• [口頭報告]Influence of swirl flow injection on tar production during underground coal gasification within an oxygen-steam atmosphere
    00
    days
    00
    hours
    00
    minutes
    00
    seconds
    00
    days
    00
    hours
    00
    minutes
    00
    seconds

    [口頭報告]Influence of swirl flow injection on tar production during underground coal gasification within an oxygen-steam atmosphere

    Influence of swirl flow injection on tar production during underground coal gasification within an oxygen-steam atmosphere
    編號:57 稿件編號:335 訪問權限:僅限參會人 更新:2024-05-17 18:55:31 瀏覽:147次 口頭報告

    報告開始:2024年05月30日 20:40 (Asia/Shanghai)

    報告時間:10min

    所在會議:[S1] Resource Development and Utilization ? [S1-2] Evening of May 30th

    暫無文件

    摘要
    Underground coal gasification (UCG) is a safe, low-carbon coal mining and utilization technology with broad prospects. To promote the low-carbon development and utilization of coal, it is necessary to improve the efficiency of coal combustion and reduce pollutants. Tar is a typical pollutant in the coal gasification process, and its polycyclic aromatic hydrocarbons (PAHs) pose a threat to the environment and human health. The key to tar control lies in the regulation of the internal temperature field, and swirl injection is an effective strategy. In this work, an ex-situ experimental system with swirl injection was constructed. The system captures the temperature of coal block inside the reactor through a thermal imager, collects the generated tar through outlet filters, and detect the gas composition and content in real time with a gas analyzer. In addition, the tar samples are subjected to detailed compositional analysis using GC-MS method. By comparing the tar yield under traditional straight (Cases 1~4) and swirl (Cases 5~8) injection methods, it is found that swirl injection can significantly reduce tar production at the same oxygen and steam flow rates, with a tar reduction rate of up to 50%. The increase in oxygen content and steam content leads to an increase in tar concentration. However, the effect of steam temperature on tar concentration varies under different mixed atmospheres of oxygen and steam. This work demonstrates that swirl injection technology can significantly reduce the generation of pollutants in the UCG process, and it has broad application potential in industrial situation.
    關鍵字
    underground coal gasification; tar; temperature field regulation; swirl flow injection; traditional straight flow injection
    報告人
    Maifan Dong
    China University of Mining and Technology

    稿件作者
    Maifan Dong China University of Mining and Technology
    Lele Feng China University of Mining and Technology
    Jiabao Pang 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