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Addressing the criticalities for the deployment of adsorption-based CO2 capture processes

机译:解决基于吸附的CO2捕获过程部署的关​​键性

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Adsorption-based separations are a promising alternative for CO2 capture, for both pre-combustion and post-combustion applications. The desirable characteristics of solid sorbents and the flexible cyclic nature of the processes operated with fixed beds open the doors for potential improvement over the most established technology, which is represented by amine-scrubbing systems. Two main routes are available for the regeneration of the sorbents, i.e. either pressure-driven (PSA/VSA cycles) or temperature-driven desorption (TSA cycles) respectively. A series of criticalities are encountered in the implementation of both solutions: They prevent adsorption-based separations to reach breakthrough performances, in terms of energy consumption and plant productivity. To tackle these issues, research should address different aspects: Besides the development of innovative sorbents, the fine-tuning of both unit operation and cycle design is believed to be the key to advancing this technology towards commercial success.
机译:基于吸附的分离是CO2捕获有前途的替代,对于预燃烧和燃烧后的应用程序。固体吸附剂的所希望的特性,用固定床操作的过程的柔性环状性质打开门用于在最成熟的技术,其通过胺的洗涤系统表示潜在的改进。两个主要的途径分别可用于吸附剂的再生,即或者压力驱动(PSA / VSA循环)或温度驱动的脱附(TSA循环)。一系列的临界性的两个解决方案的实施遇到:他们防止基于吸附分离,达到突破性的演出,在能源消耗和工厂的生产效率方面。为了解决这些问题,研究应针对不同的方面:除了创新的吸附剂的发展,无论是机组运行和周期设计的微调被认为是关键走向商业成功推进这一技术。

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