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Underground coal gasification: From fundamentals to applications

机译:地下煤气化:从基础到应用

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摘要

Underground coal gasification (UCC) is a promising option for the future use of un-worked coal. UCG permits coal to be gasified in situ within the coal seam, via a matrix of wells. The coal is ignited and air is injected underground to sustain a fire, which is essentially used to "mine" the coal and produce a combustible synthetic gas which can be used for industrial heating, power generation or the manufacture of hydrogen, synthetic natural gas or diesel fuel. As compared with conventional mining and surface gasification, UCC promises lower capital/operating costs and also has other advantages, such as no human labor underground. In addition, UCG has the potential to be linked with carbon capture and sequestration. The increasing demand for energy, depletion of oil, and gas resources, and threat of global climate change have lead to growing interest in UCG throughout the world. The potential for UCG to access low grade, inaccessible coal resources and convert them commercially and competitively into syngas is enormous, with potential applications in power, fuel, and chemical production. This article reviews the literature on UCG and research contributions are reported UCG with main emphasis given to the chemical and physical characteristic of feedstock, process chemistry, gasifier designs, and operating conditions. This is done to provide a general background and allow the reader to understand the influence of operating variables on UCG. Thermodynamic studies of UCG with emphasis on gasifier operation optimization based on thermodynamics, biomass gasification reaction engineering and particularly recently developed kinetic models, advantages and the technical challenges for UCG, and finally, the future prospects for UCG technology are also reviewed.
机译:地下煤气化(UCC)是未来未加工煤炭使用的有前途的选择。 UCG允许煤通过井矩阵在煤层中就地气化。点燃煤并将空气注入地下以维持火势,这实质上是用来“开采”煤并产生可燃的合成气,可用于工业加热,发电或制氢,合成天然气或柴油染料。与常规采矿和地面气化相比,UCC承诺降低资本/运营成本,并具有其他优势,例如无需在地下人工。此外,UCG还可能与碳捕获和封存联系在一起。对能源,石油和天然气资源枯竭的需求不断增长,以及全球气候变化的威胁,导致全世界对UCG的兴趣日益增长。 UCG获得低品位,难以获得的煤炭资源并将其商业和竞争地转化为合成气的潜力巨大,在电力,燃料和化工生产中具有潜在的应用。本文回顾了有关UCG的文献,并报道了UCG的研究成果,主要着重于原料的化学和物理特性,工艺化学,气化炉设计和操作条件。这样做是为了提供一般背景,并使读者了解操作变量对UCG的影响。 UCG的热力学研究着重于基于热力学的气化炉运行优化,生物质气化反应工程,尤其是最近开发的动力学模型,UCG的优势和技术挑战,最后,对UCG技术的未来前景进行了回顾。

著录项

  • 来源
    《Progress in Energy and Combustion Science》 |2013年第1期|189-214|共26页
  • 作者单位

    Department of Chemical Engineering, Dawood College of Engineering & Technology, Karachi, Pakistan;

    Process Systems Engineering Centre (PROSPECT), Chemical Engineering Department, Faculty of Chemical Engineering Universiti Teknologi Malaysia, Skudai 81310, Johor Bahru (JB), Malaysia,Biomass Conversion Research Centre (BCRC), Department of Chemical Engineering, COMSATS Institute of Information Technology, Lahore, Pakistan;

    Process Systems Engineering Centre (PROSPECT), Chemical Engineering Department, Faculty of Chemical Engineering Universiti Teknologi Malaysia, Skudai 81310, Johor Bahru (JB), Malaysia;

  • 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; UCG kinetics; gasifier operation; post-burn coal processing; coal drilling;

    机译:地下煤气化;UCG动力学;气化炉运行;后燃煤加工;煤炭钻探;
  • 入库时间 2022-08-18 00:26:26

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