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首页> 外文期刊>International Journal of Greenhouse Gas Control >Effect of operating pressure and fuel moisture on net plant efficiency of a staged, pressurized oxy-combustion power plant
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Effect of operating pressure and fuel moisture on net plant efficiency of a staged, pressurized oxy-combustion power plant

机译:运行压力和燃料水分对分阶机,加压氧燃烧电厂净植物效率的影响

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摘要

The immediate need for a high efficiency and low cost carbon capture process has prompted the recent development of pressurized oxy-combustion. With an increase in combustion pressure, the dew point of the flue gas is increased, allowing for effective integration of the latent heat of flue gas moisture into the Rankine cycle. This increases the net plant efficiency and reduces costs. The Staged, Pressurized Oxy-Combustion (SPOC) process further enhances the efficiency and reduces costs by reducing the recycle of flue gas to near zero. Fuel staging and a novel boiler/burner design are used to control temperature and heat flux. Compared to a first generation oxy-combustion process, the SPOC process results in an increased net plant efficiency of about 6 percentage points. In this work, the effects of operating pressure and fuel moisture content on the net plant efficiency are discussed. It is shown that the effect of pressure is small for pressures higher than about 16 bar, while the effect of fuel moisture is quite significant. Net plant efficiency gradually decreases with increasing fuel moisture until the heat saturation value, beyond which additional latent heat cannot be integrated into the steam cycle and the efficiency reduction is more dramatic. The effect of slurry feeding of coal on plant efficiency is discussed. (C) 2015 Elsevier Ltd. All rights reserved.
机译:高效率和低成本碳捕获过程的立即需求促使最近加压氧燃烧的发展。随着燃烧压力的增加,烟道气的露点增加,允许烟气水分潜入的潜热融为兰峰循环。这增加了净植物效率并降低了成本。分段,加压的氧气燃烧(SPOC)工艺进一步提高了效率并通过将烟道气的再循环降低到零附近来降低成本。燃料分级和新型锅炉/燃烧器设计用于控制温度和热通量。与第一代氧气燃烧过程相比,SPOC过程导致净植物效率提高约6个百分点。在这项工作中,讨论了操作压力和燃料水分含量对净植物效率的影响。结果表明,压力的效果小于高于约16巴的压力,而燃料水分的效果非常显着。净植物效率随着燃料水分的增加而逐渐降低,直到热饱和度值,超出其额外的潜热不能整合到蒸汽循环中,并且效率降低更加戏剧性。讨论了煤浆料对植物效率的影响。 (c)2015 Elsevier Ltd.保留所有权利。

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