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Industrial Biotechnology offers a comprehensive overview of
biochemical processes, technologies, and practical applications of
industrial biotechnology. The work comprises of chapters that
discuss medium preparation, inoculum preparation using industrial
strain and upstream processing, various fermentation processes, and
physico-chemical separation processes for the purification of
products and packaging. Analyzes problems within biochemical
processes Discusses stoichiometry of bioprocesses Covers upstream
and downstream processing Offers a wealth of case studies of
different biochemical production processes, including those in
development of food products, vaccines and medicines, single cell
proteins, amino acids, cheese, biodiesel, biopesticides, and more
This book is aimed at advanced students, industrial practitioners,
and researchers in biotechnology, food engineering, chemical
engineering, and environmental engineering.
Focusing on fundamentals of biofuel production from renewable
energy sources and biohydrogen production, this book offers a
complete understanding of the bioconversion processes. Each chapter
begins with a fundamental explanation for general readers and ends
with in-depth scientific details suitable for expert readers. It
discusses different types of production technologies covering basic
concepts, production strategies, commercial usage, and advances.
Biochemical engineering mostly deals with the most complicated life
systems as compared with chemical engineering. A fermenter is the
heart of biochemical processes. It is essential to operate a system
properly. A description of enzymatic reaction kinetics is followed
by cell growth kinetics to determine several kinetic parameters.
Operations and analyses of several biochemical processes are
included to determine their special. The book also covers the
determination of several operational parameters, such as volumetric
mass transfer coefficient, mixing time, death rate constant,
chemical oxygen demand, and heat of combustion. This book provides
a novel description of the experimental protocol to find out
several operational parameters of biochemical processes. A
comprehensive collection of numerous experiments based on
fundamentals, it focuses on the determination of not only the
characteristics of raw materials but also other essential
parameters required for the operation of biochemical processes. It
also emphasizes the applicability of the analysis to various
processes. Equipped with illustrative diagrams, neat flowcharts,
and exhaustive tables, the book is ideal for young researchers,
teachers, and scientists working towards developing a solid
understanding of the experimental aspects of biochemical
engineering.
Biohydrogen Production: Fundamentals and Technology Advances covers
the fundamentals of biohydrogen production technology, including
microbiology, biochemistry, feedstock requirements, and molecular
biology of the biological hydrogen production processes. It also
gives insight into scale-up problems and limitations. In addition,
the book discusses mathematical modeling of the various processes
involved in biohydrogen production and the software required to
model the processes. The book summarizes research advances that
have been made in this field and discusses bottlenecks of the
various processes, which presently limit the commercialization of
this technology. The authors also focus on the process economy,
policy, and environmental impact of this technology, since the
future of biohydrogen production depends not only on research
advances, but also on economic considerations (the cost of fossil
fuels), social espousal, and the development of H2 energy systems.
The book describes the fundamentals of this technology interwoven
with more advanced research findings. Further reading is suggested
at the end of each chapter. Since the beauty of any innovation is
its applicability, socioeconomic impact, and cost energy analysis,
the book examines each of these points to give you a holistic
picture of this technology. Illustrative diagrams, flow charts, and
comprehensive tables detailing the scientific advancements provide
an opportunity to understand the process comprehensively and
meticulously. Written in a lucid style, the book supplies a
complete knowledge bank about biohydrogen production processes.
Biohydrogen Production: Fundamentals and Technology Advances covers
the fundamentals of biohydrogen production technology, including
microbiology, biochemistry, feedstock requirements, and molecular
biology of the biological hydrogen production processes. It also
gives insight into scale-up problems and limitations. In addition,
the book discusses mathematical modeling of the various processes
involved in biohydrogen production and the software required to
model the processes. The book summarizes research advances that
have been made in this field and discusses bottlenecks of the
various processes, which presently limit the commercialization of
this technology. The authors also focus on the process economy,
policy, and environmental impact of this technology, since the
future of biohydrogen production depends not only on research
advances, but also on economic considerations (the cost of fossil
fuels), social espousal, and the development of H2 energy systems.
The book describes the fundamentals of this technology interwoven
with more advanced research findings. Further reading is suggested
at the end of each chapter. Since the beauty of any innovation is
its applicability, socioeconomic impact, and cost energy analysis,
the book examines each of these points to give you a holistic
picture of this technology. Illustrative diagrams, flow charts, and
comprehensive tables detailing the scientific advancements provide
an opportunity to understand the process comprehensively and
meticulously. Written in a lucid style, the book supplies a
complete knowledge bank about biohydrogen production processes.
All engineering disciplines have been developed from the basic
sciences. Science gives us the information on the reasoning behind
new product development, whereas engineering is the application of
science to manufacture the product at the commercial level.
Biological processes involve various biomolecules, which come from
living sources. It is now possible to manipulate DNA to get the
desired changes in biochemical processes. This book provides
students the knowledge that will enable them to contribute in
various professional fields, including bioprocess development,
modeling and simulation, and environmental engineering. It includes
the analysis of different upstream and downstream processes. The
chapters are organized in broad engineering subdisciplines, such as
mass and energy balances, reaction theory using both chemical and
enzymatic reactions, microbial cell growth kinetics, transport
phenomena, different control systems used in the fermentation
industry, and case studies of some industrial fermentation
processes. Each chapter begins with a fundamental explanation for
general readers and ends with in-depth scientific details suitable
for expert readers. The book also includes the solutions to about
100 problems.
Focusing on fundamentals of biofuel production from renewable
energy sources and biohydrogen production, this book offers a
complete understanding of the bioconversion processes. Each chapter
begins with a fundamental explanation for general readers and ends
with in-depth scientific details suitable for expert readers. It
discusses different types of production technologies covering basic
concepts, production strategies, commercial usage, and advances.
This book is a novel attempt at describing the fundamental aspects
of and advancements in the field of biohythane production. The
comprehensive collection of chapters is based on the fundamentals
of heterotrophic hydrogen production and consequent methane
production technologies. Emphasis is on the integration of two
stages of a hybrid system for maximum gaseous energy generation
from organic wastes, thus making the overall process economically
viable. Readers get insight into the technological advancements
made in the field of biohydrogen and biomethane production and the
challenges involved in integrating these two technologies. The book
also includes details of the microbiological, biochemical, and
bioprocess aspects related to biohythane production, in addition to
the applicability of this process, its socioeconomic concerns, and
cost energy analysis, supplemented with illustrative diagrams,
flowcharts, and comprehensive tables. It will be an ideal vade
mecum for advanced undergraduate- and graduate-level students of
biotechnology, microbiology, biochemical engineering, chemical
engineering, and energy engineering; teachers and researchers in
bioenergy, the environment, and biofuel production; and policy
makers.
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