• Efficient conversion of low concentration coal-bed methane into power via solid oxide fuel cells integrated with an activated catalyst-modified anode microchannel
    編號:124 稿件編號:126 訪問權限:僅限參會人 更新:2022-05-24 09:33:55 瀏覽:456次 口頭報告

    報告開始:2022年05月27日 11:40 (Asia/Shanghai)

    報告時間:20min

    所在會議:[S7] Mineral Materials and Advanced Energy Materials [S7-2] Mineral Materials and Advanced Energy Materials-2

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    摘要
    Efficient utilization of oxygen-bearing low concentration coal-bed methane (LC-CBM) via solid oxide fuel cell (SOFC) device to generate power is highly attractive and receives tremendous attention. However, it is highly limited by the low conversion efficiency and coking tolerance during the operation. Hence, in this study, an anode with vertical microchannels coupled with highly active catalysts (Ni-Y2O3-Ce0.5Zr0.5O2) and anode functional layer are integrated in a SOFC reactor to boost the partial oxidation of methane (POM) efficiency and enlarge the active electrochemical reaction area. Benefiting from the integrated SOFC reactor, the methane conversion efficiency is increased from 23.59% to 43.22 % at 750°C when using 16% CH4-4%O2-80%N2 as fuel. Meanwhile, the related peak power density is increased from 904 mW cm-2 to 1208 mW cm-2. The integrated SOFC reactor can steadily operate at 750°C for more than 100 h without any degradation, indicating the excellent anti-coking performance. Consequently, the proposed integrated SOFC reactor provides a great application potential for the efficient utilization of LC-CBM.
    關鍵字
    Low concentration coal-bed methane, Solid oxide fuel cells, Vertical microchannels, Surface modification, Infiltrating catalysts.
    報告人
    Yang YANG
    China University of Mining and Technology

    稿件作者
    Yang Yang China University of Mining and Technology
    Tian Li China University of Mining and Technology
    Peizhong Feng 中國礦業大學
    Yihan Ling China University of Mining and Technology
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