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"Electrochemical Impedance Spectroscopy in PEM Fuel Cells"
discusses one of the most powerful and useful diagnostic tools for
various aspects of the study of fuel cells: electrochemical
impedance spectroscopy (EIS). This comprehensive reference on EIS
fundamentals and applications in fuel cells contains information
about basic principles, measurements, and fuel cell applications of
the EIS technique. Many illustrated examples are provided to ensure
maximum clarity and observability of the spectra. "Electrochemical
Impedance Spectroscopy in PEM Fuel Cells" will enable readers to
explore the frontiers of EIS technology in PEM fuel cell research
and other electrochemical systems. As well as being a useful text
for electrochemists, it can also help researchers who are
unfamiliar with EIS to learn the technique quickly and to use it
correctly in their fuel cell research. Managers or entrepreneurs
may also find this book a useful guide to accessing the challenges
and opportunities in fuel cell technology.
PEM Fuel Cell Failure Mode Analysis presents a systematic analysis
of PEM fuel cell durability and failure modes. It provides readers
with a fundamental understanding of insufficient fuel cell
durability, identification of failure modes and failure mechanisms
of PEM fuel cells, fuel cell component degradation testing, and
mitigation strategies against degradation. The first several
chapters of the book examine the degradation of various fuel cell
components, including degradation mechanisms, the effects of
operating conditions, mitigation strategies, and testing protocols.
The book then discusses the effects of different contamination
sources on the degradation of fuel cell components and explores the
relationship between external environment and the degradation of
fuel cell components and systems. It also reviews the correlation
between operational mode, such as start-up and shut-down, and the
degradation of fuel cell components and systems. The last chapter
explains how the design of fuel cell hardware relates to failure
modes. Written by international scientists active in PEM fuel cell
research, this volume is enriched with practical information on
various failure modes analysis for diagnosing cell performance and
identifying failure modes of degradation. This in turn helps in the
development of mitigation strategies and the increasing
commercialization of PEM fuel cells.
PEM Fuel Cell Diagnostic Tools presents various tools for
diagnosing PEM fuel cells and stacks, including in situ and ex situ
diagnostic tools, electrochemical techniques, and physical/chemical
methods. The text outlines the principles, experimental
implementation, data processing, and application of each technique,
along with its capabilities and weaknesses. The book covers many
diagnostics employed in the characterization and determination of
fuel cell performance. It discusses commonly used conventional
tools, such as cyclic voltammetry, electrochemical impedance
spectroscopy, scanning electron microscopy, and transmission
electron microscopy. It also examines special tools developed
specifically for PEM fuel cells, including transparent cells,
cathode discharge, and current mapping, as well as recent advanced
tools for diagnosis, such as magnetic resonance imaging and atomic
force microscopy. For clarity, the book splits these diagnostic
methodologies into two parts-in situ and ex situ. To better
understand the tools, PEM fuel cell testing is also discussed. Each
self-contained chapter provides cross-references to other chapters.
Written by international scientists active in PEM fuel cell
research, this volume incorporates state-of-the-art technical
advances in PEM fuel cell diagnosis. The diagnostic tools presented
help readers to understand the physical and chemical phenomena
involved in PEM fuel cells.
PEM Fuel Cell Diagnostic Tools presents various tools for
diagnosing PEM fuel cells and stacks, including in situ and ex situ
diagnostic tools, electrochemical techniques, and physical/chemical
methods. The text outlines the principles, experimental
implementation, data processing, and application of each technique,
along with its capabilities and weaknesses. The book covers many
diagnostics employed in the characterization and determination of
fuel cell performance. It discusses commonly used conventional
tools, such as cyclic voltammetry, electrochemical impedance
spectroscopy, scanning electron microscopy, and transmission
electron microscopy. It also examines special tools developed
specifically for PEM fuel cells, including transparent cells,
cathode discharge, and current mapping, as well as recent advanced
tools for diagnosis, such as magnetic resonance imaging and atomic
force microscopy. For clarity, the book splits these diagnostic
methodologies into two parts-in situ and ex situ. To better
understand the tools, PEM fuel cell testing is also discussed. Each
self-contained chapter provides cross-references to other chapters.
Written by international scientists active in PEM fuel cell
research, this volume incorporates state-of-the-art technical
advances in PEM fuel cell diagnosis. The diagnostic tools presented
help readers to understand the physical and chemical phenomena
involved in PEM fuel cells.
"Electrochemical Impedance Spectroscopy in PEM Fuel Cells"
discusses one of the most powerful and useful diagnostic tools for
various aspects of the study of fuel cells: electrochemical
impedance spectroscopy (EIS). This comprehensive reference on EIS
fundamentals and applications in fuel cells contains information
about basic principles, measurements, and fuel cell applications of
the EIS technique. Many illustrated examples are provided to ensure
maximum clarity and observability of the spectra. "Electrochemical
Impedance Spectroscopy in PEM Fuel Cells" will enable readers to
explore the frontiers of EIS technology in PEM fuel cell research
and other electrochemical systems. As well as being a useful text
for electrochemists, it can also help researchers who are
unfamiliar with EIS to learn the technique quickly and to use it
correctly in their fuel cell research. Managers or entrepreneurs
may also find this book a useful guide to accessing the challenges
and opportunities in fuel cell technology.
An ever-increasing dependence on green energy has brought on a
renewed interest in polymer electrolyte membrane (PEM) electrolysis
as a viable solution for hydrogen production. While alkaline water
electrolyzers have been used in the production of hydrogen for many
years, there are certain advantages associated with PEM
electrolysis and its relevance to renewable energy sources. PEM
Electrolysis for Hydrogen Production: Principles and Applications
discusses the advantages of PEM electrolyzers over alkaline
electrolyzers, presents the recent advances of hydrogen PEM fuel
cells accelerating the large-scale commercialization of PEM
electrolysis, and considers the challenges that must be addressed
before PEM electrolysis can become a commercially feasible option.
Written by international scientists in PEM electrolysis and fuel
cell research areas, this book addresses the demand for energy
storage technologies that store intermittent renewable energy and
offers the most complete and up-to-date information on PEM
electrolysis technology and research. The authors: Cover the
fundamental applications of PEM electrolysis Review the
state-of-the-art technologies and challenges related to each of the
components of the PEM electrolysis Address failure analysis and
review available failure diagnostic tools Provide future direction
for researchers and technology developers PEM Electrolysis for
Hydrogen Production: Principles and Applications provides a
fundamental understanding of the requirements and functionalities
of certain components and attributes of the PEM electrolysis
technology that are common for both PEM fuel cells' and
electrolyzers' hydrogen applications for energy storage. Beneficial
to students and professionals, the text serves as a handbook for
identifying PEM electrolysis failure modes and diagnosing
electrolyzer performance to improve efficiency and durability.
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