书目名称 | Dynamics of Adsorptive Systems for Heat Transformation |
副标题 | Optimization of Adso |
编辑 | Alessio Sapienza,Andrea Frazzica,Yuri Aristov |
视频video | http://file.papertrans.cn/285/284005/284005.mp4 |
概述 | Offers reader essential insights into the study of the adsorption dynamics of water, methanol, ethanol, and ammonia vapour on loose and consolidated adsorbent beds.Includes detailed kinetic measuremen |
丛书名称 | SpringerBriefs in Applied Sciences and Technology |
图书封面 |  |
描述 | .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 transformation. In particular, it presents the results of kinetic measurements made using the large temperature jump (LTJ) method, the most efficient way to study adsorption dynamics under realistic operating conditions for adsorptive heat transformers. The information provided is especially beneficial for all those working on the development of novel adsorbent materials and advanced adsorbers for heating and cooling applications..Today, technologies and systems based on adsorption heat transformation (AHT) processes offer a fascinating option for meeting the growing worldwide demand for air conditioning and space heating. Nevertheless, considerable efforts must still be made in order to enhance performance so as to effectively compete with commonly used electrical compression and absorption machines. For this purpose, intelligent design for adsorption units should above all focus on finding a convenient choice of adsorbent material by means of a compreh |
出版日期 | Book 2018 |
关键词 | Adsorber Design; Adsorption Dynamics; Adsorption Systems for Heat Transformation; Heat Exchanger; Heat T |
版次 | 1 |
doi | https://doi.org/10.1007/978-3-319-51287-7 |
isbn_softcover | 978-3-319-51285-3 |
isbn_ebook | 978-3-319-51287-7Series ISSN 2191-530X Series E-ISSN 2191-5318 |
issn_series | 2191-530X |
copyright | The Author(s) 2018 |