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Redox processes represent a major advancement in water treatment
technology and have other applications across environmental and
technological contexts. Redox processes must be studied further to
ensure they are utilized appropriately. The Handbook of Research on
Redox Processes Within Environmental and Technological Contexts
accumulates new knowledge regarding the essence of the
oxidation-reduction processes, the justification of key mechanisms,
and the discovery of new aspects of methods of controlling redox
reactions. Covering key topics such as wastewater treatment, soil,
natural waters, and chemistry, this major reference work is ideal
for industry professionals, scientists, researchers, academicians,
scholars, practitioners, instructors, and students.
Pollution has been a developing problem for quite some time in the
modern world, and it is no secret how these chemicals negatively
affect the environment. With these contaminants penetrating the
earth's water supply, affecting weather patterns, and threatening
human health, it is critical to study the interaction between
commercially produced chemicals and the overall ecosystem.
Understanding the nature of these pollutants, the extent in which
they are harmful to humans, and quantifying the total risks are a
necessity in protecting the future of our world. Emerging
Developments and Environmental Impacts of Ecological Chemistry is
an essential reference source that discusses the process of
chemical contributions and their behavior within the environment.
Featuring research on topics such as organic pollution, biochemical
technology, and food quality assurance, this book is ideally
designed for environmental professionals, researchers, scientists,
graduate students, academicians, and policymakers seeking coverage
on the main concerns, approaches, and solutions of ecological
chemistry in the environment.
This book focuses on threats, especially contaminants, to drinking
water and the supply system, especially in municipalities but also
in industrial and even residential settings. The safety, security,
and suitability landscape can be described as dynamic and complex
stemming from necessity and hence culpability due to the emerging
threats and risks, vis-a-vis globalization resulting in new forms
of contaminants being used due to new technologies. The book
provides knowledge and guidance for engineers, scientists,
designers, researchers, and students who are involved in water,
sustainability, and study of security issues. This book starts out
with basics of water usage, current statistics, and an overview
ofwater resources. The book then introduces different scenarios of
safety and security and areas that researchers need to focus.
Following that, the book presents different types of contaminants -
inadvertent, intentional, or incidental. The next section presents
different methodologies of contamination sensing/detection and
remediation strategies as per guidance and standards set globally.
The book then concludes with selected chapters on water management,
including critical infrastructure that is critical to maintaining
safe water supplies to cities and municipalities. Each chapter
includes descriptive information for professionals in their
respective fields. The breadth of chapters offers insights into how
science (physical, natural, and social) and technology can support
new developments to manage the complexity resident within the
evolving threat and risk landscape.
This book addresses to the materials scientists, physicists,
chemists, biologists, and electrical engineers engaged in
fundamental and applied research or technical investigations on
such materials. The goal of the International Symposium on
Dielectric Materials and Applications conference series is to
provide an innovative platform for key researchers, scientists from
all over the world to exchange ideas and to hold wide ranging
discussions on recent developments in dielectric materials and
their new and emerging applications. The aim of ISyDMA meeting is
to provide an international forum for the discussion of current
research on high k-dielectric, electrical insulation, dielectric
phenomena, and topics related to emerging applications.
This book presents the development of electrospun materials,
fundamental principles of electrospinning process, controlling
parameters, electrospinning strategies, and electrospun nanofibrous
structures with specific properties for applications in tissue
engineering and regenerative medicine, textile, water treatment,
sensor, and energy fields. This book can broadly be divided into
three parts: the first comprises basic principles of
electrospinning process, general requirements of electrospun
materials and advancement in electrospinning technology, the second
part describes the applications of electrospun materials in
different fields and future prospects, while the third part
describes applications that can be used in advanced manufacturing
based on conjoining electrospinning and 3D printing.
Electrospinning is the most successful process for producing
functional nanofibers and nanofibrous membranes with superior
chemical and physical properties. The unique properties of
electrospun materials including high surface to volume ratio,
flexibility, high mechanical strength, high porosity, and
adjustable nanofiber and pore size distribution make them potential
candidates in a wide range of applications in biomedical and
engineering areas. Electrospinning is becoming more efficient and
more specialized in order to produce particular fiber types with
tunable diameter and morphology, tunable characteristics, having
specific patterns and 3D structures. With a strong focus on
fundamental materials science and engineering, this book provides
systematic and comprehensive coverage of the recent developments
and novel perspectives of electrospun materials. This comprehensive
book includes chapters that discuss the latest and emerging
applications of nanofiber technology in various fields,
specifically in areas such as wearable textile, biomedical
applications, energy generation and storage, water treatment and
environmental remediation, and sensors such as biomarkers in
healthcare and biomedical engineering. Despite all these
advancements, there are still challenges to be addressed and
overcome for nanofiber technology to move towards maturation.
