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Performance analysis and carbon reduction assessment of an integrated syngas purification process for the co-production of hydrogen and power in an integrated gasification combined cycle plant

机译:综合气化联合循环装置中氢气和动力联产的综合合成气净化工艺的性能分析和减碳评估

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The integrated gasification combined cycle (IGCC) is prominent in coal-based power plants because of its high efficiency and environmental benefit. Because of global warming, the integration of a carbon capture process (CCP) into the IGCC is exigent. In this study, performance analysis of an integrated syngas purification process was performed for a 500 MW-class IGCC. First, various carbon capture efficiencies were investigated to elucidate the most economical carbon capture efficiency, and a carbon capture efficiency of 90% was recommended. This value includes sour gas (H2S) removal cost, and it is essential for coal-power plants regardless of carbon capture. Thus, the net carbon capture cost was calculated from the difference in the operating costs of the integrated syngas purification process with/without a CCP. The net carbon capture cost per ton of CO2 was determined as approximately 21 USD. In addition, the exergy analysis and H-2 co-production from the integrated syngas purification process with pressure swing adsorption (PSA) were presented to suggest the direction of the potential process improvement and carbon reduction assessment. The study can contribute towards decision-making related to investment in near-future candidate technologies for increasing efficiency and carbon emissions. (C) 2019 Elsevier Ltd. All rights reserved.
机译:整体气化联合循环(IGCC)在燃煤电厂中具有很高的效率和环保优势。由于全球变暖,迫切需要将碳捕获过程(CCP)集成到IGCC中。在这项研究中,对500兆瓦级IGCC进行了合成气净化过程的性能分析。首先,研究了各种碳捕获效率以阐明最经济的碳捕获效率,建议将碳捕获效率设为90%。该值包括去除酸性气体(H2S)的成本,对于燃煤电厂而言,无论碳捕集如何,它都是必不可少的。因此,碳净捕集成本是根据有/无CCP的合成合成气提纯工艺的运营成本之差计算得出的。确定每吨二氧化碳的净碳捕获成本约为21美元。此外,提出了利用变压吸附(PSA)的集成合成气提纯工艺进行的火用分析和H-2联产,为潜在工艺改进和减碳评估提供了方向。这项研究可有助于做出与投资于近期的候选技术相关的决策,以提高效率和碳排放量。 (C)2019 Elsevier Ltd.保留所有权利。

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