Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation

Nonfiction, Science & Nature, Technology, Engineering, Chemical & Biochemical
Cover of the book Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation by , Elsevier Science
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart
Author: ISBN: 9780444639622
Publisher: Elsevier Science Publication: July 25, 2018
Imprint: Elsevier Language: English
Author:
ISBN: 9780444639622
Publisher: Elsevier Science
Publication: July 25, 2018
Imprint: Elsevier
Language: English

Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation focuses on the various types of membrane- based salinity gradient processes that can be applied for desalination. Topics cover salinity gradient processes for desalination, such as Forward Osmosis (FO) and Pressure Retarded Osmosis (PRO), with chapters selected exclusively from a number of world-leading experts in various disciplines and from different continents. Sections include discussions on the theoretical and fundamental approaches to salinity gradient processes, various types of membrane materials and development, i.e., flat sheet and hollow fiber, various salinity water sources for an economically feasible process, and large-scale applications.

Finally, the book focuses on economically feasible process optimization when both operational and capital costs are considered.

  • Features specific details on salinity gradient techniques for various desalination applications of industrial and academic interest
  • Contains unique discussions on membrane development and process optimization that normally only appear briefly in research articles
  • Includes examples of internationally best practices for the evaluation of several system parameters, including thermodynamic optimization, high power density membrane development, and more
  • Discusses large-scale applications and provides examples of such implementations, such as Statkraft, Japanese Megaton, and Korean GMVP
View on Amazon View on AbeBooks View on Kobo View on B.Depository View on eBay View on Walmart

Membrane-Based Salinity Gradient Processes for Water Treatment and Power Generation focuses on the various types of membrane- based salinity gradient processes that can be applied for desalination. Topics cover salinity gradient processes for desalination, such as Forward Osmosis (FO) and Pressure Retarded Osmosis (PRO), with chapters selected exclusively from a number of world-leading experts in various disciplines and from different continents. Sections include discussions on the theoretical and fundamental approaches to salinity gradient processes, various types of membrane materials and development, i.e., flat sheet and hollow fiber, various salinity water sources for an economically feasible process, and large-scale applications.

Finally, the book focuses on economically feasible process optimization when both operational and capital costs are considered.

More books from Elsevier Science

Cover of the book Robertson on Library Security and Disaster Planning by
Cover of the book The Tribology Handbook by
Cover of the book Hidden Persuaders in Cocoa and Chocolate by
Cover of the book PCI DSS 3.1 by
Cover of the book Foundations of Professional Psychology by
Cover of the book Structure and Dynamics of Macromolecules: Absorption and Fluorescence Studies by
Cover of the book Handbook of Neuro-Oncology Neuroimaging by
Cover of the book Advances in Virus Research by
Cover of the book The Science of Fitness by
Cover of the book Particles and Waves in Electron Optics and Microscopy by
Cover of the book Fundamentals of Discrete Element Methods for Rock Engineering: Theory and Applications by
Cover of the book Advances in Parasitology by
Cover of the book Principles and Applications of Clinical Mass Spectrometry by
Cover of the book Portfolio Optimization with Different Information Flow by
Cover of the book Handbook of Algebraic Topology by
We use our own "cookies" and third party cookies to improve services and to see statistical information. By using this website, you agree to our Privacy Policy