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首页> 外文期刊>Applied Energy >Forward and reverse combustion gasification of coal with production of high-quality syngas in a simulated pilot system for in situ gasification
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Forward and reverse combustion gasification of coal with production of high-quality syngas in a simulated pilot system for in situ gasification

机译:在原位气化模拟先导系统中,通过正向和反向燃烧气化煤并产生高质量的合成气

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摘要

This research focused on the feasibility and stability of applying the forward and reverse combustion approach to the in situ gasification of lignite and bituminous coal with oxygen or oxygen-steam mixtures as gasification agents, especially reverse combustion gasification. A high-quality syngas (H_2 and CO) could be obtained using the reverse combustion gasification technique combined with forward combustion gasification in a pilot system for in situ gasification. The gasification time was extended more than 25% using the reverse combustion approach. The controlling conditions for reverse combustion gasification were obtained by comparing and analyzing experimental data. The results show the relationship between the inject gas flow within certain limits and velocity of the gasification flame was linear during reverse combustion. The underground conditions of the coal seam and strata were simulated in a pilot-scale underground gasifier during experiments. The combustion gasification of coal was carried out experimentally for over 5 days. The average effective content (H_2 and CO) of syngas was in the range of 60-70%, meeting the requirement of synthesis gas. The optimal ranges of gasifying lignite and bituminous coal were found to be 1.5-2.0 and 1.3-1.75, respectively. The product gas flow was proportional to oxygen blast. These are expected to provide useful guidance on practical underground coal gasification operations and to give experimental evidence in support of theory.
机译:这项研究集中于将正向和反向燃烧方法应用于以氧气或氧气-蒸汽混合物作为气化剂的褐煤和烟煤原位气化的可行性和稳定性,特别是反向燃烧气化。在原位气化的先导系统中,通过使用反向燃烧气化技术与正向燃烧气化相结合,可以获得高质量的合成气(H_2和CO)。使用反向燃烧方法,气化时间延长了25%以上。通过比较和分析实验数据,获得了逆燃烧气化的控制条件。结果表明,在一定范围内,注入气体流量与气化火焰的速度在反向燃烧期间呈线性关系。实验期间,在中试规模的气化炉中模拟了煤层和地层的地下条件。煤的燃烧气化实验进行了5天以上。合成气的平均有效含量(H_2和CO)在60-70%之间,满足合成气的要求。气化褐煤和烟煤的最佳范围分别为1.5-2.0和1.3-1.75。产物气体流量与鼓风成比例。预期这些将为实际的地下煤气化操作提供有用的指导,并提供实验证据以支持理论。

著录项

  • 来源
    《Applied Energy》 |2014年第15期|9-19|共11页
  • 作者单位

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

    School of Resources and Environmental Engineering, East China University of Science and Technology, Shanghai, China;

    School of Chemical and Environmental Engineering, China University of Mining & Technology (Beijing), Beijing 100083, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Underground coal gasification; Reverse combustion gasification; Forward combustion gasification; Syngas oxygen-steam gasification;

    机译:地下煤气化;逆燃烧气化;正向燃烧气化;合成气氧气蒸汽气化;

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