首页> 外文期刊>Journal of Cleaner Production >Analysis and optimization for energy, cost and carbon emission of a solar driven steam-autothermal hybrid methane reforming for hydrogen, ammonia and power production
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Analysis and optimization for energy, cost and carbon emission of a solar driven steam-autothermal hybrid methane reforming for hydrogen, ammonia and power production

机译:太阳能驱动蒸汽自热杂交甲烷重整的能源,成本和碳排放的分析与优化,氢,氨和电力生产

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A novel idea of solar driven steam-autothermal hybrid reforming system (SAHRS) is proposed with onboard carbon capturing system in the existence of carbon emissions taxes. The CO2 produced by the steam methane reforming is employed to the autothermal reforming as input and cryogenic air separation unit is integrated to provide autothermal reforming with oxygen and ammonia synthesis with nitrogen. The autothermal reforming is modified with further integration of water gas shift reactor (WGSR) which converts carbon mono-oxide into carbon dioxide by reacting with steam and this CO2 is captured in the carbon capturing system using aqueous ammonia. Some amount of hydrogen produced by the autothermal reforming is employed to the ammonia synthesis reactor to achieve onboard ammonia for CO2 capture. The system generates enough power to overcome the required power and supply power as a final commodity as well. The present system is essentially designed for cleaner production and industrial applications. The performance indicator for the designed system is defined in terms of energy and exergy efficiencies which are found to be 53.4% and 45.0% respectively. The carbon emissions produced by the system and tax saving by the aqueous ammonia based CO2 capturing are also calculated in the proposed study. (C) 2019 Elsevier Ltd. All rights reserved.
机译:碳排放税的存在碳捕获系统,提出了一种新颖的太阳能蒸汽自热混合系统(SAHRS)的新颖思想。通过蒸汽甲烷重整产生的二氧化碳用于自热再现,因为输入和低温空气分离单元集成,以提供与氮气和氨合成的自热重整。通过与蒸汽反应将碳单氧化物转化为二氧化碳的水换热反应器(WGSR)进行改性,通过与蒸汽反应,在碳捕获系统中使用氨水捕获该二氧化碳。通过自热重整产生的一定量的氢气用于氨合成反应器,以实现CO 2捕获的砧座。系统也会产生足够的电源,以克服所需的电源和供电作为最终商品。本系统基本上设计用于清洁生产和工业应用。设计系统的性能指标在能量和漏洞效率方面定义,分别为53.4%和45.0%。通过氨基氨基基于CO2捕获的系统和税收产生的碳排放也在提出的研究中计算。 (c)2019 Elsevier Ltd.保留所有权利。

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