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Titlebook: Dynamics of Adsorptive Systems for Heat Transformation; Optimization of Adso Alessio Sapienza,Andrea Frazzica,Yuri Aristov Book 2018 The Au

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Adsorptive Heat Transformation and Storage: Thermodynamic and Kinetic Aspects,nd gas turbines, etc. (Cengel, Boles in Thermodynamics: an engineering approach, 4th edn. McGray-Hill Inc., New York, 2002). Traditional heat engine cycles are mainly based on burning of organic fuel that may result in dramatic increase of CO. emissions and global warming. The world community has re
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Experimental Findings: Main Factors Affecting the Adsorptive Temperature-Driven Cycle Dynamics,ch adsorption is initiated by a jump of pressure over the sample, is the most adequate for pressure-driven AHT cycles; (ii) the Large Temperature Jump (LTJ) method, in which adsorption is enabled by a temperature swing of a heat exchanger wall that is in contact with the adsorbent under an almost is
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,Optimization of an “Adsorbent/Heat Exchanger” Unit,. This concerns, first of all, enhancement of the AHT dynamics, like the ad/desorption rate and finally the specific power that is the main figure of merit of the AHT dynamic performance. Therefore, further R&D activity is necessary to realize the potential economic and ecological advantages of the
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,Optimization of an “Adsorbent/Heat Exchanger” Unit,merit of the AHT dynamic performance. Therefore, further R&D activity is necessary to realize the potential economic and ecological advantages of the AHT technology [.]. The optimization of the AHT dynamic performance is a multi-purpose task that includes, first of all, the improvement of the “adsorbent–heat exchanger” unit.
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2191-530X olidated adsorbent beds.Includes detailed kinetic measuremen.This book investigates the adsorption dynamics of water, methanol, ethanol, and ammonia vapor on loose and consolidated adsorbent beds, as well as the impact of this aspect on the overall performance of adsorption systems for heat transfor
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