It is now agreed that for harnessing hydrogen, particularly for vehicular transport, storage forms the crucial issue. Tremendous efforts have been devoted to the research and development of materials that can store sufficient hydrogen so as to have the adequate hydrogen capacity and at the same time possess suitable thermodynamics and kinetics. After approximately two decades of exploration, the scope of hydrogen storage materials has got greatly transformed, from traditional metal hydrides (having~2 wt. %) to complex and chemical hydrides having large variety of materials that possesses high storage capacity. The introduction of complex hydride to hydrogen storage enhanced researcher's interest to design and optimize new materials. These materials satisfy most of the requirements laid down by US Department of Energy. Hydrogen storage materials can be grouped into three basic types according to the nature of the metal-hydrogen bond. These are (a) elemental hydride (b) intermetallic hydride (c) complex hydrid. The studies discussed and described in this book focused on above mentioned three different classes of hydrides.
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It is now agreed that for harnessing hydrogen, particularly for vehicular transport, storage forms the crucial issue. Tremendous efforts have been devoted to the research and development of materials that can store sufficient hydrogen so as to have the adequate hydrogen capacity and at the same time possess suitable thermodynamics and kinetics. After approximately two decades of exploration, the scope of hydrogen storage materials has got greatly transformed, from traditional metal hydrides (having~2 wt. %) to complex and chemical hydrides having large variety of materials that possesses high storage capacity. The introduction of complex hydride to hydrogen storage enhanced researcher's interest to design and optimize new materials. These materials satisfy most of the requirements laid down by US Department of Energy. Hydrogen storage materials can be grouped into three basic types according to the nature of the metal-hydrogen bond. These are (a) elemental hydride (b) intermetallic hydride (c) complex hydrid. The studies discussed and described in this book focused on above mentioned three different classes of hydrides.
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Zustand: New. Dieser Artikel ist ein Print on Demand Artikel und wird nach Ihrer Bestellung fuer Sie gedruckt. Autor/Autorin: Shahi Rohit RRohit R Shahi, Ph.D: Banaras Hindu University Varanasi India, on potential hydrogen storage materials, particular emphasis on high capacity hydrogen storage materials which can be use in vehicular application. Presently . Bestandsnummer des Verkäufers 5168991
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Taschenbuch. Zustand: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -It is now agreed that for harnessing hydrogen, particularly for vehicular transport, storage forms the crucial issue. Tremendous efforts have been devoted to the research and development of materials that can store sufficient hydrogen so as to have the adequate hydrogen capacity and at the same time possess suitable thermodynamics and kinetics. After approximately two decades of exploration, the scope of hydrogen storage materials has got greatly transformed, from traditional metal hydrides (having~2 wt. %) to complex and chemical hydrides having large variety of materials that possesses high storage capacity. The introduction of complex hydride to hydrogen storage enhanced researcher's interest to design and optimize new materials. These materials satisfy most of the requirements laid down by US Department of Energy. Hydrogen storage materials can be grouped into three basic types according to the nature of the metal-hydrogen bond. These are (a) elemental hydride (b) intermetallic hydride (c) complex hydrid. The studies discussed and described in this book focused on above mentioned three different classes of hydrides. 160 pp. Englisch. Bestandsnummer des Verkäufers 9783659621697
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Taschenbuch. Zustand: Neu. This item is printed on demand - Print on Demand Titel. Neuware -It is now agreed that for harnessing hydrogen, particularly for vehicular transport, storage forms the crucial issue. Tremendous efforts have been devoted to the research and development of materials that can store sufficient hydrogen so as to have the adequate hydrogen capacity and at the same time possess suitable thermodynamics and kinetics. After approximately two decades of exploration, the scope of hydrogen storage materials has got greatly transformed, from traditional metal hydrides (having~2 wt. %) to complex and chemical hydrides having large variety of materials that possesses high storage capacity. The introduction of complex hydride to hydrogen storage enhanced researcher¿s interest to design and optimize new materials. These materials satisfy most of the requirements laid down by US Department of Energy. Hydrogen storage materials can be grouped into three basic types according to the nature of the metal¿hydrogen bond. These are (a) elemental hydride (b) intermetallic hydride (c) complex hydrid. The studies discussed and described in this book focused on above mentioned three different classes of hydrides.Books on Demand GmbH, Überseering 33, 22297 Hamburg 160 pp. Englisch. Bestandsnummer des Verkäufers 9783659621697
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Taschenbuch. Zustand: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - It is now agreed that for harnessing hydrogen, particularly for vehicular transport, storage forms the crucial issue. Tremendous efforts have been devoted to the research and development of materials that can store sufficient hydrogen so as to have the adequate hydrogen capacity and at the same time possess suitable thermodynamics and kinetics. After approximately two decades of exploration, the scope of hydrogen storage materials has got greatly transformed, from traditional metal hydrides (having~2 wt. %) to complex and chemical hydrides having large variety of materials that possesses high storage capacity. The introduction of complex hydride to hydrogen storage enhanced researcher's interest to design and optimize new materials. These materials satisfy most of the requirements laid down by US Department of Energy. Hydrogen storage materials can be grouped into three basic types according to the nature of the metal-hydrogen bond. These are (a) elemental hydride (b) intermetallic hydride (c) complex hydrid. The studies discussed and described in this book focused on above mentioned three different classes of hydrides. Bestandsnummer des Verkäufers 9783659621697
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