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Techno-Economic Study of Adsorption Processes for Pre-Combustion Carbon Capture at a Biomass CHP Plant

机译:生物质热电联产装置预燃碳吸附过程的技术经济研究

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摘要

An exemplary 10 MWth biomass CHP plant with a FICFB (Fast Internally Circulating Fluidised Bed) gasifier and Jenbacher type 6 gas engine was simulated to estimate the power and thermal outputs. The biomass-fuelled CHP plant was modified for carbon capture using either adsorption or amine process. It was found that a two-stage, two-bed PVSA (Pressure Vacuum Swing Adsorption) unit applied to syngas stream for pre-combustion capture spent less specific energy per captured CO2 than a conventional amine process for post-combustion carbon capture. In particular, adsorptive carbon capture is very promising for this application since, in comparison to amine process, adsorption process is economical for small-to-medium scale gas separations, the capital cost is relatively low and it does not require the evaporating, corrosive amine solvents.
机译:模拟了具有FICFB(快速内部循环流化床)气化炉和Jenbacher 6型燃气发动机的示例性10 MWth生物质CHP设备,以估算功率和热量输出。使用吸附或胺法对生物质燃料热电联产厂进行了改造,以实现碳捕集。已经发现,应用于合成气流以进行燃烧前捕集的两级,两床PVSA(压力真空摆动吸附)装置比用于燃烧后碳捕集的常规胺工艺所消耗的每单位二氧化碳所消耗的比能更少。特别是,吸附性碳捕集在该应用中非常有前途,因为与胺法相比,吸附法对于中小规模的气体分离是经济的,投资成本相对较低,并且不需要蒸发性,腐蚀性胺溶剂。

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