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A state of the art of required techniques for employing activated carbon in renewable energy powered adsorption applications

机译:在可再生能源驱动的吸附应用中采用活性炭的所需技术的最新技术水平

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摘要

This paper reviews, for the first time, the measurement adsorption characteristics techniques to facilitate optimal testing of the validity of adsorbent materials in adsorption applications. Thermo-physical properties, adsorption characteristics and modelling techniques are presented. The characterisation of material thermo-physical properties includes true and bulk densities, specific heat capacity, surface area, pore volume distribution and thermal conductivity. The adsorption characteristics were categorized into adsorption isotherms and kinetics including experimental and theoretical equations. A range of models used in the simulation of adsorption cooling systems is presented and discussed. The paper highlights the conditions for which each measurement technique is most suitable and the limitations of modelling techniques, which is a vital element in the robust assessment of the performance of adsorption cooling units.
机译:本文首次回顾了测量吸附特性技术,以促进对吸附应用中吸附材料有效性的最佳测试。介绍了热物理性质,吸附特性和建模技术。材料热物理性质的表征包括真实和堆积密度,比热容,表面积,孔体积分布和热导率。吸附特性分为吸附等温线和动力学,包括实验和理论方程。提出并讨论了用于吸附冷却系统模拟的一系列模型。本文重点介绍了每种测量技术最适合的条件以及建模技术的局限性,这是鲁棒评估吸附冷却装置性能的重要因素。

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