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Sustainable Water for the Future, Water Recycling Versus Desalination
12 Angebote vergleichen
Bester Preis: € 167,99 (vom 28.07.2018)Sustainable Water for the Future
ISBN: 9780444531155 bzw. 0444531157, in Englisch, Elsevier, neu.
Materials Science, This book is part of a series on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters.This book covers the fundamental and practical concepts and issues regarding the application of membrane technologies for sustainable water treatment. It describes and compares the effectiveness of desalination versus water recycling for long-term sustainable water use.
Sustainable Water for the Future - Water Recycling versus Desalination
ISBN: 9780080932170 bzw. 0080932177, in Englisch, Elsevier Reference Monographs, neu, E-Book, elektronischer Download.
This book will be a portion of a series of books on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters. This book will cover the fundamental and practical concepts and issues dealing with the application of membrane technologies for sustainable water treatment. It will describe and compare the effectiveness of desalination versus water recycling for long-term sustainable water use. - Desalination: description of global water situation along with the different technologies that are used for desalination. - Water Recycling: description of global water situation along with the different technologies that are used for water recycling. - Comparison of Water Recycline and Desalination: while there are a few books that individually discuss sustainable water use or water recycling or desalination applications, no efforts have yet been made to compare the two prevalent technologies, ie. water recycling and desalination.
Sustainable Water for the Future: Water Recycling versus Desalination (Sustainability Science and Engineering) (2009)
ISBN: 9780080932170 bzw. 0080932177, in Englisch, 444 Seiten, Elsevier Science, neu, Erstausgabe, E-Book, elektronischer Download.
This book will be a portion of a series of books on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters. This book will cover the fundamental and practical concepts and issues dealing with the application of membrane technologies for sustainable water treatment. It will describe and compare the effectiveness of desalination versus water recycling for long-term sustainable water use. - Desalination: description of global water situation along with the different technologies that are used for desalination. - Water Recycling: description of global water situation along with the different technologies that are used for water recycling. - Comparison of Water Recycline and Desalination: while there are a few books that individually discuss sustainable water use or water recycling or desalination applications, no efforts have yet been made to compare the two prevalent technologies, ie. water recycling and desalination. Kindle Edition, Ausgabe: 1, Format: Kindle eBook, Label: Elsevier Science, Elsevier Science, Produktgruppe: eBooks, Publiziert: 2009-10-05, Freigegeben: 2009-10-05, Studio: Elsevier Science.
Sustainable Water for the Future: Water Recycling versus Desalination (2009)
ISBN: 9780080932170 bzw. 0080932177, in Englisch, Elsevier Science, Elsevier Science, Elsevier Science, neu, E-Book, elektronischer Download.
This book is part of a series on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters.This book covers the fundamental and practical concepts and issues regarding the application of membrane technologies for sustainable water treatment. It describes and compares the effectiveness of desalination versus water recycling for long-term sustainable water use.- Describes the global water situation with respect to sustainability - Emphasizes the role of membrane technologies - Compares the strategies of water recycling and desalination.
Sustainable Water for the Future
ISBN: 9780444531155 bzw. 0444531157, in Englisch, Elsevier Science, neu, E-Book.
Technology, This book is part of a series on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters. This book covers the fundamental and practical concepts and issues regarding the application of membrane technologies for sustainable water treatment. It describes and compares the effectiveness of desalination versus water recycling for long-term sustainable water use. - Describes the global water situation with respect to sustainability - Emphasizes the role of membrane technologies - Compares the strategies of water recycling and desalination.
Sustainable Water for the Future: Water Recycling versus Desalination
ISBN: 9780080932170 bzw. 0080932177, in Englisch, Elsevier Science, Elsevier Science, neu, E-Book, elektronischer Download.
This book is part of a series on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters. This book covers the fundamental and practical concepts and issues regarding the application of membrane technologies for sustainable water treatment. It describes and compares the effectiveness of desalination versus water recycling for long-term sustainable water use- Describes the global water situation with respect to sustainability - Emphasizes the role of membrane technologies - Compares the strategies of water recycling and desalination.
Sustainable Water for the Future, Volume 2: Water Recycling versus Desalination (Sustainability Science and Engineering) (2009)
ISBN: 9780444531155 bzw. 0444531157, Band: 2, in Englisch, 444 Seiten, Elsevier, gebundenes Buch, neu, Erstausgabe.
Von Händler/Antiquariat, Book Depository US.
This book is part of a series on sustainability. Specifically, it deals with the issue of sustainable water use. Fresh sources of potable water are being depleted across the world. Pure water is the goal of water utilities as well as several industries. Well past the experimental stage, membrane processes are now a proven and reliable method of providing high-quality, cost-effective water. Membrane technologies have immediate applications to treatment of fresh, brackish and sea waters, as well as wastewater reclamation. With innovative module design and engineering, micro- and ultra-filtrations have become effective and economical for drinking water production, particularly for removal of microorganisms. Membrane bioreactors are being developed for municipal and industrial water recycling. Various membrane processes are also used to remove contaminants from industrial wastewaters. This book covers the fundamental and practical concepts and issues regarding the application of membrane technologies for sustainable water treatment. It describes and compares the effectiveness of desalination versus water recycling for long-term sustainable water use.- Describes the global water situation with respect to sustainability - Emphasizes the role of membrane technologies - Compares the strategies of water recycling and desalination, Hardcover, Ausgabe: 1, Label: Elsevier, Elsevier, Produktgruppe: Book, Publiziert: 2009-12-24, Studio: Elsevier, Verkaufsrang: 5709313.
Sustainable Water for the Future, Water Recycling Versus Desalination (2009)
ISBN: 9781843393405 bzw. 1843393409, in Englisch, Iwa Publishing, gebundenes Buch, neu.
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Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen
Sustainable Water for the Future: Water Recycling versus Desalination
ISBN: 9780444531155 bzw. 0444531157, in Englisch, Elsevier Science, gebundenes Buch, neu.
Die Beschreibung dieses Angebotes ist von geringer Qualität oder in einer Fremdsprache. Trotzdem anzeigen