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Microbes play a major role in the degradation of various
pollutants. Therefore, microbes find potential application in the
area of energy and environmental technology. The book provides
in-depth literature on the topics of environmental and industrial
importance. It is compiled to explore the application of microbe
used in the degradation of aflatoxin, polymers, biomass into fuel,
disinfectants, food products, xenobiotic compounds, lipids,
steroids, organic pollutants, proteins, oil waste, and wastewater
pollutants. This book will be of interest to teachers, researchers,
scientists, and capacity builders. Also, the book serves as
additional reading material for undergraduate and graduate students
of microbiology and environmental sciences. National and
international remediation and restoration scientists, policymakers
will also find this to be a useful read.
This book presents the applications of ion-exchange materials in
the area of environmental analysis and treatment. It includes
chapters on applications of organic, inorganic and composite ion
exchange materials and hexacyanoferrates in various fields such as
chemical and biochemical separations, water purification, removal
of harmful impurities, dyes and cationic and anionic complexes.
This title is a highly valuable source of knowledge on ion-exchange
materials and their applications suitable for postgraduate students
and researchers but also to industrial R&D specialists in
chemistry, chemical, and biochemical technology. Additionally, this
book will provide an in-depth knowledge of ion-exchange column and
operations suitable for engineers and industrialists.
Genetically Engineered Organisms in Bioremediation provides
comprehensive coverage of biotechnological applications of
genetically engineered microorganisms for the bioremediation of
polluted environments. Chapters are contributed by international
scientists with in-depth knowledge, expertise, vision, and
commitment in their scientific profession. They detail several
genetically engineered microorganisms and their enzymes that could
be applied to biologically break down persistent organic pollutants
and recombinant DNA technologies which entail development of
‘suicidal-GEMs’ for effective and safe rejuvenation of heavily
polluted sites. Features: • Highlights genes that encode
catabolic enzymes involved in the biodegradation of pollutants. •
Explores combining genetically engineered microorganisms with
bioaugmentation, biostimulation and bioattenuation strategies. •
Details the application of genetic engineering of bacteria for
managing aromatic organic compounds under hypoxic conditions. •
Discusses tracking techniques and suppression strategies of
genetically modified microorganisms. Written for researchers,
engineers and academics working in bioremediation, microbiology and
biotechnology, this book is both timely and important.
Microbial biosurfactant compounds are a group of structurally
diverse molecules produced by microorganisms, and are mainly
categorized according to their chemical structure. The diversity of
microbial biosurfactants makes them versatile and means that they
offer a range of capabilities, while at the same time being
economically sustainable. As such, they have potential applications
in environmental processes, as well as in food, biomedicine and
other industries. This book discusses innovative approaches and
cutting-edge research that utilize the various properties of
biosurfactants. Drawing on research from around the globe, it
provides an up-to-date review of biosurfactant applications and
their importance in fields such as medicine, gene therapy,
immunotherapy, antimicrobial bioremediation and agriculture. It
also discusses their anti-adhesive properties. The book will appeal
to academics and researchers in the field of microbiology, as well
as policymakers. It also serves as additional reading material for
undergraduate and graduate students of agriculture, ecology, soil
science, and environmental sciences.
This book provides an in-depth review of the history, fundamental
theory, design strategies, and applications of nanogenerators.
Working principles, device mechanisms, material characteristics,
types of nanogenerators, and their different uses are fully
explored. Top researchers in the field of sustainable technology
from different backgrounds and fields contribute their expertise to
deliver a must-have practical resource for students, academic
researchers, and industry professionals. FEATURES Describes the
fundamental aspects and theory of nanogenerators Explores design
strategies including material assessment based upon planned
application Tailors the introduction and essential concept
discussion for the industrial and research community Explores
current applications, existing challenges, and the future outlook
for the field
Semiconductors with optical characteristics have found widespread
use in evolving semiconductor photovoltaics, where optical features
are important. The industrialization of semiconductors and their
allied applications have paved the way for optical measurement
techniques to be used in new ways. Due to their unique properties,
semiconductors are key components in the daily employed
technologies in healthcare, computing, communications, green
energy, and a range of other uses. This book examines the
fundamental optical properties and applications of semiconductors.
