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A groundbreaking book on the recent advances in chemical finishing,
innovative fabrication strategies frequently adopted for the
mechanical finishing of textiles, as well as the environmental
issues in textile sectors Advanced materials are undoubtedly
becoming very popular as substitutes for traditional materials in
the textile engineering field. Advanced textile engineering
materials are giving way to innovative textile materials with novel
functions and are widely perceived as offering huge potential in a
wide range of applications such as healthcare, defense, personal
protective equipment, textile antennas, garments for motion
capture, and sensors, etc. Advanced Engineering Textile Materials
contains 13 chapters written by high profile contributors with many
years of experience in textile technology, and cover fundamental
and advanced approaches associated with the design and development
of textile implants, conductive textiles, 3D textiles,
smart-stimuli textiles, antiballistic textiles and fabric
structures designed for a medical application intrabody/extra-body,
implantable/non-implantable) and various modification and
processing techniques.
Nanotechnology has attracted attention of textile and polymer
scientists and has been playing extraordinary role over the past
few decades in the functional finishing of different textile
materials. Nanoparticles due to their diverse functions have not
only imparted flame retardant, UV-blocking, water repellent,
self-cleaning, and antimicrobial properties to the textiles, but
also have greater affinity for fabrics leading to an increase in
durability of the functions. This book emphasizes recent approaches
and strategies that are currently at operation to functionalize
both natural and synthetic textile materials using diverse
nanoparticles and their composites with polymers. The book
concludes by paying attention towards removal of toxic chemicals
using state-of-the-art nano-adsorbents. Main Topics 1. Textile
dyeing using metallic nanoparticles 2. Metal oxide nanoparticles
for multifunctional finishing 3. New approaches to produce UV
protective textiles 4. Polymeric nanocomposites for antimicrobial
finishing 5. Self-cleaning of textiles using advanced nanoparticles
6. Silver nanoparticles in dyeing and finishing applications 7.
Zinc Oxide - prospects in textile industry 8. Titanium dioxide:
Next generation photo-catalysts 9. Textile effluent using chitosan
nanocomposites 10. Recent advances in remediation of textile
effluents using nano-catalysts
This book is organized into 12 important chapters that focus on the
progress made by metal-based drugs as anticancer, antibacterial,
antiviral, anti-inflammatory, and anti-neurodegenerative agents, as
well as highlights the application areas of newly discovered
metallodrugs. It can prove beneficial for researchers,
investigators and scientists whose work involves inorganic and
coordination chemistry, medical science, pharmacy, biotechnology
and biomedical engineering.
Dyes, pigments and metals are extensively used in food, paper,
carpet, rubber, plastics, cosmetics, and textile industries, in
order to color and finish products. As a result, they generate a
considerable amount of coloured wastewater rich in organic,
inorganic, and mineral substances which are continuously polluting
the water bodies and affecting human and aquatic life. Besides
these industries, urban and agricultural activities also generate
effluents high in biochemical oxygen demand (BOD) and chemical
oxygen demand (COD). In recent years, considerable research work
has been done in this area and is underway to eliminate heavy
metals particularly mercury (Hg), chromium (Cr), lead (Pb),
selenium and cadmium (Cd) and synthetic dyes from polluted waters
which have high toxicity and carcinogenicity. Currently a number of
methods are in operation to decontaminate the polluted waters.
Among several purification technologies, use of
nanoparticles/composites have gained much attention as efficient
purification technology due to its many advantages such as simple
synthesis, special chemical and physical properties, unique
photocatalytic activity and beneficial antimicrobial properties and
high efficiency. The book Environmental Nanotechnology for Water
Purification comprehensively covers and provides new insights on
all nanoparticles, composites and advanced methods employed in
water purification.
This groundbreaking book covers the recent advances in sustainable
technologies and developments, and describes how green chemistry
and engineering practices are being applied and integrated in
various industrial sectors. Over the past decade, the population
explosion, rise in global warming, depletion of fossil fuel
resources and environmental pollution have been the major driving
force for promoting and implementing the principles of green
chemistry and sustainable engineering in all sectors ranging from
chemical to environmental sciences. It plays a growing role in the
chemical processing industries. Green chemistry and engineering are
relatively new areas focused on minimizing generations of pollution
by utilizing alternative feedstocks, developing, selecting, and
using less environmentally harmful solvents, finding new synthesis
pathways, improving selectivity in reactions, generating less
waste, avoiding the use of highly toxic compounds, and much more.
In an effort to advance the discussion of green chemistry and
engineering, this book contains 19 chapters describing greener
approaches to the design and development of processes and products.
The contributors describe the production of third generation
biofuels, sustainable and economic production of hydrogen by water
splitting using solar energy, efficient energy harvesting,
mechanisms involved in the conversion of biomass, green
nanocomposites, bio-based polymers, ionic liquids as green
solvents, sustainable nitrogen fixation, bioremediation, and much
more. The book aims at motivating chemists and engineers, as well
as postgraduate and PhD students and postdocs to pay attention to
an acute need for the implementation of green chemistry principles
in the field of chemical engineering, biomedical engineering,
agriculture, environmental engineering, chemical processing and
material sciences.
The book deals with novel applications of plant derived natural
agents and their derivatives in the food, textile dyeing,
medicinal, and environmental areas. Plant based natural products
and their derivatives have strong influence on our everyday lives.
They are needed for many everyday applications ranging from food,
medicine, agriculture, textiles, and healthcare. This new book
presents significant research advances about the use of plant-based
natural products, mainly dyes and pigments, bioactive compounds and
other plant extracts in the textile coloration, food, medicine,
bioremediation and environmental applications. The topics of the
ten informative chapters in Plant-Based Natural Products include
the following: potential resurgence of natural dyes in applied
fields; natural colorants from indigoid rich plants; phytochemical
and pharmacological aspects of Butea monosperma plant; irradiation
as novel pretreatment methods to improve wash fastness properties
of plant derived natural dyes; dyeing studies with colorants
extracted from the Lawsonia inermis plant; effect of drumstick leaf
powder incorporation on quality of khakhra; physico-chemical
properties of pineapple pomace powder and its incorporation in
buffalo meat products; synthesis of curcumin complexes for
medicinal and other industrial uses and phyto-remediation of toxic
arsenic from wastewaters.
This book on advanced functional textiles and polymers will offer a
comprehensive view of cutting-edge research in newly discovered
areas such as flame retardant textiles, antimicrobial textiles,
insect repellent textiles, aroma textiles, medical-textiles, smart
textiles, and nano-textiles etc. The second part the book provides
innovative fabrication strategies, unique methodologies and
overview of latest novel agents employed in the research and
development of functional polymers.
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