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Nanocrystalline Ceramic Thin Films for   Solid Oxide Fuel Cells - Selvakumar Jayaprakasam
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ISBN: 9783659116582

ID: 9783659116582

Plasma Assisted Chemical Vapor Deposition: Precursor Selection and Applications Thin films are often applied to reduce the cost of product fabrication, improve performance, and provide more flexibility in product design. In addition, they are environmentally benign. The global energy industry revealed that thin films play a important part in technologies, namely photo-voltaic, solar power, geothermal power, nuclear power, batteries, and fuel cells. Meeting our energy needs, without causing the collapse of the ecosystems upon which we depend, has become a major thrust area. This has brought about the development of a range of `alternative` clean, renewable energy technologies such as solar, photovoltaic and wind energy. However, these alone will not be enough due to their inherently variable output, the remoteness of prime locations, and the difficulty in efficiently and cost effectively storing and transporting energy. There is an emerging technology, which could allow this demand to be met. The technology is the fuel cell, a device that oxidizes fuel, such as hydrogen, in a substantially isothermal electrochemical process directly converting chemical energy into electrical energy with optimal efficiency. Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells: Thin films are often applied to reduce the cost of product fabrication, improve performance, and provide more flexibility in product design. In addition, they are environmentally benign. The global energy industry revealed that thin films play a important part in technologies, namely photo-voltaic, solar power, geothermal power, nuclear power, batteries, and fuel cells. Meeting our energy needs, without causing the collapse of the ecosystems upon which we depend, has become a major thrust area. This has brought about the development of a range of `alternative` clean, renewable energy technologies such as solar, photovoltaic and wind energy. However, these alone will not be enough due to their inherently variable output, the remoteness of prime locations, and the difficulty in efficiently and cost effectively storing and transporting energy. There is an emerging technology, which could allow this demand to be met. The technology is the fuel cell, a device that oxidizes fuel, such as hydrogen, in a substantially isothermal electrochemical process directly converting chemical energy into electrical energy with optimal efficiency., LAP Lambert Academic Publishing

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Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells - Selvakumar Jayaprakasam
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Thin films are often applied to reduce the cost of product fabrication, improve performance, and provide more flexibility in product design. In addition, they are environmentally benign. The global energy industry revealed that thin films play a important part in technologies, namely photo-voltaic, solar power, geothermal power, nuclear power, batteries, and fuel cells. Meeting our energy needs, without causing the collapse of the ecosystems upon which we depend, has become a major thrust area. This has brought about the development of a range of ´´alternative´´ clean, renewable energy technologies such as solar, photovoltaic and wind energy. However, these alone will not be enough due to their inherently variable output, the remoteness of prime locations, and the difficulty in efficiently and cost effectively storing and transporting energy. There is an emerging technology, which could allow this demand to be met. The technology is the fuel cell, a device that oxidizes fuel, such as hydrogen, in a substantially isothermal electrochemical process; directly converting chemical energy into electrical energy with optimal efficiency. Plasma Assisted Chemical Vapor Deposition: Precursor Selection and Applications Bücher > Fremdsprachige Bücher > Englische Bücher Taschenbuch 17.05.2012 Buch (fremdspr.), LAP Lambert Academic Publishing, .201

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Thin films are often applied to reduce the cost of product fabrication, improve performance, and provide more flexibility in product design. In addition, they are environmentally benign. The global energy industry revealed that thin films play a important part in technologies, namely photo-voltaic, solar power, geothermal power, nuclear power, batteries, and fuel cells. Meeting our energy needs, without causing the collapse of the ecosystems upon which we depend, has become a major thrust area. This has brought about the development of a range of ´´alternative´´ clean, renewable energy technologies such as solar, photovoltaic and wind energy. However, these alone will not be enough due to their inherently variable output, the remoteness of prime locations, and the difficulty in efficiently and cost effectively storing and transporting energy. There is an emerging technology, which could allow this demand to be met. The technology is the fuel cell, a device that oxidizes fuel, such as hydrogen, in a substantially isothermal electrochemical process; directly converting chemical energy into electrical energy with optimal efficiency. Plasma Assisted Chemical Vapor Deposition: Precursor Selection and Applications Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, LAP Lambert Academic Publishing

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Thin films are often applied to reduce the cost of product fabrication, improve performance, and provide more flexibility in product design. In addition, they are environmentally benign. The global energy industry revealed that thin films play a important part in technologies, namely photo-voltaic, solar power, geothermal power, nuclear power, batteries, and fuel cells. Meeting our energy needs, without causing the collapse of the ecosystems upon which we depend, has become a major thrust area. This has brought about the development of a range of "alternative" clean, renewable energy technologies such as solar, photovoltaic and wind energy. However, these alone will not be enough due to their inherently variable output, the remoteness of prime locations, and the difficulty in efficiently and cost effectively storing and transporting energy. There is an emerging technology, which could allow this demand to be met. The technology is the fuel cell, a device that oxidizes fuel, such as hydrogen, in a substantially isothermal electrochemical process; directly converting chemical energy into electrical energy with optimal efficiency. Bücher / Naturwissenschaften, Medizin, Informatik & Technik / Chemie / Sonstiges

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Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells:Plasma Assisted Chemical Vapor Deposition: Precursor Selection and Applications Selvakumar Jayaprakasam Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells:Plasma Assisted Chemical Vapor Deposition: Precursor Selection and Applications Selvakumar Jayaprakasam Bücher > Wissenschaft > Chemie, LAP Lambert Academic Publishing

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Nanocrystalline Ceramic Thin Films for   Solid Oxide Fuel Cells
Autor:

Jayaprakasam, Selvakumar

Titel:

Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells

ISBN-Nummer:

9783659116582

Detailangaben zum Buch - Nanocrystalline Ceramic Thin Films for Solid Oxide Fuel Cells


EAN (ISBN-13): 9783659116582
ISBN (ISBN-10): 3659116580
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2012
Herausgeber: Lap Lambert Academic Publishing Mai 2012

Buch in der Datenbank seit 11.07.2008 16:40:50
Buch zuletzt gefunden am 16.01.2017 11:50:11
ISBN/EAN: 9783659116582

ISBN - alternative Schreibweisen:
3-659-11658-0, 978-3-659-11658-2

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