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Process design of aqueous ammonia-based post-combustion CO2 capture

机译:基于氨水的燃烧后CO2捕集的工艺设计

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In the present work, the aqueous ammonia-based post-combustion CO capture (PCC) process is simulated using the rate-based model in Aspen Plus, by which the method of sizing column heights is revealed. The heights of the staged CO absorbers and the NH absorber are determined as 5 m, 6 m, and 6 m; in addition, the heights of the CO and NH strippers are 12 m and 6 m, respectively. It is well known that the pressurized CO stripper can reduce the energy burden for the solvent regeneration, effectively. However, since the staged CO absorbers are operated at atmosphere, the pressurized lean solvent needs to be relieved to atmosphere either in the absorber or before entering the absorber. In the present work, the electric power that is used to compress the depressurized vapor back into the CO2 stripper compares with the energy saving from the high pressure CO stripper in order to find the optimal operating conditions at which the minimal overall regeneration energy is posed. The minimum requirement can be found at 3.0 GJ/ton-CO under the operating conditions of the CO2 lean loading (mol-CO2/mol-NH3) at 0.13 and the CO stripper at 2 atm.
机译:在当前工作中,使用Aspen Plus中基于速率的模型对基于氨水的燃烧后CO捕集(PCC)过程进行了模拟,从而揭示了确定塔高的方法。分级的CO吸收器和NH吸收器的高度被确定为5m,6m和6m。此外,CO和NH汽提塔的高度分别为12 m和6 m。众所周知,加压的CO汽提器可以有效地减少溶剂再生的能量负担。但是,由于分段式CO吸收器是在大气中运行的,因此需要在吸收器中或进入吸收器之前将加压的贫溶剂释放到大气中。在当前工作中,用于将减压蒸汽压缩回CO2汽提塔的电能与高压CO汽提塔的节能进行了比较,以便找到最佳的运行条件,在此条件下,总再生能量最少。最低要求可以在贫油量(mol-CO2 / mol-NH3)为0.13和CO汽提塔为2​​ atm的操作条件下以3.0 GJ / ton-CO的水平找到。

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