This book results from a NATO Advanced Research Workshop titled
"Technological Innovations in CBRNE Sensing and Detection for
Safety, Security, and Sustainability" held in Yerevan, Armenia in
2012. The objective was to discuss and exchange views as to how
fusion of advanced technologies can lead to improved
sensors/detectors in support of defense, security, and situational
awareness. The chapters range from policy and implementation,
advanced sensor platforms using stand-off (THz and optical) and
point-contact methods for detection of chemical, nuclear,
biological, nuclear and explosive agents and contaminants in water,
to synthesis methods for several materials used for sensors. In
view of asymmetric, kinetic, and distributed nature of threat
vectors, an emphasis is placed to examine new generation of
sensors/detectors that utilize an ecosystems of innovation and
advanced sciences convergence in support of effective
counter-measures against CBRNE threats. The book will be of
considerable interest and value to those already pursuing or
considering careers in the field of nanostructured materials, and
sensing/detection of CBRNE agents and water-borne contaminants. For
policy implementation and compliance standpoint, the book serves as
a resource of several informative contributions. In general, it
serves as a valuable source of information for those interested in
how nanomaterials and nanotechnologies are advancing the field of
sensing and detection using nexus of advanced technologies for
scientists, technologists, policy makers, and soldiers and
commanders.
This book arises from the NATO Advanced Study Institute
"Technological Innovations in Detection and Sensing of CBRN Agents
and Ecological Terrorism" held in Chisinau, Republic of Moldova in
June 2010. It comprises a variety of invited contributions by
highly experienced educators, scientists, and industrialists, and
is structured to cover important aspects of the field that include
developments in chemical-biological, and radiation sensing,
synthesis and processing of sensors, and applications of sensors in
detecting/monitoring contaminants introduced/dispersed
inadvertently or intentionally in air, water, and food supplies.
The book emphasizes nanomaterials and nanotechnology based sensing
and also includes a section on sensing and detection technologies
that can be applied to information security. Finally, it examines
regional, national, and international policies and ethics related
to nanomaterials and sensing. It will be of considerable interest
and value to those already pursuing or considering careers in the
field of nanostructured materials and nanotechnology based sensing,
In general, it serves as a valuable source of information for those
interested in how nanomaterials and nanotechnologies are advancing
the field of sensing, detection, and remediation, policy makers,
and commanders in the field.
This book presents the development of electrospun materials,
fundamental principles of electrospinning process, controlling
parameters, electrospinning strategies, and electrospun nanofibrous
structures with specific properties for applications in tissue
engineering and regenerative medicine, textile, water treatment,
sensor, and energy fields. This book can broadly be divided into
three parts: the first comprises basic principles of
electrospinning process, general requirements of electrospun
materials and advancement in electrospinning technology, the second
part describes the applications of electrospun materials in
different fields and future prospects, while the third part
describes applications that can be used in advanced manufacturing
based on conjoining electrospinning and 3D printing.
Electrospinning is the most successful process for producing
functional nanofibers and nanofibrous membranes with superior
chemical and physical properties. The unique properties of
electrospun materials including high surface to volume ratio,
flexibility, high mechanical strength, high porosity, and
adjustable nanofiber and pore size distribution make them potential
candidates in a wide range of applications in biomedical and
engineering areas. Electrospinning is becoming more efficient and
more specialized in order to produce particular fiber types with
tunable diameter and morphology, tunable characteristics, having
specific patterns and 3D structures. With a strong focus on
fundamental materials science and engineering, this book provides
systematic and comprehensive coverage of the recent developments
and novel perspectives of electrospun materials. This comprehensive
book includes chapters that discuss the latest and emerging
applications of nanofiber technology in various fields,
specifically in areas such as wearable textile, biomedical
applications, energy generation and storage, water treatment and
environmental remediation, and sensors such as biomarkers in
healthcare and biomedical engineering. Despite all these
advancements, there are still challenges to be addressed and
overcome for nanofiber technology to move towards maturation.
