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Hydrogen production from fossil fuels with carbon capture and storage based on chemical looping systems

机译:从化石燃料中制氢,并基于化学循环系统进行碳捕获和存储

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This paper analyzes innovative processes for producing hydrogen from fossil fuels conversion (natural gas, coal, lignite) based on chemical looping techniques, allowing intrinsic CO_2 capture. This paper evaluates in details the iron-based chemical looping system used for hydrogen production in conjunction with natural gas and syngas produced from coal and lignite gasification. The paper assesses the potential applications of natural gas and syngas chemical looping combustion systems to generate hydrogen. Investigated plant concepts with natural gas and syngas-based chemical looping method produce 500 MW hydrogen (based on lower heating value) covering ancillary power consumption with an almost total decarbonisation rate of the fossil fuels used. The paper presents in details the plant concepts and the methodology used to evaluate the performances using critical design factors like: gasifier feeding system (various fuel transport gases), heat and power integration analysis, potential ways to increase the overall energy efficiency (e.g. steam integration of chemical looping unit into the combined cycle), hydrogen and carbon dioxide quality specifications considering the use of hydrogen in transport (fuel cells) and carbon dioxide storage in geological formation or used for EOR.
机译:本文分析了基于化学循环技术从化石燃料转化(天然气,煤炭,褐煤)中产生氢气的创新工艺,从而可以捕获固有的CO_2。本文详细评估了用于制氢,结合煤和褐煤气化生产的天然气和合成气的铁基化学循环系统。本文评估了天然气和合成气化学循环燃烧系统产生氢气的潜在应用。使用天然气和基于合成气的化学循环方法研究的工厂概念可产生500兆瓦的氢气(基于较低的热值),可覆盖辅助电力消耗,而所使用的化石燃料的脱碳率几乎完全相同。本文详细介绍了使用关键设计因素来评估性能的工厂概念和方法,例如:气化炉进料系统(各种燃料输送气体),热能和动力集成分析,提高整体能源效率的潜在方法(例如蒸汽集成)化学循环装置进入联合循环),氢气和二氧化碳的质量规范(考虑到运输中使用氢气(燃料电池)以及地质构造或用于EOR的二氧化碳存储)。

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