Production of Synthesis Gas from Biogas - Reactor Design and Integration into a Solid Oxide Fuel Cell System

被引:0
|
作者
Jahn, Matthias [1 ]
Reichelt, Erik [2 ]
Heddrich, Marc [1 ]
Weder, Aniko [1 ]
机构
[1] Fraunhofer Inst Keram Technol & Syst IKTS, Abt Chem Verfahrenstech & Elektrochem, D-01277 Dresden, Germany
[2] Tech Univ Dresden, Inst Werkstoffwissensch, D-01069 Dresden, Germany
关键词
Biogas; Festoxidbrennstoffzelle; Reaktorkonzept; Reformierung; Synthesegas; Reactor concept; Reforming; Solid oxide fuel cell; Synthesis gas; BIOMASS GASIFICATION; OXIDATION; FOAMS;
D O I
10.1002/cite.201300129
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Eine Reformer-Nachbrenner-Einheit fur den Einsatz in einem Festoxidbrennstoffzellensystem wird vorgestellt. Mittels des Verfahrens der oxidativen trockenen Reformierung kann aus Biogas ein Synthesegas mit einer hohen Energiedichte erzeugt werden. Der fur den Reformierungsprozess benotigte Warmestrom kann durch eine systeminterne Warmenutzung bereitgestellt werden. Anschlie ss end an einen Komponententest erfolgt die Integration in ein Festoxidbrennstoffzellensystem. Der im Rahmen einer thermodynamischen Analyse ermittelte, im Systembetrieb mogliche, elektrische Wirkungsgrad wird experimentell validiert. A reformer-afterburner unit for integration into a solid oxide fuell cell system is introduced. Synthesis gas of high energy density can be produced by oxidative dry reforming of biogas. The required heat for the reforming can be provided by internal heat use. Subsequent to component testing, the unit is integrated into a solid oxide fuel cell system. The electrical efficiency of the system confirmed the results of a conducted thermodynamic analysis.
引用
收藏
页码:486 / 496
页数:11
相关论文
共 50 条
  • [1] Performance of An Energy Production System Consisting of Solar Collector, Biogas Dry Reforming Reactor and Solid Oxide Fuel Cell
    Nishimura, Akira
    Sato, Ryotaro
    Hu, Eric
    FUELS, 2024, 5 (03): : 278 - 296
  • [2] Use of Synthesis Gas as Fuel for a Solid Oxide Fuel Cell
    Alvarez-Cedillo, Jesus A.
    Alvarez-Sanchez, Teodoro
    Sandoval-Gomez, Raul J.
    Gonzalez-Vasquez, Alexis
    Sarabia-Alonso, Teresa
    JOURNAL OF ECOLOGICAL ENGINEERING, 2022, 23 (10): : 35 - 41
  • [3] Operation of a Solid Oxide Fuel Cell Reactor with Multiple Stacks in a Pressured System with Fuel Gas Recirculation
    Tomberg, Marius
    Heddrich, Marc Philipp
    Metten, Matthias
    Ansar, Syed Asif
    Friedrich, Kaspar Andreas
    ENERGY TECHNOLOGY, 2022, 10 (04)
  • [4] Heat Integration of Solid Oxide Fuel Cell System
    Srisiriwat, Nawadee
    Wutthithanyawat, Chananchai
    ENGINEERING AND MANUFACTURING TECHNOLOGIES, 2014, 541-542 : 922 - +
  • [5] A Performance Analysis of a Solid Oxide Fuel Cell - Micro Gas Turbine Hybrid System Using Biogas
    Komatsu, Y.
    Kimijima, S.
    Szmyd, J. S.
    SOLID OXIDE FUEL CELLS 11 (SOFC-XI), 2009, 25 (02): : 1061 - 1070
  • [6] Design and analysis of renewable hydrogen production from biogas by integrating a gas turbine system and a solid oxide steam electrolyzer
    Hosseini, Seyed Ehsan
    ENERGY CONVERSION AND MANAGEMENT, 2020, 211
  • [7] A novel system for the production of pure hydrogen from natural gas based on solid oxide fuel cell-solid oxide electrolyzer
    Iora, P.
    Taher, M. A. A.
    Chiesa, P.
    Brandon, N. P.
    INTERNATIONAL JOURNAL OF HYDROGEN ENERGY, 2010, 35 (22) : 12680 - 12687
  • [8] Portable solid oxide fuel cell system integration and demonstration
    Minh, N
    Anumakonda, A
    Doshi, R
    Guan, J
    Huss, S
    Lear, G
    Montgomery, K
    Ong, E
    Yamanis, J
    SOLID OXIDE FUEL CELLS VII (SOFC VII), 2001, 2001 (16): : 190 - 195
  • [9] Design and part-load performance of a hybrid system based on a solid oxide fuel cell reactor and a micro gas turbine
    Costamagna, P
    Magistri, L
    Massardo, AF
    JOURNAL OF POWER SOURCES, 2001, 96 (02) : 352 - 368
  • [10] Design and energy analysis of solid oxide fuel cell and gas turbine hybrid systems with membrane reactor
    Wu, Xiangyang
    Shen, Yili
    Zhao, Jun
    Wei, Haiqiao
    Li, Wenjia
    Wang, Hongsheng
    Rajeh, Taha
    Wang, Xiaowen
    INTERNATIONAL JOURNAL OF GREEN ENERGY, 2023, 20 (12) : 1236 - 1248