• [口頭報告]Effect of potassium feldspar loading on attrition resistance and reactivity of oxygen carriers in chemical looping combusition
    00
    days
    00
    hours
    00
    minutes
    00
    seconds
    00
    days
    00
    hours
    00
    minutes
    00
    seconds

    [口頭報告]Effect of potassium feldspar loading on attrition resistance and reactivity of oxygen carriers in chemical looping combusition

    Effect of potassium feldspar loading on attrition resistance and reactivity of oxygen carriers in chemical looping combusition
    編號:240 稿件編號:133 訪問權限:僅限參會人 更新:2024-05-15 17:52:05 瀏覽:169次 口頭報告

    報告開始:2024年05月31日 15:00 (Asia/Shanghai)

    報告時間:20min

    所在會議:[S5] Smart Energy and Clean Power Technology ? [S5-2] Afternoon of May 31st

    暫無文件

    摘要
    Chemical looping combustion (CLC) is considered to be one of the most promising CO2 capture technologies, and oxygen carrier is the key to CLC. However, the cleavage plane of a single oxygen carrier is not conducive to the dissipation of impact energy, which makes the oxygen carrier face the problem of attrition. In this study, the iron ore was used as the carrier, and the potassium feldspar with ductile creep characteristics was used as the toughness-enhanceing material. The effects of the loading methods and loading amount of potassium feldspar on the attrition resistance and activity were studied. The results show that solid-solid co-fluidization (SF) is superior to premixed calcination (PC). When the mass fraction of potassium feldspar is controlled at about 0.5%, the best toughening effect can be achieved on oxygen carriers. And the reactivity of 0.5% can be increased by 41.39% compared with OC. The characterization results show that the fiber structure exists in the sample with a mass fraction of 0.5%, the fiber structure was interspersed in the skeleton defect to form a skeleton bridge. The end effect was used to disperse the consumption of fracture energy, which induces crack deflection and closure.
    關鍵字
    Chemical looping combustion; Oxygen carrier; Attrition resistance; Bridgetoughening; Mineral lattice skeleton
    報告人
    Dan Zhu
    China University of Mining and Technology

    稿件作者
    Dan Zhu China University of Mining and Technology
    Fang Liu China University of Mining and Technology
    Chen Song China University of Mining and Technology
    Yang Liu China University of Mining and Technology
    Caifu Li China University of Mining and Technology
    發表評論
    驗證碼 看不清楚,更換一張
    全部評論

    聯系我們

    投稿事宜:張老師
    電話:0516-83995113
    會務事宜:張老師
    電話:0516-83590258
    酒店事宜:張老師
    電話:15852197548
    會展合作:李老師
    電話:0516-83590246
    登錄 注冊繳費 提交摘要 酒店預訂
  • 成人视频