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Hydrogen from coal: Production and utilisation technologies

机译:煤制氢:生产和利用技术

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摘要

Although coal may be viewed as a dirty fuel due to its high greenhouse emissions when combusted, a strong case can be made for coal to be a major world source of clean H_2 energy. Apart from the fact that resources of coal will outlast oil and natural gas by centuries, there is a shift towards developing environmentally benign coal technologies, which can lead to high energy conversion efficiencies and low air pollution emissions as compared to conventional coal fired power generation, plant. There are currently several world research and industrial development projects in the areas of Integrated Gasification Combined Cycles (IGCC) and Integrated Gasification Fuel Cell (IGFC) systems. In such systems, there is a need to integrate complex unit operations including gasifiers, gas separation and cleaning units, water gas shift reactors, turbines, heat exchangers, steam generators and fuel cells. IGFC systems tested in the USA, Europe and Japan employing gasifiers (Texaco, Lurgi and Eagle) and fuel cells have resulted in energy conversions at efficiency of 47.5 percent (HHV) which is much higher than the 30-35 percent efficiency of conventional coal fired power generation. Solid oxide fuel cells (SOFC) and molten carbonate fuel cells (MCFC) are the front runners in energy production from coal gases. These fuel cells can operate at high temperatures and are robust to gas poisoning impurities. IGCC and IGFC technologies are expensive and currently economically uncompetitive as compared to established and mature power generation technology. However, further efficiency and technology improvements coupled with world pressures on limitation of greenhouse gases and other gaseous pollutants could make IGCC/IGFC technically and economically viable for hydrogen production and utilisation in clean and environmentally benign energy systems.
机译:尽管由于燃烧时会排放大量温室气体,煤炭可能被视为肮脏的燃料,但可以充分证明煤炭成为世界上主要的清洁H_2能源。除了煤炭资源比石油和天然气要持久数百年的事实外,目前还朝着开发对环境无害的煤炭技术转移,与传统的燃煤发电相比,这可以提高能源转换效率和降低空气污染排放,厂。目前,在集成气化联合循环(IGCC)和集成气化燃料电池(IGFC)系统领域有多个世界研究和工业发展项目。在这样的系统中,需要整合复杂的单元操作,包括气化器,气体分离和清洁单元,水煤气变换反应器,涡轮机,热交换器,蒸汽发生器和燃料电池。在美国,欧洲和日本使用气化器(Texaco,Lurgi和Eagle)和燃料电池对IGFC系统进行了测试,其能量转换效率为47.5%(HHV),远高于传统燃煤效率的30%至35%。发电。固态氧化物燃料电池(SOFC)和熔融碳酸盐燃料电池(MCFC)是煤气生产能源的领先者。这些燃料电池可以在高温下运行,并且对气体中毒杂质具有抵抗力。与已建立和成熟的发电技术相比,IGCC和IGFC技术昂贵且目前在经济上没有竞争力。但是,进一步的效率和技术改进,再加上世界对限制温室气体和其他气态污染物施加压力的压力,可能使IGCC / IGFC在技术和经济上可用于清洁生产和环境友好的能源系统中的氢气生产和利用。

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