Protonic Ceramic Fuel Cells : Principles, Design, and Applications

6,650 TWD
Member Price
5,985
English

Product Description

Protonic Ceramic Fuel Cells: Principles, Design, and Applications is an essential resource that brings together the latest advancements in materials, design, fabrication techniques, and applications. This book offers a comprehensive, interdisciplinary understanding of Protonic Ceramic Fuel Cells technology, identifying challenges and future opportunities. By providing a step-by-step approach, practical examples, and case studies, it serves as an invaluable guide for researchers, students, engineers, R&D scientists, policymakers, and professionals interested in fuel cells, energy storage, renewable energy, and the wider energy sector. In addition to introducing the basics of fuel cell systems, thermodynamics, Protonic Ceramic Fuel Cells, materials, and electrochemical reactions, the book delves into cell, stack, and system-level modeling, transport of charged particles, performance characterization techniques, degradation, system design, application, and stack manufacturing cost. Further chapters explore future research directions, environmental impact, sustainability, safety, and risk assessment.

Protonic Ceramic Fuel Cells: Principles, Design, and Applications is an essential resource that brings together the latest advancements in materials, design, fabrication techniques, and applications. This book offers a comprehensive, interdisciplinary understanding of Protonic Ceramic Fuel Cells technology, identifying challenges and future opportunities. By providing a step-by-step approach, practical examples, and case studies, it serves as an invaluable guide for researchers, students, engineers, R&D scientists, policymakers, and professionals interested in fuel cells, energy storage, renewable energy, and the wider energy sector.

In addition to introducing the basics of fuel cell systems, thermodynamics, Protonic Ceramic Fuel Cells, materials, and electrochemical reactions, the book delves into cell, stack, and system-level modeling, transport of charged particles, performance characterization techniques, degradation, system design, application, and stack manufacturing cost. Further chapters explore future research directions, environmental impact, sustainability, safety, and risk assessment.

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