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Fast and Selective Separation of Carbon Dioxide from Dilute Streams by Pressure Swing Adsorption using Solid Ionic Liquids

机译:固体离子液体变压吸附快速选择性分离稀释流中的二氧化碳

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摘要

The need to create a new approach to carbon capture processes that are economically viable has led to the design and synthesis of sorbents that selectively capture carbon dioxide by physisorption. Solid Ionic Liquids (SoILs) were targeted because of their tunable properties and solid form under operational conditions. Molecular modelling was used to identify candidate SoILs and a number of materials based on the low cost, environmentally friendly acetate anion were selected. The materials showed excellent selectivity for carbon dioxide over nitrogen and oxygen and moderate sorption capacity. However, the rate of capture was extremely fast, in the order of a few seconds for a complete adsorb-desorb cycle, under pressure swing conditions from 1 to 10 bar. This showed the importance of rate of sorption cycling over capacity and demonstrates that smaller inventories of sorbents and smaller process equipment are required to capture low concentration CO2 streams. Concentrated CO2 was isolated by releasing the pressure back to atmospheric. The low volatility and thermal stability of SoILs mean that both plant costs and materials costs can be reduced and plant size considerably reduced.
机译:对在经济上可行的碳捕集方法建立新方法的需求导致了吸附剂的设计和合成,该吸附剂通过物理吸附选择性地捕集二氧化碳。由于固体离子液体(SoIL)在操作条件下具有可调性和固体形式,因此成为目标。分子建模被用来识别候选的SoIL,并基于低成本,环保的乙酸根阴离子选择了许多材料。该材料对二氧化碳的氮和氧显示出极好的选择性,并且具有中等的吸附能力。但是,在1至10 bar的压力波动条件下,捕获速度非常快,整个吸附-解吸循环的时间约为几秒钟。这表明了吸附循环速率对容量的重要性,并表明需要较小的吸附剂库存和较小的处理设备来捕获低浓度的CO2物流。通过将压力释放回大气压来隔离浓缩的二氧化碳。 SoIL的低挥发性和热稳定性意味着可以降低工厂成本和材料成本,并显着减小工厂规模。

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