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A new method for scale-up of solvent-based post-combustion carbon capture process with packed columns

机译:一种新方法,用于扩大溶剂基后燃烧碳捕获过程与包装柱

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Solvent-based post-combustion carbon capture (PCC) with packed column is the most commercially ready CO2 capture technology. To study commercial-scale PCC processes, validated pilot scale models are often scaled up to commercial-scale using the generalized pressure drop correlation (GPDC) chart which requires assuming the column pressure drop. The GPDC method may lead to either over-estimation or under-estimation of the column diameter. In this paper, a new method for estimating the packed column diameter without assuming the pressure drop has been proposed and used for model scale-up. The method was validated by scaling between two existing pilot plant sizes. The CO2 capture process was simulated in Aspen Plus (R) and validated at pilot scale. The validated model was scaled up to commercial CO2 capture plant capable of serving a 250 MWe combined cycle gas turbine power plant using the new method proposed in this study. The results obtained from the scale-up study were compared to those obtained when the GPDC method was used to design the same commercial CO2 capture plant. The results showed that the GPDC method overestimated the absorber and stripper diameter by 1.6 % and 8.5 % respectively. Process simulation results for the commercial-scale plant showed about 2.12 % and 5.63 % lower solvent flow rate and reboiler duty with the proposed method. Therefore, the capital and operating costs for the process using the newly proposed scale-up method could be lower based on our estimates of the column dimensions, solvent flow rate and specific reboiler duty.
机译:溶剂基后燃烧碳捕获(PCC)用填充柱是最商用的CO2捕获技术。为了研究商业规模的PCC过程,经过验证的导频规模模型通常使用推广压降相关性(GPDC)图表缩放到商业规模,这需要假设列压下降。 GPDC方法可能导致柱直径的过度估计或估计。在本文中,已经提出了一种估计填充柱直径而不假设压降的新方法,并用于模型比例。通过在两个现有的试验厂尺寸之间进行缩放来验证该方法。在Aspen Plus(R)中模拟了CO2捕获过程,并在导频规模验证。经过验证的模型被缩放到商业二氧化碳捕获设备,该捕获工厂能够使用本研究中提出的新方法为250 MWE组合循环燃气轮机发电厂提供服务。将从扩展研究获得的结果与用于设计相同的商业二氧化碳捕获植物的GPDC方法时获得的结果。结果表明,GPDC方法分别高估吸收器和剥离直径为1.6%和8.5%。商业规模植物的过程仿真结果显示溶剂流速和溶剂流速和再沸器占该方法的约2.12%和5.63%。因此,基于我们的柱尺寸,溶剂流速和特定再沸器义务的估计,使用新提出的扩展方法的过程的资本和运营成本可能会降低。

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