It summarizes the information as well as the optical
characteristics and applicability of semiconductors through an
in-depth review of the literature. Accomplished experts in the
field share their knowledge and examine new developments. FEATURES
Comprehensive coverage of all types of optical applications using
semiconductors Explores relevant composite materials and devices
for each application Addresses the optical properties of
crystalline and amorphous semiconductors Describes new developments
in the field and future potential applications Optical Properties
and Applications of Semiconductors is a comprehensive reference and
an invaluable resource for engineers, scientists, academics, and
industry R&D teams working in applied physics.
It has been observed that rapid population expansion has raised the
amount of anthropogenic activity, resulting in high levels of
pollution in water, air, and solid waste as well as an increase in
the pressure placed on agricultural lands. Bioaugmentation
Techniques and Applications in Remediation provides detailed
information on bioaugmentation approaches for the remediation of
sediments, water, and soil polluted with organic and inorganic
pollutants. Practical applications of bioaugmentation techniques
performed in restricted systems under controlled conditions,
laboratory investigations, and in the field are addressed. Special
emphasis is placed on the applications of nanomaterials in
combination with bioaugmentation techniques for enhanced
bioremediation efficiency. FEATURES Explores abiotic and biotic
factors that enhance and facilitate environmental remediation of
contaminants Provides a primer on the elementary microbial
processes entailed in bioaugmentation Summarizes methods and
approaches for executing bioaugmentation technology Details
commercially available products and instrumentation This book is an
ideal resource for researchers, students, and engineers working in
materials science and bioremediation.
Electroactive polymers are smart materials that can undergo size or
shape structural deformations in the presence of an electrical
field. These lightweight polymeric materials possess properties
such as flexibility, cost-effectiveness, rapid response time, easy
controllability (especially physical to electrical), and low power
consumption. Electroactive Polymeric Materials examines the
history, progress, synthesis, and characterization of electroactive
polymers and then details their application and potential in fields
including biomedical science, environmental remediation, renewable
energy, robotics, sensors and textiles. Highlighting the
flexibility, lightweight, cost-effective, rapid response time, easy
controllability, and low power consumption characteristics of
electroactive polymers, respected authors in the field explore
their use in sensors, actuators, MEMS, biomedical apparatus, energy
storage, packaging, textiles, and corrosion protection to provide
readers with a powerhouse of a reference to use for their own
endeavors. Features: Explores the most recent advances in all
categories of ionic/electroactive polymer composite materials
Includes basic science, addresses novel topics, and covers
multifunctional applications in one resource Suitable for
newcomers, academicians, scientists and R&D industrial experts
working in polymer technologies .
Porous Polymer Science and Applications aims to provide recent
developments and advances in synthesis, tuning parameters, and
applications of porous polymers. This book brings together reviews
written by highly accomplished panels of experts working in the
area of porous polymers. It encompasses basic studies and addresses
topics of novel issues concerning the applications of porous
polymers. Chapter topics span basic studies, novel issues, and
applications addressing all aspects in a one-stop reference on
porous polymers. Applications discussed include catalysis, gas
storage, energy and environmental sectors making this an invaluable
guide for students, professors, scientists and R&D industrial
experts working in the field of material science and engineering
and particularly energy conversion and storage. Additional features
include: Provides a comprehensive introduction to porous polymers
addressing design, synthesis, structure, properties and
characterization. Covers task-specific applications of porous
polymers. Explores the advantages and opportunities of these
materials for most major fields of science and engineering.
Outlines novel research areas and potential development and
expansion areas.
This comprehensive edited book on microbial prospective discusses
the innovative approaches and investigation strategies, as well as
provides a broad spectrum of the cutting-edge research on the
processing, properties and technological developments of microbial
products and their applications. Microbes finds very important
applications in our lives including industries and food processing.
They are widely used in the fermentation of beverages, processing
of dairy products, production of pharmaceuticals, chemicals,
enzymes, proteins and biomaterials; conversion of biomass into
fuel, fuel cell technology, health and environmental sectors. Some
of these products are produced commercially, while others are
potentially valuable in biotechnology. Microorganisms are
considered invaluable in research as model organisms. This is a
useful compilation for students and researchers in microbiology,
biotechnology and chemical industries.
