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Application of inorganic oxide/carbon dioxide reaction system to a chemical heat pump

机译:无机氧化物/二氧化碳反应系统在化学热泵中的应用

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A new chemical heat pump designed to utilize waste heat generated from high-temperature processes carried out at temperatures above 570 K is discussed. Inorganic oxide/carbon dioxide reaction systems were surveyed experimentally, and the lead oxide/carbon dioxide reaction system was found to be a suitable reaction system for the heat pump. A mechanical driving type and a thermal driving type of heat pump using the reaction are proposed. This system proved feasible at operating temperatures above 570 K and was durable enough to withstand numerous reaction cycles. An empirical reaction rate equation for the carbonation of lead oxide, which is an important process in the operation of the heat pump, is proposed. Using the rate equation, feasibility of the mechanical driving type heat pump using this reaction system was demonstrated numerically.
机译:讨论了一种新的化学热泵,该热泵被设计为利用在570 K以上的温度下进行的高温过程产生的废热。对无机氧化物/二氧化碳反应系统进行了实验研究,发现氧化铅/二氧化碳反应系统是适用于热泵的反应系统。提出了利用该反应的热泵的机械驱动方式和热驱动方式。该系统在高于570 K的工作温度下被证明是可行的,并且足够耐用以承受许多反应循环。提出了氧化铅碳化的经验反应速率方程,这是热泵运行中的重要过程。使用速率方程,对使用该反应系统的机械驱动式热泵的可行性进行了数值验证。

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