This book focuses on threats, especially contaminants, to drinking
water and the supply system, especially in municipalities but also
in industrial and even residential settings. The safety, security,
and suitability landscape can be described as dynamic and complex
stemming from necessity and hence culpability due to the emerging
threats and risks, vis-a-vis globalization resulting in new forms
of contaminants being used due to new technologies. The book
provides knowledge and guidance for engineers, scientists,
designers, researchers, and students who are involved in water,
sustainability, and study of security issues. This book starts out
with basics of water usage, current statistics, and an overview
ofwater resources. The book then introduces different scenarios of
safety and security and areas that researchers need to focus.
Following that, the book presents different types of contaminants -
inadvertent, intentional, or incidental. The next section presents
different methodologies of contamination sensing/detection and
remediation strategies as per guidance and standards set globally.
The book then concludes with selected chapters on water management,
including critical infrastructure that is critical to maintaining
safe water supplies to cities and municipalities. Each chapter
includes descriptive information for professionals in their
respective fields. The breadth of chapters offers insights into how
science (physical, natural, and social) and technology can support
new developments to manage the complexity resident within the
evolving threat and risk landscape.
This book results from a NATO Advanced Research Workshop titled
"Technological Innovations in CBRNE Sensing and Detection for
Safety, Security, and Sustainability" held in Yerevan, Armenia in
2012. The objective was to discuss and exchange views as to how
fusion of advanced technologies can lead to improved
sensors/detectors in support of defense, security, and situational
awareness. The chapters range from policy and implementation,
advanced sensor platforms using stand-off (THz and optical) and
point-contact methods for detection of chemical, nuclear,
biological, nuclear and explosive agents and contaminants in water,
to synthesis methods for several materials used for sensors. In
view of asymmetric, kinetic, and distributed nature of threat
vectors, an emphasis is placed to examine new generation of
sensors/detectors that utilize an ecosystems of innovation and
advanced sciences convergence in support of effective
counter-measures against CBRNE threats. The book will be of
considerable interest and value to those already pursuing or
considering careers in the field of nanostructured materials, and
sensing/detection of CBRNE agents and water-borne contaminants. For
policy implementation and compliance standpoint, the book serves as
a resource of several informative contributions. In general, it
serves as a valuable source of information for those interested in
how nanomaterials and nanotechnologies are advancing the field of
sensing and detection using nexus of advanced technologies for
scientists, technologists, policy makers, and soldiers and
commanders.
This book arises from the NATO Advanced Study Institute
"Technological Innovations in Detection and Sensing of CBRN Agents
and Ecological Terrorism" held in Chisinau, Republic of Moldova in
June 2010. It comprises a variety of invited contributions by
highly experienced educators, scientists, and industrialists, and
is structured to cover important aspects of the field that include
developments in chemical-biological, and radiation sensing,
synthesis and processing of sensors, and applications of sensors in
detecting/monitoring contaminants introduced/dispersed
inadvertently or intentionally in air, water, and food supplies.
The book emphasizes nanomaterials and nanotechnology based sensing
and also includes a section on sensing and detection technologies
that can be applied to information security. Finally, it examines
regional, national, and international policies and ethics related
to nanomaterials and sensing. It will be of considerable interest
and value to those already pursuing or considering careers in the
field of nanostructured materials and nanotechnology based sensing,
In general, it serves as a valuable source of information for those
interested in how nanomaterials and nanotechnologies are advancing
the field of sensing, detection, and remediation, policy makers,
and commanders in the field.
Redox processes represent a major advancement in water treatment
technology and have other applications across environmental and
technological contexts. Redox processes must be studied further to
ensure they are utilized appropriately. Fundamental and Biomedical
Aspects of Redox Processes accumulates new knowledge regarding the
essence of the oxidation-reduction processes, the justification of
key mechanisms, and the discovery of new aspects of methods of
controlling redox reactions. Covering key topics such as wastewater
treatment, soil, natural waters, and chemistry, this reference work
is ideal for industry professionals, scientists, researchers,
academicians, scholars, practitioners, instructors, and students.
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