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Experimental study on evaluation of underground coal gasification with a horizontal hole using two different coals

机译:用两种不同煤的水平孔评估地下煤气化评价的试验研究

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摘要

Underground coal gasification (UCG) is a technique to extract coal energy with heat energy and combustible gases through chemical reactions in the underground gasifier. In this study, an application of a coaxial UCG system with a horizontal hole is discussed by means of the model UCG experiments with a large-scale simulated coal seam having dimensions of 550 x 600 x 2740 mm. The two types of coal having 30.18 MJ/kg of calorific value with 7.9% of ash (type 1) and 22.66 MJ/kg of calorific value with 28.3% of ash (type 2) were used for the experiments to evaluate the effect of coal quality on temperature distribution of the gasification area and product gas quality. The oxygen-enriched air was used. The injection rate of the gasification agents was elevated during the experiments to analyze the effect on the product gas. The results show that the gasification area is expanded along the wall of a coaxial hole, not upwards for the type 2 coal with high ash content. The average calorific value of product gas for types 1 and 2 is 8.05 MJ/m(3) and 6.91 MJ/m(3) respectively, while an increase of injection flow rate produces an improvement of the calorific value for both types of coal. Additionally, it is suggested that the reacted carbon and the product gas volume can be estimated with the volume of oxygen injected regardless of the coal quality if the gasification efficiency and the reaction temperature are similar. These results help to estimate several important parameters, e.g. reacted coal amount, recovered gas volume, and recovered energy from the coal when the actual field implementation is designed.
机译:地下煤气化(UCG)是一种通过地下气化炉中的化学反应提取煤能和可燃气体的技术。在本研究中,通过模型UCG实验讨论了具有水平孔的同轴UCG系统的应用,该模型用大规模模拟煤层的尺寸为550×600×2740mm。具有30.18mJ / kg热值的两种煤,其中7.9%的灰分(1型)和22.66mJ / kg的热值,用于28.3%的灰分(2型)进行实验,以评估煤炭的效果气化面积温度分布的质量和产品气体质量。使用富氧空气。在实验期间升高气化剂的注射率,以分析对产物气体的影响。结果表明,气化区域沿着同轴孔的壁膨胀,而不是高灰分含量的2型煤的壁膨胀。产品气体的平均热值分别为8.05mJ / m(3)和6.91mJ / m(3),而注射流量的增加会改善两种类型煤的热值。另外,建议如果气化效率和反应温度类似,可以用注射的氧气量估计反应的碳和产物气体体积。这些结果有助于估计几个重要参数,例如,当设计实际场实施时,反应煤量,回收的气体体积和从煤中回收的能量。

著录项

  • 来源
    《Fuel》 |2021年第1期|121556.1-121556.10|共10页
  • 作者单位

    Kyushu Univ Dept Earth Resources Engn Nishi Ku 744 Motooka Fukuoka 8190395 Japan;

    Henan Polytech Univ Sch Energy Sci & Engn 2001 Century Ave Jiaozuo 454003 Henan Peoples R China;

    Muroran Inst Technol Endowed Res Lab Mined Mineral Resources & Energy Muroran Hokkaido 0508585 Japan;

    Grad Sch Engn Muroran Inst Technol Muroran Hokkaido 0508585 Japan;

    Hokkaido Univ Div Sustainable Resources Engn Kita Ku Kita 13 Nishi 8 Sapporo Hokkaido 0608628 Japan;

    Underground Resources Innovat Network Higashi Ku Kita 47 Higashi 17 Sapporo Hokkaido 0070847 Japan;

  • 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

    Acoustic emission; Balance computation; Coaxial hole; Gasification efficiency; Underground coal gasification;

    机译:声发射;平衡计算;同轴孔;气化效率;地下煤气化;

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