Technological aspects of both Seawater and Brackish Water Desalination
Technological aspects of both Seawater and Brackish Water Desalination
Seawater and Brackish Water Desalination
This comprehensive technology market research report evaluates the global markets for saline water desalination plants. The goals are to provide meaningful information, unbiased analysis, and an assessment of the roles that desalination can play now and in the future of water treatment technology. Technical aspects of both thermal and membrane desalination processes are outlined, as well as a few alternative techniques that may be viable in the future. The report analyzes the water needs of 45 countries in five world regions. Known projects by country for the next 5 to 10 years are presented, along with estimated capacity additions, market values, and growth rates for each world region. ( http://www.bharatbook.com/detail.asp?id=152271&rt=Seawater-and-Brackish-Water-Desalination.html )
The need for pure water is a problem of global proportions. With each passing year, the quality of the planet's water measurably deteriorates, presenting challenges for the major users. Water treatment has become an area of global concern as individuals, communities, industries, countries, and their national institutions strive for ways to keep this essential resource available and suitable for use.
During the past 25 years, desalination systems have emerged as effective solutions for transforming saline, brackish, and contaminated water into useable and/or potable products. In addition to technical advances in the processes, parallel price drops in the processes, especially membrane-based methods, have made desalination affordable for countries that were previously unable to consider the possibility. This has created a robust and rapidly growing market in which projects and corporate developments are constantly evolving.
This study presents an overview of the technical aspects of the well-known thermal desalination methods (i.e., multistage flash distillation, multi-effect distillation, vapor compression), membrane desalination processes (i.e., reverse osmosis, nanofiltration, and a few novel desalination methods (e.g., freezing, gas hydrate formation, membrane distillation, capacitive deionization).
This Report Contains :
Descriptions of various desalination methods, including multistage flash distillation, multi-effect distillation, vapor compression, reverse osmosis and nanofiltration
The current market status of seawater and brackish water desalination plants, with data from 2009, estimates for 2010, and projections of compound annual growth rates (CAGRs) through 2015
Discussion of novel desalination methods, including freezing, gas hydrate formation, membrane distillation and capacitive deionization
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