Techno-Economic Assessment of Solid Oxide Fuel Cell-Based Biogas Power Plant Projects in Northern Japan

Author:

Fukuda Takashi1ORCID,Fukushima Yasuhiro2,Chen I-Ching2ORCID,Ohno Hajime2,Harada Makoto Ryo1

Affiliation:

1. Research Institute for Chemical Process Technology, National Institute of Advanced Industrial Science and Technology

2. Department of Chemical Engineering, Graduate School of Engineering, Tohoku University

Publisher

Society of Chemical Engineers, Japan

Subject

General Chemical Engineering,General Chemistry

Reference34 articles.

1. Barelli, L. and A. Ottaviano; “Solid Oxide Fuel Cell Technology Coupled with Methane Dry Reforming: A Viable Option for High Efficiency Plant with Reduced CO2 Emissions,” Energy, 71, 118–129 (2014)

2. Barelli, L., G. Bidini, G. Cinti, F. Gallorini and M. Pöniz; “SOFC Stack Coupled with Dry Reforming,” Appl. Energy, 192, 498–507 (2017)

3. Chevalier, C. and F. Meunier; “Environmental Assessment of Biogas Co- or Tri-Generation Units by Life Cycle Analysis Methodology,” Appl. Therm. Eng., 25, 3025–3041 (2005)

4. DOE (United States Department of Energy); “DOE Technical Targets for Fuel Cell Systems for Stationary (Combined Heat and Power) Applications,” Office of Energy Efficiency & Renewable Energy, United States Department of Energy, Washington DC, U.S.A. (2015) https://www.energy.gov/eere/fuelcells/doe-technical-targets-fuel-cell-systems-stationary-combined-heat-and-power. Accessed 26 September 2020

5. DOE (United States Department of Energy); “Report on the Status of the Solid Oxide Fuel Cell Program,” Office of Energy Efficiency & Renewable Energy, United States Department of Energy, Washington DC, U.S.A. (2019) https://www.energy.gov/sites/prod/files/2019/09/f66/EXEC-2019-002655_Signed%20Report%201.pdf Accessed 1 March 2021.

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