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A comparison of the Process Integration of Shockwave CO_2 compression with conventional turbo machinery into PCC power station design.

机译:传统涡轮机械进入PCC电站设计的冲击波Co_2压缩过程集成的比较。

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This paper discusses the energy penalty of solvent based post combustion capture for three different power stations and includes a comparison of shockwave CO_2 compression versus conventional turbo machinery on the energy penalty associated with carbon capture and storage. This study uses pinch analysis to determine targets for the energy penalty of three different power stations that include a brown coal power plant with no reheat stage, a more efficient brown coal power station and a black coal power station. Heat integration can be used to reduce the energy penalty of all power stations combined with CCS. It is also found that when heat integration is considered, the heat that can be recovered in shockwave compressor inter/after-coolers reduces the amount of steam that needs to be extracted from the steam turbine. Hence, the net power output from the power station will be higher when shockwave compressors are used for CO_2 compression compared to conventional turbo-machinery.
机译:本文讨论了三种不同电站溶剂型燃烧型燃烧型燃烧捕获的能量惩罚,包括对碳捕获和储存相关的能量惩罚对电力涡轮机械的比较。该研究使用PINCH分析来确定三种不同电站的能量惩罚的目标,包括棕色煤电站,没有再热阶段,更有效的棕色煤电站和黑煤电站。热集成可用于降低所有电站与CCS的所有电站的能量惩罚。还发现,当考虑热集成时,可以在冲击波压缩机间/后冷却器中恢复的热量减少了需要从蒸汽涡轮机中提取的蒸汽量。因此,当与传统的涡轮机械相比,当电力电压压缩机用于CO_2压缩时,电站的净功率将更高。

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