Property and Energy Conversion Technology of Solid Composite Sorbents, Paperb...

$ 58.68

Book Series: Engineering Materials Ser. Author: Jiao Gao, Ruzhu Wang, Guoliang an, Liwei Wang Format: Trade Paperback Item Length: 9.3 in Topic: Materials Science / General, Power Resources / General, Chemistry / Industrial & Technical, Mechanics / Thermodynamics Genre: Technology & Engineering, Science width: 6.1 in Item Width: 6.1 in Illustrator: Yes Book Title: Property and Energy Conversion Technology of Solid Composite Sorbents Number of Pages: Xix, 282 Pages Item Weight: 16.5 Oz Publisher: Springer Publication Year: 2022 ISBN: 9789813360907 Language: English

Description

Property and Energy Conversion Technology of Solid Composite Sorbents, Paperb.... Over the past 20 years, researchers have explored the use of thermal conductive porous matrix to improve heat and mass transfer performance. Property and Energy Conversion Technology of Solid Composite Sorbents, Paperback by Wang, Liwei; An, Guoliang; Gao, Jiao; Wang, Ruzhu, ISBN 9813360909, ISBN-13 9789813360907, Brand New, Free shipping in the US Solid chemisorption technology is an effective form of energy conversion for recovering low-grade thermal energy, but limited thermal conductivity and agglomeration phenomena greatly limit its performance. Over the past 20 years, researchers have explored the use of thermal conductive porous matrix to improve heat and mass transfer performance. Their efforts have yielded composite sorption technology, which is now extensively being used in refrigeration, heat pumps, energy storage, and de-NOx applications. This book reviews the latest technological advances regarding composite solid sorbents. Various development methods are introduced and compared, kinetic models are presented, and different cycles are analyzed. Given its scope, th will benefit experts involved in developing novel materials and cycles for energy conversion, as well as engineers working to develop effective commercialized energy conversion systems based on solid sorption technology