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Nanostructured materials have been largely studied in the last few
years. They have great potential of applications in different
fields such as materials science, physics, chemistry, biology,
mechanic and medicine. Synthesis and characterization of
nanostructured materials is a subject of great interest involving
science, market, politicians, government and society. Based on
results obtained by the authors' research group during the past
decade, this book comes to present novel techniques to synthesize
nanostructured materials and characterize their properties such as
crystallinity and crystallite size, specific surface area, particle
size, morphology and catalytic activity. This book is aimed for
students, researchers and engineers searching for methodologies to
obtain and characterize nanostructures in details.
Erosive wear is characterized by successive loss of material from
the surface due to the continuous impact of solid particles. This
type of wear affects numerous industries, such as power generation,
mining, and the pneumatic transportation of solids. The worst case
scenario normally occurs where there is a combination of both
erosion and oxidation, especially at high temperatures. In order to
minimize damage caused by erosive wear, many authors propose the
use of better bulk materials or surface coatings, and generally
cermets are suggested. Various researchers have conducted
experiments to study the wear mechanisms occurring in this kind of
materials, but most of these experiments do not lead to similar
results; in fact, there is no accordance among the authors, and
moreover, some wear variables are ignored. In this book, studies
undertaken in this field by several investigators have been
discussed extensively. At the end of it, table reviews are
suggested to summarize the most important mechanisms of the erosive
wear in bulk and coating cermets.
This book presents a complete and updated overview of Flame Spray
process, from its History to the Apparatus necessary for the
synthesis of nanostructures. It addresses not only the materials
produced by this technique, but also their properties, such as
crystallinity and crystallite size, specific surface area, particle
size and morphology. Also, the principles of nanoparticle formation
are described. It is a useful read to all those interested in low
cost synthesis of nanostructured powders and coatings.
This book gives an introduction to nanostructured materials and
guides the reader through their different engineering applications.
It addresses the special phenomena and potentials involved in the
applications without going into too much scientific detail of the
physics and chemistry involved, which makes the reading interesting
for beginners in the field. Materials for different applications in
engineering are described, such as those used in opto-electronics,
energy, tribology, bio-applications, catalysis, reinforcement and
many more. In each application chapter, the reader will learn about
the phenomena involved in the application, the nanostructured
materials used in the field and their processing, besides finding
some practical examples of their use in laboratories and in
industry.The clear language and the application-oriented
perspective of the book makes it suitable for both engineers and
students who want to learn about applications of nanostructured
materials in Engineering.
This book presents a summary of the current use of carbon
nanomaterials for water treatment, drug delivery, systems and
nanosensors. The first chapter elucidates the adsorption process
phenomenon. Also, the properties of different carbon nanomaterials
for adsorption applications are covered. The third chapter presents
the kinetic and equilibrium models of adsorption, processing of
experimental data and adsorption process peculiarities.
Environmental and biological applications of carbon nanomaterials
are listed in the last chapter. This book is written from an
application-oriented perspective and is useful for all those
interested in nanoadsorbents.
This book presents a summary of the current use of carbon
nanomaterials for water treatment, drug delivery, systems and
nanosensors. The first chapter elucidates the adsorption process
phenomenon. Also, the properties of different carbon nanomaterials
for adsorption applications are covered. The third chapter presents
the kinetic and equilibrium models of adsorption, processing of
experimental data and adsorption process peculiarities.
Environmental and biological applications of carbon nanomaterials
are listed in the last chapter. This book is written from an
application-oriented perspective and is useful for all those
interested in nanoadsorbents.
This book presents a complete and updated overview of Flame Spray
process, from its History to the Apparatus necessary for the
synthesis of nanostructures. It addresses not only the materials
produced by this technique, but also their properties, such as
crystallinity and crystallite size, specific surface area, particle
size and morphology. Also, the principles of nanoparticle formation
are described. It is a useful read to all those interested in low
cost synthesis of nanostructured powders and coatings.
Nanostructured materials have been largely studied in the last few
years. They have great potential of applications in different
fields such as materials science, physics, chemistry, biology,
mechanic and medicine. Synthesis and characterization of
nanostructured materials is a subject of great interest involving
science, market, politicians, government and society. Based on
results obtained by the authors' research group during the past
decade, this book comes to present novel techniques to synthesize
nanostructured materials and characterize their properties such as
crystallinity and crystallite size, specific surface area, particle
size, morphology and catalytic activity. This book is aimed for
students, researchers and engineers searching for methodologies to
obtain and characterize nanostructures in details.
This book gives an introduction to nanostructured materials and
guides the reader through their different engineering applications.
It addresses the special phenomena and potentials involved in the
applications without going into too much scientific detail of the
physics and chemistry involved, which makes the reading interesting
for beginners in the field. Materials for different applications in
engineering are described, such as those used in opto-electronics,
energy, tribology, bio-applications, catalysis, reinforcement and
many more. In each application chapter, the reader will learn about
the phenomena involved in the application, the nanostructured
materials used in the field and their processing, besides finding
some practical examples of their use in laboratories and in
industry.The clear language and the application-oriented
perspective of the book makes it suitable for both engineers and
students who want to learn about applications of nanostructured
materials in Engineering.
Erosive wear is characterized by successive loss of material from
the surface due to the continuous impact of solid particles. This
type of wear affects numerous industries, such as power generation,
mining, and the pneumatic transportation of solids. The worst case
scenario normally occurs where there is a combination of both
erosion and oxidation, especially at high temperatures. In order to
minimize damage caused by erosive wear, many authors propose the
use of better bulk materials or surface coatings, and generally
cermets are suggested. Various researchers have conducted
experiments to study the wear mechanisms occurring in this kind of
materials, but most of these experiments do not lead to similar
results; in fact, there is no accordance among the authors, and
moreover, some wear variables are ignored. In this book, studies
undertaken in this field by several investigators have been
discussed extensively. At the end of it, table reviews are
suggested to summarize the most important mechanisms of the erosive
wear in bulk and coating cermets.
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