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Overview on Pressure Swing Adsorption (PSA) as CO2 Capture Technology: State-of-the-Art, Limits and Potentials

机译:变压吸附(psa)作为CO2捕获技术概述:最新技术,限制和潜力

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摘要

This paper provides an insight on state-of-the-art, limits and potentials of pressure swing adsorption (PSA) as CO2 capture technology into power plants. To get a complete picture both post- and pre-combustion cases are considered. The expertise developed with modeling and simulation of PSA processes in power plants stressed the need of a holistic approach to the analysis. The different domains which determine the viability of the technology are taken into account, together with their mutual influence. Accordingly, adsorbent materials characteristics, process configurations and integration strategies are investigated and discussed, in order to provide a general evaluation. In post-combustion applications, PSA has been widely assessed with regard to adsorbent materials and processes. The integration into power plant does not entail significant issues, with a good potential for retrofitting old plants. An excessively large footprint of the separation unit has been reported, which seems to question the feasibility of PSA. In pre-combustion applications, prospects for improving adsorbent materials and processes are noticed. Good potential for PSA is envisaged whit hot gas separation processes, especially with sorption-enhanced processes. Furthermore, the complexity of the arrangements in pre-combustion cases may open room for interesting alternative system configurations, like power and H2 coproduction layouts.
机译:本文提供了有关电厂中作为CO2捕集技术的最新技术,变压吸附(PSA)的极限和潜力的信息。为了全面了解燃烧后和燃烧前的情况。发电厂PSA过程的建模和仿真所积累的专业知识强调了需要整体分析方法。考虑了确定技术可行性的不同领域,以及它们的相互影响。因此,对吸附剂材料的特性,工艺配置和集成策略进行了研究和讨论,以便提供总体评估。在燃烧后的应用中,对PSA进行了吸附材料和工艺方面的广泛评估。集成到电厂中不会带来重大问题,并且具有改造旧电厂的良好潜力。据报道,分离单元的占地面积过大,这似乎对PSA的可行性提出了质疑。在预燃烧应用中,注意到了改进吸附材料和工艺的前景。设想在热气体分离过程中,特别是在吸附增强过程中,PSA的潜力很大。此外,预燃情况下装置的复杂性可能会为有趣的替代系统配置(例如动力和H2联合生产布局)打开空间。

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