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CO2 capture in humid gas using ZnO/activated carbon and ZnO reactivity with CO2

机译:使用ZnO /活性炭捕获湿气中的CO2,并且ZnO与CO2反应

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Carbon dioxide capture with ZnO/activated carbon adsorbates and reactivity of ZnO particle with CO2 are discussed for the effective CO2 capture in humid exhaust gas. Coarse ZnO particles (d = 670 nm), and small diameters, d < 20 nm, of zinc oxide particles on activated carbon supports were prepared. The amounts of CO2 adsorbed on ZnO particles and activated carbon supports were measured and calculated. The calculated value and thermal gravimetric analysis results indicate that only the surface layer (<0.5 nm) of ZnO particles reacts with CO2 and H2O for all sizes of ZnO particles. These results lead to the conclusion that ZnO reactivity with CO2 is still independent of the particle size even in the small diameters in this study. The results quantitatively present the gas-phase carbonation rate of ZnO and its independency on the particle diameter for the first time. This research sheds light on the difficulty in using ZnO as CO2 adsorbent. Some possible solutions for the difficulty are also discussed in view of enhancing of its reactivity.
机译:讨论了用ZnO /活性炭吸附物捕获二氧化碳以及ZnO颗粒与CO2的反应性,以有效地捕获湿式废气中的CO2。准备了粗ZnO颗粒(d = 670 nm),以及在活性炭载体上的小直径d <20 nm的氧化锌颗粒。测量和计算吸附在ZnO颗粒和活性炭载体上的CO2量。计算值和热重分析结果表明,对于所有尺寸的ZnO颗粒,仅ZnO颗粒的表面层(<0.5 nm)与CO2和H2O反应。这些结果得出的结论是,即使在小直径条件下,ZnO与CO2的反应性仍与粒径无关。结果首次定量地给出了ZnO的气相碳化速率及其对粒径的独立性。这项研究揭示了使用ZnO作为CO2吸附剂的困难。鉴于其反应性的增强,还讨论了该困难的一些可能的解决方案。

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