Membrane Distillation: Materials and Processes

Author:   Young Moo Lee ,  Enrico Drioli
Publisher:   Nova Science Publishers Inc
ISBN:  

9781536174489


Pages:   347
Publication Date:   06 May 2020
Format:   Hardback
Availability:   Available To Order   Availability explained
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Membrane Distillation: Materials and Processes


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Overview

Desalination is imperative to mitigate the global water scarcity as it produces drinking water from unpotable water. Currently, reverse osmosis membrane processes are widely used and account for 60% of desalination plants globally as they have lower energy requirements than other techniques, such as thermal desalination. Another promising alternative to desalination is membrane distillation (MD), which has been highlighted as one of the most promising and cost-effective desalination technologies over the last five decades. MD is a thermally driven desalination process that uses microporous and hydrophobic membranes through which only vapor can pass. Because non-volatile ions cannot pass through the membrane, MD theoretically achieves 100% salt rejection. In addition, MD is superior to other techniques as it is conducted at relatively low temperature and pressure, and is less sensitive to the feed concentration. MD is a desalination process that uses the vapor pressure difference between the feed and permeate as the driving force through the membranes. Over 2,800 scientific publications appeared in Web of Science as of September 2019 (over 400 just in 2019) describing the current state of development and potential future applications of MD. Although these publications provide excellent knowledge regarding MD, they are rather fragmented, and it is difficult to gain a complete overview of the basic principles and functions of membranes for MD configurations and their application to real plants. In this book, we introduce MD from the invention of this technique to the recent developments in membranes and processes. The membrane materials and configurations of MD processes are systematically discussed, along with an introduction to real pilot plants that have been installed and tested in the field, and an economic analysis of MD. The objective of this book is to provide a short, but reasonably comprehensive, introduction to MD to graduate students and persons with an engineering or natural science background, to gain a basic understanding of MD, and the associated materials, configurations, and applications, without studying a large number of different reference books.

Full Product Details

Author:   Young Moo Lee ,  Enrico Drioli
Publisher:   Nova Science Publishers Inc
Imprint:   Nova Science Publishers Inc
Weight:   0.786kg
ISBN:  

9781536174489


ISBN 10:   1536174483
Pages:   347
Publication Date:   06 May 2020
Audience:   College/higher education ,  Postgraduate, Research & Scholarly
Format:   Hardback
Publisher's Status:   Active
Availability:   Available To Order   Availability explained
We have confirmation that this item is in stock with the supplier. It will be ordered in for you and dispatched immediately.

Table of Contents

Preface; Introduction; Introduction to Membrane Distillation; Properties and Fabrication Methods of Membranes for Membrane Distillation; Polymeric Membranes for Membrane Distillation; Ceramic Membranes for Membrane Distillation; Recent Progress in the Preparation and Modification of Omniphobic Membranes for Membrane Distillation; Use of Antiscalants in Membrane Distillation; Membrane Modules for Membrane Distillation; Configuration of Membrane Distillation; Hybrid Configuration of Membrane Distillation: Vacuum Multi-Effect Membrane Distillation; Hybrid Configuration of Membrane Distillation: Pressure-Retarded Osmosis and Reverse Osmosis with Membrane Distillation; Membrane Distillation Powered by Solar Thermal Energy: Pilot Projects; Economic Analysis of Membrane Distillation; Perspectives in Membrane Distillation; Index.

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Author Information

Young Moo Lee, Department of Energy Engineering, College of Engineering, Hanyang University, Seoul, Korea Enrico Drioli, Department of Energy Engineering, College of Engineering, Hanyang University, Seoul, Korea; Institute on Membrane Technology, National Research Council of Ital, ITM-CNR, University of Calabria, Italy

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