Aqueous Biphasic Separations: Biomolecules to Metal Ions
| AUTHOR | Eiteman, Mark A.; American Chemical Society; Rogers, Robin D. |
| PUBLISHER | Springer (08/31/1995) |
| PRODUCT TYPE | Hardcover (Hardcover) |
Description
Metal Ion Separations in Polyethylene Glycolbased Aqueous Biphasic Systems (R.D. Rogers et al.). Hydrophobic and Charge Effects in the Partitioning of Solutes in Aqueous Twophase Systems (M.A. Eiteman). Twophase Aqueous Surfactant Systems for the Purification of Biomaterials (C.L. Liu et al.). Integration of Aqueous Twophase Extraction with Other Separation Techniques (R. Kaul, B. Mattiasson). Mass Transfer in Aqueous Twophase Systems (S.S. Save, S.V. Save). Metal Extraction in Twophase Waterpoly(ethylene Glycol)Salt Systems (B.Ya. Spivakov et al.). The Behavior of Actinides in Twophase Aqueous Systems Based on Polyethylene Glycol (B.F. Myasoedov et al.). Purification of Biomolecules Using Temperatureinduced Phase Separation (F. Tjerneld et al.). Poly(ethylene Glycol)protein Interaction in Salt Containing Aqueous Solutions (A. Veide et al.). Interfacial Events in Phase Separation and Cell Partitioning in Aqueous Twophase Systems (F.D. Raymond, D. Fisher). Protein Refolding Using Chaotropic Aqueous Twophase Systems (T.A. Spears, D. Forciniti). Partitioning of Polyethylene Glycol (PEG)protein Conjugates in PEG/Dextran Aqueous Twophase Systems (C. Degado). Use of the Aqueous Twophase Partition Technique for Characterization and Quality Control of Recombinant Proteins (B.Ya. Zaslavsky). 2 additional articles. Index.
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Product Format
Product Details
ISBN-13:
9780306450198
ISBN-10:
0306450194
Binding:
Hardback or Cased Book (Sewn)
Content Language:
English
More Product Details
Page Count:
204
Carton Quantity:
17
Product Dimensions:
7.00 x 0.50 x 10.00 inches
Weight:
1.26 pound(s)
Feature Codes:
Illustrated
Country of Origin:
US
Subject Information
BISAC Categories
Science | Chemistry - Analytic
Science | Chemistry - Inorganic
Science | Chemistry - Organic
Dewey Decimal:
543.089
Library of Congress Control Number:
95023687
Descriptions, Reviews, Etc.
publisher marketing
Metal Ion Separations in Polyethylene Glycolbased Aqueous Biphasic Systems (R.D. Rogers et al.). Hydrophobic and Charge Effects in the Partitioning of Solutes in Aqueous Twophase Systems (M.A. Eiteman). Twophase Aqueous Surfactant Systems for the Purification of Biomaterials (C.L. Liu et al.). Integration of Aqueous Twophase Extraction with Other Separation Techniques (R. Kaul, B. Mattiasson). Mass Transfer in Aqueous Twophase Systems (S.S. Save, S.V. Save). Metal Extraction in Twophase Waterpoly(ethylene Glycol)Salt Systems (B.Ya. Spivakov et al.). The Behavior of Actinides in Twophase Aqueous Systems Based on Polyethylene Glycol (B.F. Myasoedov et al.). Purification of Biomolecules Using Temperatureinduced Phase Separation (F. Tjerneld et al.). Poly(ethylene Glycol)protein Interaction in Salt Containing Aqueous Solutions (A. Veide et al.). Interfacial Events in Phase Separation and Cell Partitioning in Aqueous Twophase Systems (F.D. Raymond, D. Fisher). Protein Refolding Using Chaotropic Aqueous Twophase Systems (T.A. Spears, D. Forciniti). Partitioning of Polyethylene Glycol (PEG)protein Conjugates in PEG/Dextran Aqueous Twophase Systems (C. Degado). Use of the Aqueous Twophase Partition Technique for Characterization and Quality Control of Recombinant Proteins (B.Ya. Zaslavsky). 2 additional articles. Index.
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Editor:
Rogers, Robin D.
Prof. Joan F. Brennecke obtained her B.S. in Chemical Engineering at The University of Texas at Austin (1984) and both her M.S. (1987) and Ph.D. (1989) in Chemical Engineering at The University of Illinois at Urbana-Champaign. She is currently a Keating-Crawford Professor at Notre Dame and Director
of the Notre Dame Energy Center. Brennecke's research is primarily focused on experimental aspects of thermodynamics and separations, with particular interest in supercritical fluids and ionic liquids.
Dr. Robin D. Rogers obtained both his B.S. in Chemistry (1978, Summa Cum Laude) and his Ph.D. in Chemistry (1982) at The University of Alabama and is currently a Professor of Chemistry and Director of the Center for Green Manufacturing at UA. Rogers holds three patents and has published over 500
papers on a diverse array of topics including structural chemistry, green separation science and technology, room temperature ionic liquids, and aqueous biphasic separations.
Prof. Kenneth R. Seddon obtained both his BSc (1970, First Class) and his PhD (1973) in Chemistry at the University of Liverpool, and his MA at Oxford University (1974). He currently holds the Chair of Inorganic Chemistry, and is Director of the QUILL Centre, at The Queen's University of Belfast.
He is inventor on over 20 patents, has published over 220 papers, co-authored four books, and co-edited four books (including this one). Research interests include ionic liquids, green chemistry, crystal engineering, coordination chemistry, conservation of ancient Chinese documents, and chemical
weapons.
of the Notre Dame Energy Center. Brennecke's research is primarily focused on experimental aspects of thermodynamics and separations, with particular interest in supercritical fluids and ionic liquids.
Dr. Robin D. Rogers obtained both his B.S. in Chemistry (1978, Summa Cum Laude) and his Ph.D. in Chemistry (1982) at The University of Alabama and is currently a Professor of Chemistry and Director of the Center for Green Manufacturing at UA. Rogers holds three patents and has published over 500
papers on a diverse array of topics including structural chemistry, green separation science and technology, room temperature ionic liquids, and aqueous biphasic separations.
Prof. Kenneth R. Seddon obtained both his BSc (1970, First Class) and his PhD (1973) in Chemistry at the University of Liverpool, and his MA at Oxford University (1974). He currently holds the Chair of Inorganic Chemistry, and is Director of the QUILL Centre, at The Queen's University of Belfast.
He is inventor on over 20 patents, has published over 220 papers, co-authored four books, and co-edited four books (including this one). Research interests include ionic liquids, green chemistry, crystal engineering, coordination chemistry, conservation of ancient Chinese documents, and chemical
weapons.
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