The research and development activities in energy conversion and
storage are playing a significant role in our daily lives owing to
the rising interest in clean energy technologies to alleviate the
fossil-fuel crisis. Polymers are used in energy conversion and
storage technology due to their low-cost, softness, ductility and
flexibility compared to carbon and inorganic materials. Polymers in
Energy Conversion and Storage provides in-depth literature on the
applicability of polymers in energy conversion and storage, history
and progress, fabrication techniques, and potential applications.
Highly accomplished experts review current and potential
applications including hydrogen production, solar cells,
photovoltaics, water splitting, fuel cells, supercapacitors and
batteries. Chapters address the history and progress, fabrication
techniques, and many applications within a framework of basic
studies, novel research, and energy applications. Additional
Features Include: Explores all types of energy applications based
on polymers and its composites Provides an introduction and
essential concepts tailored for the industrial and research
community Details historical developments in the use of polymers in
energy applications Discusses the advantages of polymers as
electrolytes in batteries and fuel cells This book is an invaluable
guide for students, professors, scientists and R&D industrial
experts working in the field.
Among electrode materials, inorganic materials have received vast
consideration owing to their redox chemistry, chemical stability,
high electrochemical performance, and high-power applications.
These exceptional properties enable inorganic-based materials to
find application in high-performance energy conversion and storage.
The current advances in nanotechnology have uncovered novel
inorganic materials by various strategies and their different
morphological features may serve as a rule for future
supercapacitor electrode design for efficient supercapacitor
performance. Inorganic Nanomaterials for Supercapacitor Design
depicts the latest advances in inorganic nanomaterials for
supercapacitor energy storage devices. Key Features: ? Provides an
overview on the supercapacitor application of inorganic-based
materials. ? Describes the fundamental aspects, key factors,
advantages, and challenges of inorganic supercapacitors. ? Presents
up-to-date coverage of the large, rapidly growing, and complex
literature on inorganic supercapacitors. ? Surveys current
applications in supercapacitor energy storage. ? Explores the new
aspects of inorganic materials and next-generation supercapacitor
systems.
Today, the agriculture industry is confronted with simultaneous
issues of how to fully embrace mass production of safer food in
terms of both quality and quantity. Most industries are concerned
with avoiding significant levels of soil pollution and
environmental threats as a result of the excessive and harmful use
of synthetic products on crops. Therefore, there is a need to adopt
sustainable technological innovations that can ensure the
sustainability of agricultural production systems. Microbial
Biostimulants for Sustainable Agriculture and Environmental
Bioremediation discusses the benefits, challenges, and practical
applications of eco-friendly biotechnological techniques using
biostimulants derived from beneficial microorganisms. The chapters
cover the use of these organisms to increase crop production,
enhance soil fertility and maintain soil health, create crop and
plant tolerance to different abiotic stressors, release required
nutrients to the soil, increase resistance to plant
pathogens/pests, improve nutrient use efficiency of crops, and
rejuvenate polluted environments. FEATURES Explores the
physiological, morpho-anatomical, and biochemical molecular plant
rejoinders involved in stimulating crop productivity Provides
information on the physiological, cellular, and molecular modes of
action underlying microbial biostimulant interfaces Summarizes
methods and approaches for executing microbial stimulant technology
Outlines numerous environmental management and remediation
strategies This book is an ideal resource for researchers,
engineers, and academics working in soil science, crop science,
water remediation, microbiology, and biotechnology.
Microbes play a major role in the degradation of various
pollutants. Therefore, microbes find potential application in the
area of energy and environmental technology. The book provides
in-depth literature on the topics of environmental and industrial
importance. It is compiled to explore the application of microbe
used in the degradation of aflatoxin, polymers, biomass into fuel,
disinfectants, food products, xenobiotic compounds, lipids,
steroids, organic pollutants, proteins, oil waste, and wastewater
pollutants. This book will be of interest to teachers, researchers,
scientists, and capacity builders. Also, the book serves as
additional reading material for undergraduate and graduate students
of microbiology and environmental sciences. National and
international remediation and restoration scientists, policymakers
will also find this to be a useful read.
