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Combined production of hydrogen and power from heavy oil gasification: Pinch analysis, thermodynamic and economic evaluations

机译:重油气化联合生产氢气和动力:夹点分析,热力学和经济评估

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摘要

Integrated Gasification Combined Cycle (IGCC) represents a commercially proven technology available for the combined production of hydrogen and electricity power from coal and heavy residue oils. When associated with CO_2 capture and sequestration facilities, the IGCC plant gives an answer to the search for a clean and environmentally compatible use of high sulphur and heavy metal contents fuels, the possibility of installing large size plants for competitive electric power and hydrogen production, and a low cost of CO_2 avoidance.rnThe paper describes two new and realistic configurations of IGCC plant fed by refinery heavy residues and including a CO_2 capture section, which are proposed on the basis of the experience gained in the construction of similar plants. They are based on oxygen blown entrained bed gasification and sized to produce a large amount of hydrogen and to feed one or two gas turbines of the combined cycle unit. The main thermodynamic and technological characteristics of the total plants are evaluated focusing on the heat integration between syngas cooling and combined cycle sections.rnMoreover, the overall performance characteristics and investment cost are estimated to supply a reliable estimate for the cost of electricity, given a value for the hydrogen selling price.
机译:整体气化联合循环(IGCC)代表了一种经过商业验证的技术,可用于从煤和重渣油中联合生产氢气和电力。与CO_2捕集和封存设施相关联时,IGCC工厂为寻求清洁和环保的高硫和重金属含量燃料的使用,安装大型工厂以提供有竞争力的电力和制氢的可能性提供了答案,并且本文描述了两种新型的,现实的,由炼油厂重质残渣供料的IGCC工厂配置,其中包括一个CO_2捕集段,这是根据在类似工厂的建设中获得的经验提出的。它们基于吹氧夹带床气化,其大小可产生大量氢气,并为联合循环装置的一台或两台燃气轮机供料。以合成气冷却和联合循环部分之间的热集成为重点,评估了整个电厂的主要热力学和技术特征。此外,通过给定值,可以估算整体性能特征和投资成本,从而对电费进行可靠的估算。氢气的价格。

著录项

  • 来源
    《Energy》 |2010年第5期|p.2184-2193|共10页
  • 作者单位

    Foster Wheeler Italiana Spa, via Caboto 1, 20094 Corsico (Milano), Italy;

    rnFoster Wheeler Italiana Spa, via Caboto 1, 20094 Corsico (Milano), Italy;

    rnUniversity of Padova, Department of Mechanical Engineering, via Venezia 1, 35131 Padova, Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    IGCC; pinch analysis; CO_2 capture; hydrogen;

    机译:IGCC;捏分析二氧化碳捕获;氢;

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