, S. (2012), "
Change in electrogenic activity of the microbial fuel cell (MFC) with the function of biocathode microenvironment as terminal electron accepting condition: Influence on overpotentials and bio-electro kinetics
",
Bioresource Technology
,
119
: 242-251.
2012/09/11
Srikanth, S. and Venkata Mohan, S. (2012), "
Influence of terminal electron acceptor availability to the anodic oxidation on the electrogenic activity of microbial fuel cell (MFC)
",
Bioresource Technology
,
123
: 471-479.
2012/09/11
Srikanth, S., Venkateswara Reddy, M. and Venkata Mohan, S. (2012), "
Microaerophilic microenvironment at biocathode enhances electrogenesis with simultaneous synthesis of polyhydroxyalkanoates (PHA) in bioelectrochemical system (BES)
",
Bioresource Technology
.
2012/09/11
Sleutels, T.H.J.A., Ter Heijne, A., Buisman, C.J.N. and Hamelers, H.V.M. (2012), "
Bioelectrochemical Systems: An Outlook for PracticalApplications
",
ChemSusChem
,
5
,
6
: 1012-1019.
2012/08/01
Premier, G. C., Kim, J. R., Massanet-Nicolau, J., Kyazze, G., Esteves, S. R. R., Penumathsa, B. K. V., Rodr챠guez, J., Maddy, J., Dinsdale, R. M. and Guwy, A. J. (2012), "
Integration of biohydrogen, biomethane and bioelectrochemical systems
",
Renewable Energy
,
0
.
2012/05/16
Kim, J. R., Boghani, H. C., Amini, N., Aguey-Zinsou, K.-F., Michie, I., Dinsdale, R. M., Guwy, A. J., Guo, Z. X. and Premier, G. C. (2012), "
Porous anodes with helical flow pathways in bioelectrochemical systems: The effects of fluid dynamics and operating regimes
",
Journal of Power Sources
,
0
.
2012/05/16
Popov, A., Kim, J., Dinsdale, R., Esteves, S., Guwy, A. and Premier, G. (2012), "
The effect of physico-chemically immobilized methylene blue and neutral red on the anode of microbial fuel cell
",
Biotechnology and Bioprocess Engineering
,
17
,
2
: 361-370.
2012/05/16
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Biodesign Institute at Arizona State University (USA)
Central Electrochemical Research Institute (CECRI) (India)
Cornell University - Ithaca, NY (USA)
Flemish Institute for Technological Research (Belgium)
Ghent University (Belgium)
Gwangju Institute of Science and Technology (Korea)
Harbin Institute of Technology (HIT) (China) - SKLUWRE
Harbin Institute of Technology (HIT) (China) - SMEE
Indian Institute of Chemical Technology (India)
Indian Institute of Technology (India)
Medical University of South Carolina (USA)
National Research Council (Canada)
Newcastle University (UK)
Oak Ridge National Laboratory (USA)
Oregon State University (USA)
Penn State University (USA)
SAPIENZA University of Rome (Italy)
Texas A&M University
The University of Massachusetts Amherst (USA)
TU Braunschweig (Germany)
Universities of Bristol (UoB) and of the West of England (UWE) (UK)
University of Colorado Denver (USA)
University of Girona (Spain)
University of Glamorgan (UK)
University of León (Spain)
University of Queensland (Australia)
University of Southern California (USA)
University of Wisconsin - Milwaukee(USA)
US Naval Research Laboratory - Washington, D.C. (USA)
Wageningen University (The Netherlands)
Wetsus - Centre of excellence for sustainable water technology (The Netherlands)
University of Castilla-La Mancha (Spain)