Salinity Gradient Heat Engines
Language: English
Published by Elsevier Science & Technology, Woodhead Publishing, 2021
- Softcover
- New

Seller: BuchWeltWeit Ludwig Meier e.K., Bergisch Gladbach, GermanyBuchWeltWeit Ludwig Meier e.K.
AbeBooks seller since January 11, 2012
Condition: New
£ 167.81
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Add to basketItem description from seller
This item is printed on demand - it takes 3-4 days longer - Neuware -Salinity Gradient Heat Engines classifies all the existing SGHEs and presents an in-depth analysis of their fundamentals, applications and perspectives. The main SGHEs analyzed in this publication are Osmotic, the Reverse Electrodialysis, and the Accumulator Mixing Heat Engines. The production and regeneration unit of both cycles are described and analyzed alongside the related economic and environmental aspects. This approach provides the reader with very thorough knowledge on how these technologies can be developed and implemented as a low-impact power generation technique, wherever low-temperature waste-heat is available. This book will also be a very beneficial resource for academic researchers and graduate students across various disciplines, including energy engineering, chemical engineering, chemistry, physics, electrical and mechanical engineering. Englisch.
Seller Inventory # 9780081028476
- Title
- Salinity Gradient Heat Engines
- Author
- Alessandro Tamburini
- Publisher
- Elsevier Science & Technology, Woodhead Publishing
- Publication year
- 2021
- Condition
- Neu
- Binding
- Taschenbuch
- Language
- English
- ISBN 10
- 0081028474
- ISBN 13
- 9780081028476
- Item weight
- 608 grams
- Dimensions
- 229x152x17 mm
- Series
- Book 1 of 1: Woodhead Publishing Series in Energy
Salinity Gradient Heat Engines classifies all the existing SGHEs and presents an in-depth analysis of their fundamentals, applications and perspectives. The main SGHEs analyzed in this publication are Osmotic, the Reverse Electrodialysis, and the Accumulator Mixing Heat Engines. The production and regeneration unit of both cycles are described and analyzed alongside the related economic and environmental aspects. This approach provides the reader with very thorough knowledge on how these technologies can be developed and implemented as a low-impact power generation technique, wherever low-temperature waste-heat is available.
This book will also be a very beneficial resource for academic researchers and graduate students across various disciplines, including energy engineering, chemical engineering, chemistry, physics, electrical and mechanical engineering.
- Focuses on advanced, yet practical, recovery of waste heat via salinity gradient heat engines
- Outlines the existing salinity gradient heat engines and discusses fundamentals, potential and perspectives of each of them
- Includes economics and environmental aspects
- Provides an innovative reference for all industrial sectors involving processes where low-temperature waste-heat is available.
"Synopsis" may belong to another edition of this title.
About the Author
Dr. Andrea Cipollina is Senior Assistant Professor of Conceptual Design of Chemical Processes. He is heavily involved in research activities on water desalination and renewable energy technologies as well as Salinity Gradient Power processes, with a particular focus on Computer Aided Process modelling and optimisation, fluid flow characterization and prototype design, commissioning and operation applied to desalination and membranes-based SGP technologies. He has published more than 100 works as journal papers or conference contributions in the field of desalination, SGP technologies and membrane separation. He was awarded with the Senior Moulton Medal 2013 by the Institution of Chemical Engineers (UK). He is the editor of Sustainable Energy from Salinity Gradient, Woodhead Publishing, 2016.
Dr Giorgio Micale is a Professor of Conceptual Design of Chemical Processes. His core research topics are the study of Conventional and Renewable Energy Desalination processes, Salinity Gradient Power processes, Computational Fluid Dynamics, Mixing and Multiphase Flows, Computer Aided Process Engineering. He currently leads the University of Palermo team within the RED Heat-to-Power, REvivED, ReWaCEM, BAoBAB and ZERO BRINE H2020 projects building-up significant expertise in the area of electro-membrane processes, desalination and salinity gradient power technologies and brine valorisation processes. He has published more than 100 works as journal papers or conference contributions in the field of desalination, SGP technologies and membrane separation. He was awarded with the Senior Moulton Medal 2013 by the Institution of Chemical Engineers (UK). He was a member of the Board of Directors of the European Desalination Society during the years 2012-2017. He is the editor of Sustainable Energy from Salinity Gradient, Woodhead Publishing, 2016.
"About the title" may belong to another edition of this title.
BuchWeltWeit Ludwig Meier e.K.
Bergisch Gladbach, Germany
AbeBooks seller since January 11, 2012
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