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Development of solid reactant for thermal energy storage and temperature upgrading with carbonation/decarbonation reaction

机译:用碳酸盐/脱碳反应的热能储存固体反应物的研制

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Cyclic reaction performances of solid reactants for the CaO-CO{sub}2 chemical heat pump designed for upgrading and storing high-temperature thermal energy were studied. The solid reactants composed of CaO as a reactant and CaTiO{sub}3 as an inertframe work were prepared hy the conventional powder method or the metal alkoxide method. On the experiment of cyclic operation between the carbonation of CaO and the decarbonation of CaCO{sub}3 at 1023K, the reaction reversibility of solid reactants withthe inert CaTiO{sub}3 frame work was steady, whereas that of solid reactant without the inert frame work was decreasing with sintering solid particles during cyclic operation. The reaction rates in the first carbonation and the decarbonation of solidreactant prepared by the alkoxide method were accelerated about 1.8 and 2.4 times faster than those by the powder method, respectively, because of the smaller average diameter of reactant particles derived from the alkoxide method.
机译:研究了用于升级和储存高温热能的CaO-Co {Sub} 2化学热泵固体反应物的环状反应性能。 制备由CaO作为反应物和CATIO {Sub} 3组成的固体反应物作为惰性帧工作的常规粉末方法或金属醇盐法。 在1023K下CaO碳酸化与CaCo {Sub} 3的碳酸碳的循环操作的实验中,惰性粘虫{Sub} 3帧工作的固体反应物的反应可逆性稳定,而无惰性框架的固体反应物 在循环操作期间,在烧结固体颗粒下工作正在减少。 由醇盐法制备的第一碳酸化合物中的反应速率和通过醇盐法制备的固体反应物的脱碳分别比粉末方法的速度快,因为衍生自醇盐法的反应物颗粒的平均直径较小。

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