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A novel tubular microbial electrolysis cell for high rate hydrogen production

Kun Guo (UGent) , Antonin Prévoteau (UGent) and Korneel Rabaey (UGent)
(2017) JOURNAL OF POWER SOURCES. 356. p.484-490
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Microbial electrolysis cells, Tubular reactor, Stainless steel felt, Reactor design, Hydrogen production, STAINLESS-STEEL FELT, WASTE-WATER TREATMENT, BIOELECTROCHEMICAL SYSTEMS, EXCHANGE MEMBRANES, BIOFILM FORMATION, GAS-PRODUCTION, PERFORMANCE, MEC, ACETATE, TEMPERATURE

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Citation

Please use this url to cite or link to this publication:

Chicago
Guo, Kun, Antonin Prévoteau, and Korneel Rabaey. 2017. “A Novel Tubular Microbial Electrolysis Cell for High Rate Hydrogen Production.” Journal of Power Sources 356: 484–490.
APA
Guo, K., Prévoteau, A., & Rabaey, K. (2017). A novel tubular microbial electrolysis cell for high rate hydrogen production. JOURNAL OF POWER SOURCES, 356, 484–490.
Vancouver
1.
Guo K, Prévoteau A, Rabaey K. A novel tubular microbial electrolysis cell for high rate hydrogen production. JOURNAL OF POWER SOURCES. 2017;356:484–90.
MLA
Guo, Kun, Antonin Prévoteau, and Korneel Rabaey. “A Novel Tubular Microbial Electrolysis Cell for High Rate Hydrogen Production.” JOURNAL OF POWER SOURCES 356 (2017): 484–490. Print.
@article{8524930,
  author       = {Guo, Kun and Pr{\'e}voteau, Antonin and Rabaey, Korneel},
  issn         = {0378-7753},
  journal      = {JOURNAL OF POWER SOURCES},
  keyword      = {Microbial electrolysis cells,Tubular reactor,Stainless steel felt,Reactor design,Hydrogen production,STAINLESS-STEEL FELT,WASTE-WATER TREATMENT,BIOELECTROCHEMICAL SYSTEMS,EXCHANGE MEMBRANES,BIOFILM FORMATION,GAS-PRODUCTION,PERFORMANCE,MEC,ACETATE,TEMPERATURE},
  language     = {eng},
  pages        = {484--490},
  title        = {A novel tubular microbial electrolysis cell for high rate hydrogen production},
  url          = {http://dx.doi.org/10.1016/j.jpowsour.2017.03.029},
  volume       = {356},
  year         = {2017},
}

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