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首页> 外文期刊>International journal of hydrogen energy >Catalytic hydrogenation of CO_2 from 600 MW supercritical coal power plant to produce methanol: A techno-economic analysis
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Catalytic hydrogenation of CO_2 from 600 MW supercritical coal power plant to produce methanol: A techno-economic analysis

机译:600 MW超临界燃煤电厂CO_2催化加氢制甲醇的技术经济分析。

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摘要

Electricity and water from renewable hydropower plant are used as input for electrolysis unit to generate hydrogen, while CO2 is captured from 600 MW supercritical coal power plant using post-combustion chemical solvent based technology. The captured CO2 and H-2 generated through electrolysis are used to synthesize methanol through catalytic thermochemical reaction. The methanol synthesis plant is designed, modeled and simulated using commercial software Aspen Plus (R). The reactor is analyzed for two widely adopted kinetic models known as Graaf model and Vanden-Bossche (VB) model to predict the methanol yield and CO2 conversion. The results show that the methanol reactor based on Graaf kinetic model produced 0.66 tonne of methanol per tonne of CO2 utilized which is higher than that of the VB kinetic model where 0.6 tonne of methanol is produced per tonne of CO2 utilized. The economic analysis reveals that 1.2 billion USD annually is required at the present cost of both H-2 production and CO2 abatement to utilize continuous emission of 3.2 million tonne of CO2 annually from 600 MW supercritical coal power unit to synthesize methanol. However, sensitivity analysis indicates that methanol production becomes feasible by adopting anyone of the route such as by increasing methanol production rate, by reducing levelised cost of hydrogen production, by reducing CO2 mitigation cost or by increasing the current market selling price of methanol and oxygen. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:来自可再生水力发电厂的电力和水被用作电解装置的输入以产生氢气,同时使用基于燃烧后化学溶剂的技术从600兆瓦超临界燃煤电厂捕获二氧化碳。电解产生的捕获的CO2和H-2通过催化热化学反应用于合成甲醇。使用商业软件Aspen Plus(R)设计,建模和模拟甲醇合成装置。分析该反应器的两种广泛采用的动力学模型,即Graaf模型和Vanden-Bossche(VB)模型,以预测甲醇收率和CO2转化率。结果表明,基于Graaf动力学模型的甲醇反应器每使用一吨CO2产生0.66吨甲醇,高于VB动力学模型的VB动力学模型(每使用一吨CO2产生0.6吨甲醇)。经济分析表明,以目前的H-2生产和CO2减排成本,每年需要12亿美元,才能利用600 MW超临界燃煤电厂每年连续排放320万吨的CO2来合成甲醇。但是,敏感性分析表明,通过采取任何一条途径(例如提高甲醇生产率,降低氢气生产的平准化成本,降低二氧化碳减排成本或提高当前甲醇和氧气的市场售价)中的任何一条途径,甲醇生产都是可行的。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

著录项

  • 来源
    《International journal of hydrogen energy》 |2018年第5期|2726-2741|共16页
  • 作者单位

    GIK Inst Engn Sci & Technol, Fac Mech Engn, Topi 23460, Pakistan;

    Yancheng Inst Technol, Sch Mat Sci & Engn, Yancheng 224051, Peoples R China;

    Yancheng Inst Technol, Sch Mat Sci & Engn, Yancheng 224051, Peoples R China;

    Yancheng Inst Technol, Sch Mat Sci & Engn, Yancheng 224051, Peoples R China;

    Yancheng Inst Technol, Key Lab Adv Technol Environm Protect Jiangsu Prov, Yancheng 224051, Peoples R China;

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

    CO2 utilization; Hydrogenation; Catalytic reactor; Methanol synthesis; Economic analysis;

    机译:二氧化碳利用加氢催化反应器甲醇合成经济分析;

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