Advanced Separation Techniques for Polyolefins

Advanced Separation Techniques for Polyolefins
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Artikel-Nr:
9783319086316
Veröffentl:
2014
Einband:
HC runder Rücken kaschiert
Erscheinungsdatum:
09.09.2014
Seiten:
192
Autor:
Muhammad Imran Malik
Gewicht:
459 g
Format:
241x160x17 mm
Serie:
Springer Laboratory
Sprache:
Englisch
Beschreibung:

Harald Pasch holds the SASOL Chair of Analytical Polymer Science at the Department of Chemistry and Polymer Science, University of Stellenbosch, South Africa. He has great experience in analytical polymer science and polymer separation and fractionation techniques. His research is focused on the development of multidimensional analytical techniques for complex polymers, in particular efficient multi-dimensional coupling of separation methods and hyphenation of separation methods through complementary analytical methodology. Harald Pasch is one of the series editors of the series Springer Laboratory: Manuals in Polymer Science. He has co-authored successful books introducing to HPLC and Multidimensional HPLC of Polymers as well as MALDI-TOF Mass Spectrometry, which were very positively received in the community (cf. DOI 10.1007/s00216-014-7632-z). This latest book by Pasch and Malik now focuses on "Advanced Separation Techniques for Polyolefins".

Muhammad Imran Malik has a wide-ranging background in polymer science, including microwave-assisted synthetic strategies and a special focus on characterization and separation techniques for complex polymers. He has worked together with Harald Pasch as a postdoctoral fellow in developing multi-dimensional characterization techniques for polymers. He now holds a position as Assistant Professor at the H.E.J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences (ICCBS) at the University of Karachi (Pakistan). His research focuses on Analytical Polymer Science.

This Springer Laboratory volume introduces the reader to advanced techniques for the separation and fractionation of polyolefins. It includes detailed information on experimental protocols and procedures, addressing the experimental background of different polyolefin fractionation techniques in great detail. The book summarizes important applications in all major fractionation methods with emphasis on multidimensional analytical approaches. It comprises the most powerful modern techniques, such as high temperature size exclusion chromatography (HT-SEC) for molar mass analysis, temperature rising elution fractionation (TREF) and crystallization analysis fractionation (CRYSTAF) for the analysis of chemical composition and branching, high temperature two-dimensional liquid chromatography (HT-2D-LC), solvent and temperature gradient interaction chromatography (SGIC and TGIC) and crystallization elution fractionation (CEF). Beginners as well as experiencedchromatographers will benefit from this concise introduction to a great variety in instrumentation, separation procedures and applications. With detailed descriptions of experimental approaches for the analysis of complex polyolefins, the readers are offered a toolbox to solve simple as well as sophisticated separation tasks. The book starts with an introduction into the molecular complexity of polyolefins - the most widely used synthetic polymers with rapidly growing production capacities. It systematically discusses crystallization based fractionation techniques including TREF, CRYSTAF and CEF and column chromatographic techniques for molar mass, chemical composition and microstructure, as well as the combination of different fractionations in multidimensional experimental setups. This book also includes basic information on the application of high-temperature field-flow fractionation.
First comprehensive textbook on high-temperature fractionation techniques
Part A Introduction.- Molecular Heterogeneity of Polyolefins.- Analytical Methods for Polyolefins.- Part B Crystallization-Based Fractionation Techniques.- Temperature Rising Elution Fractionation.- Crystallization Analysis Fractionation.- Crystallization Elution Fractionation.- Part C Column-Based Chromatographic Techniques.- Multidetector Size Exclusion Chromatography.- Solvent Gradient Interaction Chromatography.- Temperature Gradient Interaction Chromatography.- Two-Dimensional Liquid Chromatography.- Part D Field-Flow Fractionation.- Fundamentals.- Application of Field-Flow Fractionation of Polyolefins.- Analysis of Polyolefins by Asymmetric Flow FFF.- Conclusions and Future Trends.

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