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Biomaterials are advanced materials that garner interdisciplinary
research. Wastewater pollution causes many adverse effects on human
health and the environment. In order to rectify this, biomaterials
and other nanomaterials have been utilized as photocatalysts
against environmental waste. In this book, biomaterials are
highlighted as a promising material for waste management, as
biomaterials are cost-effective, eco-friendly and closer to nature.
This volume discusses the role of ZIF-8 composites in water
decontamination as an adsorbent and photocatalyst. Metal-organic
frameworks (MOFs) are advanced porous materials and are promising
adsorbents with facile modifications, high specific surface area,
controllable porosity, and tailored surface properties. Water
pollution is a major concern and has endangered human health.
Recently, researchers have designed MOFs for use in remediation.
This volume discusses the role of MOFs in removal of pharmaceutical
pollutants. Metal-organic frameworks (MOFs) are advanced porous
materials and are promising adsorbents with facile modifications,
high specific surface area, controllable porosity, and tailored
surface properties. Pharmaceutical pollution is an issue of concern
due to its effects on environment. Recently, researchers have
designed MOFs for use in remediation.
Sodium Alginate-based Nanomaterials for Wastewater Treatment offers
detailed coverage of fundamentals and recent advances in sodium
alginate-based nanomaterials for wastewater treatment. The book
provides a detailed overview of the development and application of
nanomaterials-based sodium alginate so that new methods can be put
in place for efficient wastewater treatment. This includes
illustrating how nanomaterials have enabled the formation of
nanocomposites or blends of sodium alginate with other compounds
like chitosan for the effective removal of heavy metals from
wastewater. This important reference source for materials
scientists and environmental engineers comprehensively covers
nanotechnology applications in efficient wastewater treatment
solutions.
Nanomedicine explores the modification and enhancement of the
properties and performances of typical drugs to treat various
diseases. Nano-based medicines have advantages in several ways,
such as in nanotherapeutics, nanotheranostics, and nanodiagnostics.
Nanomedicine Manufacturing and Applications effectively explores
the major manufacturing techniques and applications of
nanomaterial-based medicine in the areas of chemotherapy, biochips,
insulin pumps, and other treatment methods. This book explains how
nanomedicines are developed from nanoparticles as well as their
biomedical and other applications related to healthcare. This book
is an important reference source for nanoscientists, biomaterials
scientists, and biomedical engineers who want to learn more about
how nano-based medicines are made and used.
Nanomaterial-Based Metal Organic Frameworks for Single Atom
Catalysis covers nanoparticles and their properties, including
tunable pore size, efficient reacting capability, large surface
area, and morphology, which make them effective catalytic agents.
In addition, the book covers catalytic systems, in which
nanomaterial-based metal organic frameworks can be applied
efficiently as single atom catalysis to enable enhanced
functionalities and activities of the reactions in various
applications. This book is an important reference source that will
be of use to materials scientists, engineers, chemists and chemical
engineers who want to learn more about nanomaterials are being used
for catalytic applications. Metal organic frameworks (MOFs) are
hybrid organic-inorganic, porous, crystalline nanomaterials, and
have aroused great attention in the field of catalysis because of
their crystalized nano- (lt;2 nm) or meso- (2-50 nm) porous
structure, extremely high surface area, and significant chemical
diversity. This nanomaterial-based metal organic framework, as a
single atom catalysis, enhances the catalytic ability of dispersed
single atoms.
Fixtures are used in manufacturing to secure working devices. They
help insure conformity, accuracy, efficiency, and
interchangeability; their reliability is crucial. This book
introduces and implements a new methodology for more flexible
fixture design and manufacturing processes, and develops the
supporting technologies for automation and fixture planning using
object oriented platforms. It also presents an integrated solution
with Computer Aided Design (CAD) applications.
As opposed to conventional electrochemical sensors,
nanomaterials-based sensors are active and effective in their
action with even a minute concentration of analyte. A number of
research studies are bringing about an evolution in their
development and advancement because of their unique and effective
properties. Nanoscale electrochemical sensors have applications in
almost every field of life including the detection of
neurochemicals, heavy metals, energy components, body fluids,
biological matrices, cancer relevant biomolecules, aromatic
hydrocarbons, also in playing their role in food science because of
their capability in providing quality control and safety. There is
a need to develop these nanomaterials-based electrochemical sensors
to be more widely available for accurate sensing of minute
concentrations especially in the case of heavy metal detection,
biofluids, and other biomaterials. This book outlines the major
preparation, fabrication and manufacture of nanomaterials-based
electrochemical sensors, as well as detailing their principle
medical, environmental and industrial applications in an effort to
meet this need. This book is a valuable reference source for
materials scientists, engineers, electrochemists, environmental
engineers and biomedical engineers who want to understand how
nanomaterials-based electrochemical sensors are made, and how they
are used.
Handbook of Transplantation provides a complete and comprehensive
overview of modern transplantation in all its complexity, from
basic science to gold-standard surgical techniques to
post-operative care.
Sustainable Use of Nanoparticles in Agriculture explores the
specific challenges of understanding and applying the catalytic
efficacy of nanotechnology for agricultural crop improvement.
Focusing specifically on the nanomaterial-based metal organic
frameworks as single atom catalysis to improve their applicability
through innovations in the makeup, style and structure of those
catalysts. Nano-nutrition is the implementation of nanotechnology
to provide nano-sized nutrients to grow crops addressing both
biotic and abiotic nutrients. As abiotic nutrients or NPs are
obtained from inorganic substances such as salts, they post
challenges as many of these are un-biodegradable whereas biotic
nutrients are made from organic sources that are biodegradable and
eco-friendly. This book presents research into nano-nutrition that
has been undertaken to create a methodology for improving plant
nutrition that is sustainable and effective. Sustainable Use of
Nanoparticles in Agricultures focuses on utilizing nano-nutrition
to improve plant productivity in both micro-and macronutrients on a
wide scale without environmental risks. This book is an important
reference for researchers and academics seeking insights into the
potential means to improve crop plant health.
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