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This book provides a comprehensive analysis of various solar based hydrogen production systems. The book covers first-law (energy based) and second-law (exergy based) efficiencies and provides a comprehensive understanding of their implications. It will help minimize the widespread misuse of efficiencies among students and researchers in energy field by using an intuitive and unified approach for defining efficiencies. The book gives a clear understanding of the sustainability and environmental impact analysis of the above systems. The book will be particularly useful for a clear understanding…mehr
This book provides a comprehensive analysis of various solar based hydrogen production systems. The book covers first-law (energy based) and second-law (exergy based) efficiencies and provides a comprehensive understanding of their implications. It will help minimize the widespread misuse of efficiencies among students and researchers in energy field by using an intuitive and unified approach for defining efficiencies. The book gives a clear understanding of the sustainability and environmental impact analysis of the above systems. The book will be particularly useful for a clear understanding of second law (exergy) efficiencies for various systems. It may serve as a reference book to the researchers in energy field. The definitions and concepts developed in the book will be explained through illustrative examples.
Ibrahim Dincer's research areas are Hydrogen and Fuel Cell Systems, Renewable Energies, Energy and Exergy, Energy Conversion and Management, Heat and Mass Transfer, Thermodynamics, Drying, Refrigeration, Thermal Energy Storage.
Inhaltsangabe
Preface.- Hydrogen.- Hydrogen Production Methods.- Solar Energy Aspects.- Solar Hydrogen Production.- Thermodynamic Analysis.- Environmental Impact and Sustainability Assessment.- Case Studies.- Concluding Remarks.- Nomenclature.- References.- Appendix.
Preface.- Hydrogen.- Hydrogen Production Methods.- Solar Energy Aspects.- Solar Hydrogen Production.- Thermodynamic Analysis.- Environmental Impact and Sustainability Assessment.- Case Studies.- Concluding Remarks.- Nomenclature.- References.- Appendix.
Preface.- Hydrogen.- Hydrogen Production Methods.- Solar Energy Aspects.- Solar Hydrogen Production.- Thermodynamic Analysis.- Environmental Impact and Sustainability Assessment.- Case Studies.- Concluding Remarks.- Nomenclature.- References.- Appendix.
Preface.- Hydrogen.- Hydrogen Production Methods.- Solar Energy Aspects.- Solar Hydrogen Production.- Thermodynamic Analysis.- Environmental Impact and Sustainability Assessment.- Case Studies.- Concluding Remarks.- Nomenclature.- References.- Appendix.
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