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Enhanced Coal Gasification Heated By Unmixed Combustion Integrated With An Hybrid System Of Sofc/gt

机译:与Sofc / gt混合系统集成的非混合燃烧加热的增强煤气化

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For clean utilization of coal, enhanced gasification by in situ CO_2 capture has the advantage that hydrogen production efficiency is increased while no energy is required for CO_2 separation. The unmixed fuel process uses a sorbent material as CO_2 carrier and consists of three coupled reactors: a coal gasifier where CO_2 is captured generating a H_2-rich gas that can be utilized in fuel cells, a sorbent regenerator where CO_2 is released by sorbent calcination and it is ready for capture and a reactor to oxidize the oxygen transfer material which produces a high temperature/pressure vitiated air. This technology has the potential to eliminate the need for the air separation unit using an oxygen transfer material. Reactors' temperatures range from 750 ℃ to 1550 ℃ and the process operates at pressure around 7.0 bar. This paper presents a global thermodynamic model of the fuel processing concept for hydrogen production and CO_2 capture combined with fuel and residual heat usage. Hydrogen is directly fed to a solid oxide fuel cell and exhaust streams are used in a gas turbine expander and in a heat recovery steam generator. This paper analyzes the influence of steam to carbon ratio in gasifier and regeneration reactor, pressure of the system, temperature for oxygen transfer material oxidation, purge percentage in calciner, average sorbent activity and oxidant utilization in fuel cell. Electrical efficiency up to 73% is reached under optimal conditions and CO_2 capture efficiencies near 96% ensure a good performance for GHG's climate change mitigation targets.
机译:为了清洁利用煤炭,通过原位CO_2捕集提高气化的优势在于,提高了制氢效率,而分离CO_2则不需要能源。未混合燃料工艺使用吸附剂材料作为CO_2载体,并由三个耦合反应器组成:一个煤气化炉,其中捕获了CO_2,生成可用于燃料电池的富H_2气体;吸附剂再生器,其中,CO_2通过吸附剂煅烧释放,准备好进行捕集,并准备一个反应器将氧转移材料氧化,从而产生高温/高压通风的空气。该技术具有消除使用氧气转移材料的空气分离装置的潜力。反应器的温度范围为750℃至1550℃,该过程在约7.0 bar的压力下运行。本文介绍了用于氢气生产和CO_2捕集以及燃料和余热利用的燃料处理概念的全局热力学模型。氢气直接供入固体氧化物燃料电池,废气流用于燃气轮机膨胀机和热回收蒸汽发生器。本文分析了气化炉和再生反应器中蒸汽与碳的比率,系统压力,氧转移材料氧化的温度,煅烧炉中的吹扫百分比,燃料电池中平均吸附剂活性和氧化剂利用率的影响。在最佳条件下,电效率最高可达到73%,CO_2捕集效率接近96%,可确保为温室气体减缓气候变化目标取得良好的绩效。

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