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首页> 外文期刊>Chemical Engineering & Technology: Industrial Chemistry -Plant Equipment -Process Engineering -Biotechnology >Carbon-Methanol Based Adsorption Heat Pumps: Identifying Accessible Parameter Space with Carbide-Derived Carbon Model Materials
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Carbon-Methanol Based Adsorption Heat Pumps: Identifying Accessible Parameter Space with Carbide-Derived Carbon Model Materials

机译:基于碳 - 甲醇的吸附热泵:用碳化物衍生的碳模型材料识别可接近的参数空间

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摘要

In adsorption heat pumps, the properties of the porous adsorbent and the refrigerant determine the performance. Major parameters for this working pair are the total uptake of the adsorptive, its kinetics, and the heat transfer characteristics. In the technical application despite powdered adsorbents, thin consolidated layers of the adsorbent can be attractive and obtained by a binder-based approach but likely result in competing material properties. Thus, for a process optimization, the accessible parameter space and interdependencies have to be known and were deduced in this work for model porous carbons (carbide-derived carbons derived from TiC and ZrC) and methanol as well as the addition of different amounts of boron nitride, silver, and graphite as heat-conductive agents and the use of two binders.
机译:在吸附热泵中,多孔吸附剂的性质和制冷剂确定了性能。 该工作对的主要参数是吸附,其动力学和传热特性的总摄取。 在技术应用中,尽管粉末状吸附剂,吸附剂的薄固结层可以具有吸引力并通过基于粘合剂的方法获得,但可能导致竞争材料性质。 因此,对于过程优化,可访问的参数空间和相互依赖性必须是已知的并且在这项工作中推导出用于型号多孔碳(来自TIC和Zrc的碳化物衍生的碳)和甲醇以及添加不同量的硼 氮化物,银和石墨作为导热剂和使用两个粘合剂。

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