9781119159025-1119159024-Engineering Principles in Biotechnology

Engineering Principles in Biotechnology

ISBN-13: 9781119159025
ISBN-10: 1119159024
Edition: 1
Author: Wei-Shou Hu
Publication date: 2017
Publisher: Wiley
Format: Hardcover 504 pages
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Book details

ISBN-13: 9781119159025
ISBN-10: 1119159024
Edition: 1
Author: Wei-Shou Hu
Publication date: 2017
Publisher: Wiley
Format: Hardcover 504 pages

Summary

Engineering Principles in Biotechnology (ISBN-13: 9781119159025 and ISBN-10: 1119159024), written by authors Wei-Shou Hu, was published by Wiley in 2017. With an overall rating of 4.4 stars, it's a notable title among other Biotechnology (Biological Sciences) books. You can easily purchase or rent Engineering Principles in Biotechnology (Hardcover) from BooksRun, along with many other new and used Biotechnology books and textbooks. And, if you're looking to sell your copy, our current buyback offer is $1.7.

Description

This book is a short introduction to the engineering principles of harnessing the vast potential of microorganisms, and animal and plant cells in making biochemical products. It was written for scientists who have no background in engineering, and for engineers with minimal background in biology. The overall subject dealt with is process. But the coverage goes beyond the process of biomanufacturing in the bioreactor, and extends to the factory of cell’s biosynthetic machinery.

Starting with an overview of biotechnology and organism, engineers are eased into biochemical reactions and life scientists are exposed to the technology of production using cells. Subsequent chapters allow engineers to be acquainted with biochemical pathways, while life scientist learn about stoichiometric and kinetic principles of reactions and cell growth. This leads to the coverage of reactors, oxygen transfer and scale up. Following three chapters on biomanufacturing of current and future importance, i.e. cell culture, stem cells and synthetic biology, the topic switches to product purification, first with a conceptual coverage of operations used in bioseparation, and then a more detailed analysis to provide a conceptual understanding of chromatography, the modern workhorse of bioseparation.

Drawing on principles from engineering and life sciences, this book is for practitioners in biotechnology and bioengineering. The author has used the book for a course for advanced students in both engineering and life sciences. To this end, problems are provided at the end of each chapter.

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