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Multi-bed Vacuum Pressure Swing Adsorption for carbon dioxide capture from flue gas

机译:多床真空变压吸附法从烟气中捕集二氧化碳

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摘要

A detailed framework for simulation of VPSA units is presented. Within this framework, a detailed description of the adsorbent column is provided and linked with other ancillary parts of the unit. This modeling strategy is particularly suitable to demonstrate how the entire unit works and to identify operating constraints that may be caused by ancillary equipment. In order to apply this strategy to a practical example, we have simulated different cycles of VPSA processes using zeolite 5A for CO2 capture from a mixture with 15% CO2-85% N2 (resembling post-combustion flue gases of a coal-fired power station). Simulations of VPSA units with two, three and four columns and different cycle configurations were carried out. Inclusion of a rinse step was necessary to improve CO2 purity. However, using a single VPSA unit, it was not possible to achieve purity higher than 77% and for this reason a two-stage VPSA unit was simulated. The two-stage VPSA simulations include a three-column front VPSA process where CO2 purity is increased to 70% and then this gas is recompressed to a second, tail two-column VPSA unit where CO2 purity increases to 96%. The overall unit productivity of this process is 0.0146 kgCO2/(kg_(ads) h) with an energy consumption of 645.7 kJ/kgCO2.
机译:提出了用于模拟VPSA单元的详细框架。在此框架内,提供了吸附塔的详细说明,并与该单元的其他辅助部件链接。这种建模策略特别适合于演示整个单元的工作方式,并确定可能由辅助设备引起的运行限制。为了将此策略应用于实际示例,我们使用5A沸石从含15%CO2-85%N2的混合物(类似于燃煤电站的燃烧后烟道气)中捕获CO2的过程中,模拟了VPSA工艺的不同循环)。对具有两列,三列和四列以及不同循环配置的VPSA单元进行了仿真。必须包括冲洗步骤以提高CO2纯度。但是,使用单个VPSA单元无法获得高于77%的纯度,因此模拟了两级VPSA单元。两阶段VPSA模拟包括三柱前VPSA工艺,其中CO2纯度提高到70%,然后将该气体再压缩成第二尾部两柱VPSA单元,在此,CO2纯度提高到96%。该过程的总单位生产率为0.0146 kgCO2 /(kg_(ads)h),能耗为645.7 kJ / kgCO2。

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