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Characteristics modeling for supercritical circulating fluidized bed boiler working in oxy-combustion technology

机译:含氧燃烧技术的超临界循环流化床锅炉特性建模

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摘要

Among the technologies which allow to reduce greenhouse gas emission, mainly carbon dioxide, special attention deserves the idea of ‘zeroemission’ technology based on boilers working in oxy-combustion technology. In the paper the results of analyses of the influence of changing two quantities, namely oxygen share in oxidant produced in the air separation unit, and oxygen share in oxidant supplied to the furnace chamber on the selected characteristics of a steam boiler including the degree of exhaust gas recirculation, boiler efficiency and adiabatic flame temperature, was examined. Due to the possibility of the integration of boiler model with carbon dioxide capture, separation and storage installation, the subject of the analysis was also to determine composition of the flue gas at the outlet of a moisture condensation installation. Required calculations were made using a model of a supercritical circulating fluidized bed boiler working in oxy-combustion technology, which was built in a commercial software and in-house codes.
机译:在可以减少温室气体(主要是二氧化碳)排放的技术中,基于氧燃烧技术的锅炉的“零排放”技术值得特别关注。本文分析了改变两个量的影响的结果,这两个量分别是空气分离装置中产生的氧化剂中的氧气份额和供应到炉膛的氧化剂中的氧气份额对蒸汽锅炉所选特性(包括排气程度)的影响检查了气体再循环,锅炉效率和绝热火焰温度。由于可以将锅炉模型与二氧化碳捕获,分离和存储装置集成在一起,因此分析的主题还在于确定湿气冷凝装置出口处的烟气成分。使用在氧燃烧技术中运行的超临界循环流化床锅炉模型进行了所需的计算,该模型是在商业软件和内部代码中构建的。

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