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The aim and purpose of this book is to provide an understanding of
the current science underpinning Carbon Capture and Sequestration
(CCS) and to provide students and interested researchers with
sufficient background on the basics of chemical engineering,
material science, and geology that they can understand the current
state of the art of the research in the field of CCS. In addition,
the book provides a comprehensive discussion of the impact on CCS
on the energy landscape, society, and climate as these topics
govern the success of the science being done in this field. The
book is aimed at undergraduate students, graduate students,
scientists, and professionals who would like to gain a broad
multidisciplinary view of the research that is being carried out to
solve one of biggest challenges of our generation.
The aim and purpose of this book is to provide an understanding of
the current science underpinning Carbon Capture and Sequestration
(CCS) and to provide students and interested researchers with
sufficient background on the basics of chemical engineering,
material science, and geology that they can understand the current
state of the art of the research in the field of CCS. In addition,
the book provides a comprehensive discussion of the impact on CCS
on the energy landscape, society, and climate as these topics
govern the success of the science being done in this field. The
book is aimed at undergraduate students, graduate students,
scientists, and professionals who would like to gain a broad
multidisciplinary view of the research that is being carried out to
solve one of biggest challenges of our generation.
This textbook puts design at the center of introducing students to
the course in mass and energy balances in chemical engineering.
Employers and accreditations increasingly stress the importance of
design in the engineering curriculum, and design-driven analysis
will motivate students to dig deeply into the key concepts of the
field. The second edition has been completely revised and updated.
It introduces the central steps in design and three methods of
analysis: mathematical modeling, graphical methods, and dimensional
analysis. Students learn how to apply engineering skills, such as
how to simplify calculations through assumptions and
approximations; how to verify calculations, significant figures,
spreadsheets, graphing (standard, semi-log and log-log); and how to
use data maps, in the contexts of contemporary chemical processes
such as the hydrogen economy, petrochemical and biochemical
processes, polymers, semiconductors, and pharmaceuticals.
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