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Regenerable potassium-based alumina sorbents prepared by CO2 thermal treatment for post-combustion carbon dioxide capture

机译:通过二氧化碳热处理制备的可再生钾基氧化铝吸附剂,用于燃烧后二氧化碳捕集

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Potassium carbonate supported on alumina is used as a solid sorbent for CO2 capture at low temperatures. However, its CO2 capture capacity decreases immediately after the first cycle. This regeneration problem is due to the formation of the by-product [KAl(CO3)(OH)(2)] during CO2 sorption. To overcome this problem, a new regenerable potassium-based sorbent was fabricated by CO2 thermal treatment of sorbents prepared by the impregnation of delta-alumina with K2CO3 in the presence of 10 vol% CO2 and 10 vol% H2O. The CO2 capture capacities of the new regenerable sorbents were maintained over multiple CO2 sorption tests. These results can be explained by the fact that the sorbent prepared by CO2 thermal treatment did not form any by-product during CO2 sorption. Based on these results, we suggest that the regeneration properties of potassium-based sorbents using delta-alumina could be significantly improved by the use of the CO2 thermal treatment developed in this study.
机译:负载在氧化铝上的碳酸钾用作固体吸附剂,用于在低温下捕获CO2。但是,其二氧化碳捕集能力在第一个循环后立即下降。该再生问题是由于在CO2吸附过程中形成了副产物[KAl(CO3)(OH)(2)]。为了克服这个问题,通过在10%(体积)的CO2和10%(体积)的H2O存在下,用K2CO3浸渍增量氧化铝制备的吸附剂进行CO2热处理,制得了一种新的可再生钾基吸附剂。新的可再生吸附剂的CO2捕集能力在多次CO2吸附测试中得以保持。这些结果可以通过以下事实解释:通过CO2热处理制备的吸附剂在CO2吸附过程中不形成任何副产物。根据这些结果,我们建议通过使用本研究开发的CO2热处理可以显着改善使用增量氧化铝的钾基吸附剂的再生性能。

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