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Solar Hydrogen Energy Systems: Science and Technology for the Hydrogen Economy

Solar Hydrogen Energy Systems: Science and Technology for the Hydrogen Economy
Kataloginformation
Feldname Details
Vorliegende Sprache eng
Hinweise auf parallele Ausgaben 376034564 Buchausg. u.d.T.: ‡Zini, Gabriele: Solar hydrogen energy systems
ISBN 978-88-470-1997-3
Name Zini, Gabriele
Tartarini, Paolo
ANZEIGE DER KETTE Tartarini, Paolo
T I T E L Solar Hydrogen Energy Systems
Zusatz zum Titel Science and Technology for the Hydrogen Economy
Verlagsort Milano
Verlag Springer Milan
Erscheinungsjahr 2012
2012
Umfang Online-Ressource (XVI, 184 p, digital)
Reihe SpringerLink. Bücher
Notiz / Fußnoten Description based upon print version of record
Weiterer Inhalt Title Page; Copyright Page; Foreword; Preface; Table of Contents; Acronyms; 1 Introduction; 1.1 The Current Situation; 1.2 The Peak Oil Theory; 1.3 Forms of Energy Sources and Environmental Impact; 1.4 Sustainability of an Energy System; 1.5 A Hydrogen New Energy System; 1.6 Scenarios for the Future; 1.7 Alternatives to Hydrogen; References; 2 Hydrogen; 2.1 Hydrogen as Energy Carrier; 2.2 Properties; 2.3 Production; 2.3.1 Steam Reforming; 2.3.2 Solid Fuel Gasification; 2.3.3 Partial Oxidation; 2.3.4 Water Electrolysis; 2.3.5 Thermo-Cracking; 2.3.6 Ammonia Cracking. 2.3.7 Other Systems: Photochemical, Photobiological, Semiconductors and their Combinations2.4 Usage; 2.4.1 Direct Combustion; 2.4.2 Catalytic Combustion; 2.4.3 Direct Steam Production from Combustion; 2.4.4 Fuel Cell; 2.5 Degenerative Phenomena and Material Compatibility; 2.5.1 Material Degeneration; 2.5.2 Choice of Materials; 2.6 Components: Pipes, Joints and Valves; 2.7 Transport; References; 3 Electrolysis and Fuel Cells; 3.1 Introduction; 3.2 Chemical Kinetics; 3.3 Thermodynamics; 3.4 Electrode Kinetics; 3.4.1 Activation Polarisation; 3.4.2 Ohmic Polarisation. 3.4.3 Concentration Polarisation3.4.4 Reaction Polarisation; 3.4.5 Transfer Polarisation; 3.4.6 Transport Phenomena; 3.4.7 Influence of Temperature and Pressure on Polarisation Losses; 3.5 Energy and Exergy of the Cell; 3.6 Electrolyser; 3.6.1 Functioning; 3.6.2 Technology; 3.6.2.1 Alkaline Electrolysers; 3.6.2.2 Solid Polymer (Polymeric Membrane) Electrolysers; 3.6.2.3 High-Temperature Electrolysers; 3.6.3 Thermodynamics; 3.6.4 Mathematical Model; 3.6.5 Thermal Model; 3.7 Fuel Cell; 3.7.1 Functioning; 3.7.2 Technology; 3.7.2.1 Alkaline Fuel Cell; 3.7.2.2 Phosphoric Acid Fuel Cell. 3.7.2.3 Polymeric Electrolyte Membrane Fuel Cell3.7.2.4 Molten Carbonate Fuel Cell; 3.7.2.5 Solid Oxide Fuel Cell; 3.7.3 Thermodynamics; 3.7.4 Mathematical Model; 3.7.5 Thermal Model; References; 4 Solar Radiation and Photovoltaic Conversion; 4.1 Solar Radiation; 4.2 Photovoltaic Effect, Semiconductors and the p-n Junction; 4.3 Crystalline Silicon Photovoltaic Cells; 4.4 Other Cell Technologies; 4.5 Conversion Losses; 4.6 Changes in the I-U Curve; 4.7 Photovoltaic Cells and Modules; 4.8 Types of Photovoltaic Plants; 4.9 Radiation on the Receiving Surface. 4.10 Determination of the Operating PointReferences; 5 Wind Energy; 5.1 Introduction; 5.2 Mathematical Description of Wind; 5.3 Wind Classification; 5.4 Mathematical Model of the Aerogenerator; 5.5 Power Control and Design; 5.6 Wind Turbine Rating; 5.7 Electric Energy Conversion; 5.8 Calculation Example; 5.9 Environmental Impact; References; 6 Other Renewable Energy Sources for Hydrogen Production; 6.1 Solar Thermal Energy; 6.2 Hydroelectric Energy; 6.3 Tidal, Wave and Ocean Thermal Energy Conversions; 6.4 Biomasses; References; 7 Hydrogen Storage; 7.1 Issues of Hydrogen Storage. 7.2 Physical Storage
Titelhinweis Buchausg. u.d.T.: ‡Zini, Gabriele: Solar hydrogen energy systems
ISBN ISBN 978-88-470-1998-0
Klassifikation TBC
TEC000000
621.042
620
665.81
TA1-2040
ZP 3730
ZP 4150
Kurzbeschreibung It is just a matter of time when fossil fuels will become unavailable or uneconomical to retrieve. On top of that, their environmental impact is already too severe. Renewable energy sources can be considered as the most important substitute to fossil energy, since they are inexhaustible and have a very low, if none, impact on the environment. Still, their unevenness and unpredictability are drawbacks that must be dealt with in order to guarantee a reliable and steady energy supply to the final user. Hydrogen can be the answer to these problems. This book presents the readers with the modeling, functioning and implementation of solar hydrogen energy systems, which efficiently combine different technologies to convert, store and use renewable energy. Sources like solar photovoltaic or wind, technologies like electrolysis, fuel cells, traditional and advanced hydrogen storage are discussed and evaluated together with system management and output performance. Examples are also given to show how these systems are capable of providing energy independence from fossil fuels in real life settings.
1. Schlagwortkette Fotovoltaik
Brennstoffzelle
Wasserstoffenergietechnik
ANZEIGE DER KETTE Fotovoltaik -- Brennstoffzelle -- Wasserstoffenergietechnik
2. Schlagwortkette Brennstoffzelle
Fotovoltaik
Wasserstoffenergietechnik
ANZEIGE DER KETTE Brennstoffzelle -- Fotovoltaik -- Wasserstoffenergietechnik
SWB-Titel-Idn 363410422
Signatur Springer E-Book
Bemerkungen Elektronischer Volltext - Campuslizenz
Elektronische Adresse $uhttp://dx.doi.org/10.1007/978-88-470-1998-0
Internetseite / Link Volltext
Siehe auch Volltext
Siehe auch Cover
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