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首页> 外文期刊>Journal of Chemical Engineering of Japan >Heat and Mass Transfer in a Packed Bed Reactor for Calcium Oxide/Carbon Dioxide Chemical Heat Pump
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Heat and Mass Transfer in a Packed Bed Reactor for Calcium Oxide/Carbon Dioxide Chemical Heat Pump

机译:填充床反应器中用于传热和传质的氧化钙/二氧化碳化学热泵

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References(6) Cited-By(2) In this study, a chemical heat pump using a calcium oxide/carbon dioxide reaction system was discussed. In order to establish the operational conditions of heat pump, heat storage and heat generation experiments were done under various reaction pressure and temperature conditions in a packed bed reactor. Decarbonation reactivity of CaCO3 was higher at higher temperature and lower pressure, and practical reaction rate was observed at reaction temperature about 1023 K under reaction pressure of 0.1 atm. Carbonation reactions of CaO proceeded almost at the equilibrium temperature of the reaction pressure. Carbonation at temperature of 1123 K was observed at reaction pressure of 1.0 atm. Then, an analytical model based on heat and mass transfer was proposed to explain the observed phenomena during carbonation in the packed bed. The analytical model enables us to clarify the detailed behavior in the bed during carbonation. The carbonation was controlled mainly by heat transfer in the packed bed. The influence of the gas flow on heat transfer was indispensable for the analytical model. The model represented well the phenomena in the experimental packed bed reactor.
机译:参考文献(6)Cited-By(2)在本研究中,讨论了使用氧化钙/二氧化碳反应系统的化学热泵。为了建立热泵的运行条件,在填充床反应器中在各种反应压力和温度条件下进行了储热和生热实验。 CaCO 3的脱碳反应性在较高温度和较低压力下较高,并且在0.1atm的反应压力下在约1023K的反应温度下观察到实际的反应速率。 CaO的碳酸化反应几乎在反应压力的平衡温度下进行。在1.0atm的反应压力下观察到在1123K的温度下碳化。然后,提出了一种基于传热和传质的分析模型来解释填充床碳化过程中观察到的现象。分析模型使我们能够澄清碳化过程中床层的详细行为。碳酸化主要通过填充床中的传热来控制。对于分析模型,气流对传热的影响是必不可少的。该模型很好地说明了实验填充床反应器中的现象。

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