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Pyrolytic carbon-coated stainless steel felt as a high-performance anode for bioelectrochemical systems

(2016) BIORESOURCE TECHNOLOGY. 211. p.664-668
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SPECTROSCOPY, Stainless steel felt, ELECTRODES, Surface modification, Pyrolytic carbon coating, Scalable electrode, Microbial electrocatalysis, Bioelectrochemical systems, MICROBIAL FUEL-CELLS, BIOFILM FORMATION, PASSIVE FILMS

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Citation

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Chicago
Guo, Kun, Diana Hidalgo, Tonia Tommasi, and Korneel Rabaey. 2016. “Pyrolytic Carbon-coated Stainless Steel Felt as a High-performance Anode for Bioelectrochemical Systems.” Bioresource Technology 211: 664–668.
APA
Guo, K., Hidalgo, D., Tommasi, T., & Rabaey, K. (2016). Pyrolytic carbon-coated stainless steel felt as a high-performance anode for bioelectrochemical systems. BIORESOURCE TECHNOLOGY, 211, 664–668.
Vancouver
1.
Guo K, Hidalgo D, Tommasi T, Rabaey K. Pyrolytic carbon-coated stainless steel felt as a high-performance anode for bioelectrochemical systems. BIORESOURCE TECHNOLOGY. 2016;211:664–8.
MLA
Guo, Kun et al. “Pyrolytic Carbon-coated Stainless Steel Felt as a High-performance Anode for Bioelectrochemical Systems.” BIORESOURCE TECHNOLOGY 211 (2016): 664–668. Print.
@article{7249040,
  author       = {Guo, Kun and Hidalgo, Diana and Tommasi, Tonia and Rabaey, Korneel},
  issn         = {0960-8524},
  journal      = {BIORESOURCE TECHNOLOGY},
  keywords     = {SPECTROSCOPY,Stainless steel felt,ELECTRODES,Surface modification,Pyrolytic carbon coating,Scalable electrode,Microbial electrocatalysis,Bioelectrochemical systems,MICROBIAL FUEL-CELLS,BIOFILM FORMATION,PASSIVE FILMS},
  language     = {eng},
  pages        = {664--668},
  title        = {Pyrolytic carbon-coated stainless steel felt as a high-performance anode for bioelectrochemical systems},
  url          = {http://dx.doi.org/10.1016/j.biortech.2016.03.161},
  volume       = {211},
  year         = {2016},
}

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