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Download Engineering Processes for Bioseparations ePub

by LAURENCE WEATHERLEY

Download Engineering Processes for Bioseparations ePub
  • ISBN 0750619368
  • ISBN13 978-0750619363
  • Language English
  • Author LAURENCE WEATHERLEY
  • Publisher Butterworth-Heinemann (January 27, 1995)
  • Pages 250
  • Formats rtf lrf rtf mobi
  • Category Engineering
  • Subcategory Engineering
  • Size ePub 1468 kb
  • Size Fb2 1462 kb
  • Rating: 4.7
  • Votes: 216

The use of biotechnology in chemical synthesis offers up numerous advantages to the engineer in the process industries, but it also presents a number of fundamental challenges and difficulties which impinge directly on separation process requirements. The use of biochemical separations has grown significantly during the past decade, and is especially used in process industries such as healthcare and food processing. However it is becoming increasingly more important in areas such as recycling and waste-water treatment and as industry shifts towards cleaner processes biochemical separations will continue to grow. The two main objectives of this book are to focus on the application of existing separation process techniques to the recovery and purification of biologically derived products and to examine the state of knowledge of new techniques which have future potential. Within these objectives the complexities and breadth of problems associated with biological separations are discussed, specific engineering techniques are featured and their adaptation to biochemical separations are highlighted.

Laurence r. weatherley. Affiliations and Expertise. Du Pont Professor of Process Engineering, Queen's University of Belfast.

eBook ISBN: 9781483292106. Laurence r.

Engineering Processes for Bioseparations. weatherley

Engineering Processes for Bioseparations. The two main objectives of this book are to focus on the application of existing separation process techniques to the recovery and purification of biologically derived products and to examine the state of knowledge of new techniques which have future potential. Within these objectives the complexities and breadth of problems associated with biological separations are discussed, specific engineering techniques are featured and their adaptation to biochemical separations are highlighted.

Engineering Processes for Bioseparations by LAURENCE R. WEATHERLEY and Publisher Elsevier Butterworth Heinemann. Save up to 80% by choosing the eTextbook option for ISBN: 9781483292106, 148329210X. The print version of this textbook is ISBN: 9780750619363, 0750619368. You are currently visiting our US store. You may visit any one of our stores by selecting a country below. Note that the availability of products for purchase is based on the country of your billing address. Some items may have regional restrictions for purchase. Canadian customers may purchase from our stores in Canada or the US. Canada.

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Good for students who have chamical engineering backgrounds and want to venture into bioseparations. The additional chapter on plant design and economics is also very beneficial. I'm glad I found this book!

Engineering Processes for Bioseparations, n, 1994 Grading Presentation Report Final (Take-Home) 30% 40% 30%.

Engineering Processes for Bioseparations, n, 1994 Grading Presentation Report Final (Take-Home) 30% 40% 30%. Related documents. 60- Take-Home Examination Geography 101a Due September 30, 1990, 1:00 . sample course - Chemical Engineering.

Read "Bioseparations Science and Engineering" by Roger G. Harrison .

Unique to this text is a chapter dedicated to bioseparations process design and economics, in which a process simular, SuperPro Designer® is used to analyze and evaluate the production of three important biological products.

Bioseparation is the isolation of biological substances including molecules, cells and cell components, and organisms. Using magnetic bioseparation decreases times needed for target substance recovery. Magnetic bioseparation may be accomplished by two routes. Magnetic separation technologies have also been used for environmental remediation in removing oil spills from waterways. In many bioseparation applications, ideal particles are superparamagnetic.