Microbial biosurfactant compounds are a group of structurally
diverse molecules produced by microorganisms, and are mainly
categorized according to their chemical structure. The diversity of
microbial biosurfactants makes them versatile and means that they
offer a range of capabilities, while at the same time being
economically sustainable. As such, they have potential applications
in environmental processes, as well as in food, biomedicine and
other industries. This book discusses innovative approaches and
cutting-edge research that utilize the various properties of
biosurfactants. Drawing on research from around the globe, it
provides an up-to-date review of biosurfactant applications and
their importance in fields such as medicine, gene therapy,
immunotherapy, antimicrobial bioremediation and agriculture. It
also discusses their anti-adhesive properties. The book will appeal
to academics and researchers in the field of microbiology, as well
as policymakers. It also serves as additional reading material for
undergraduate and graduate students of agriculture, ecology, soil
science, and environmental sciences.
Among electrode materials, inorganic materials have received vast
consideration owing to their redox chemistry, chemical stability,
high electrochemical performance, and high-power applications.
These exceptional properties enable inorganic-based materials to
find application in high-performance energy conversion and storage.
The current advances in nanotechnology have uncovered novel
inorganic materials by various strategies and their different
morphological features may serve as a rule for future
supercapacitor electrode design for efficient supercapacitor
performance. Inorganic Nanomaterials for Supercapacitor Design
depicts the latest advances in inorganic nanomaterials for
supercapacitor energy storage devices. Key Features: Provides an
overview on the supercapacitor application of inorganic-based
materials. Describes the fundamental aspects, key factors,
advantages, and challenges of inorganic supercapacitors. Presents
up-to-date coverage of the large, rapidly growing, and complex
literature on inorganic supercapacitors. Surveys current
applications in supercapacitor energy storage. Explores the new
aspects of inorganic materials and next-generation supercapacitor
systems.
This comprehensive edited book on microbial prospective discusses
the innovative approaches and investigation strategies, as well as
provides a broad spectrum of the cutting-edge research on the
processing, properties and technological developments of microbial
products and their applications. Microbes finds very important
applications in our lives including industries and food processing.
They are widely used in the fermentation of beverages, processing
of dairy products, production of pharmaceuticals, chemicals,
enzymes, proteins and biomaterials; conversion of biomass into
fuel, fuel cell technology, health and environmental sectors. Some
of these products are produced commercially, while others are
potentially valuable in biotechnology. Microorganisms are
considered invaluable in research as model organisms. This is a
useful compilation for students and researchers in microbiology,
biotechnology and chemical industries.
This edited book provides an in-depth overview of carbon dioxide
(CO2) transformations to sustainable power technologies. It also
discusses the wide scope of issues in engineering avenues, key
designs, device fabrication, characterizations, various types of
conversions and related topics. It includes studies focusing on the
applications in catalysis, energy conversion and conversion
technologies, etc. This is a unique reference guide, and one of the
detailed works is on this technology. The book is the result of
commitments by leading researchers from various backgrounds and
expertise. The book is well structured and is an essential resource
for scientists, undergraduate, postgraduate students, faculty,
R&D professionals, energy chemists and industrial experts.
This edited book focusses on green chemistry as the research
community endeavours to create eco-friendly materials and
technologies. It provides an in-depth overview of the fundamentals,
key concepts and experimental techniques for eco-friendly synthesis
of organic compounds and metal/metal oxide
nanoparticles/nanomaterials. It also emphasizes the mechanisms,
designing and industrial technologies for green synthesis and its
applications. Each chapter brings the recent developments, state of
the art, challenges and perspectives which cover all the aspects in
one place, and which concern the green synthesis and evolution.
Authored by world-renowned experts in a broad range of green
chemistry sectors, this book is an archival reference guide for
researchers, engineers, scientists and postgraduates working in the
field of sustainable science, green chemistry, environmental
science, engineering sciences and industrial technologies.
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