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Effects of carbon capture on the performance of an advanced coal-based integrated gasification fuel cell system

机译:碳捕获对先进的煤基整体气化燃料电池系统性能的影响

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Integrated gasification fuel cell (IGFC) power plants combining gasification and solid oxide fuel cell (SOFC) technologies are very promising for highly efficient and environmentally friendly power generation from coal. IGFC plant amenability to carbon capture for sequestration makes the technology more attractive given the increasing concern over global climate change caused by greenhouse gas emissions. With the support of the US Department of Energy and the National Energy Technology Laboratory, the Advanced Power and Energy Program has conducted a study to identify promising conceptual designs for IGFC plants. The most promising IGFC concept identified so far is a system with catalytic hydro-gasification, a pressurized (operating pressure of 10 bar) SOFC followed by a turbo-expander and a steam cycle. The design requirement for recycling de-carbonized anode exhaust back to the gasifier for hydro-gasification not only produces a synergistic integration of SOFC and gasification subsystems, but also makes carbon separation a natural result. The current analyses of this system show an efficiency of 58.4 per cent (coal higher heating value basis) while capturing 94 per cent of the CO_2. Using this system as a baseline case, this work investigates the sensitivity of IGFC system performance on the extent of carbon capture. It is shown that the proposed IGFC system can achieve ultra-high carbon capture (>99 per cent) at small system efficiency expense while reducing carbon capture to below 90 per cent actually diminishes the system efficiency because less fuel is converted in the SOFC.
机译:结合气化和固体氧化物燃料电池(SOFC)技术的集成气化燃料电池(IGFC)发电厂对于用煤高效,环保地发电非常有前途。由于温室气体排放引起的全球气候变化问题日益引起人们的关注,IGFC工厂能够进行碳捕获以封存,这使该技术更具吸引力。在美国能源部和国家能源技术实验室的支持下,高级电力和能源计划进行了一项研究,以确定IGFC工厂的有希望的概念设计。迄今为止,最有前途的IGFC概念是具有催化加氢气化,加压(工作压力为10 bar)SOFC以及涡轮膨胀机和蒸汽循环的系统。将脱碳后的阳极废气再循环回气化炉进行加氢气化的设计要求,不仅使SOFC和气化子系统产生了协同整合,而且使碳分离成为自然结果。当前对该系统的分析表明,该系统的效率为58.4%(基于煤的较高的热值),同时捕获了94%的CO_2。使用该系统作为基准案例,这项工作调查了IGFC系统性能对碳捕集程度的敏感性。结果表明,拟议的IGFC系统可以以较小的系统效率费用实现超高碳捕获(> 99%),而将碳捕获量降低到90%以下实际上降低了系统效率,因为在SOFC中转化的燃料较少。

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