Biopolymer Grafting
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Annotation This volume presents the latest research and developments in the practical application of these methods in industry, both to enable polymer scientists and engineers to keep up with the latest research trends, as well as to propose ideas for further research and application. Research into bio-based polymers has become increasingly prevalent. However, due to challenges related to the properties of these materials compared to synthetic polymers - such as their resistance to chemicals or weather - uptake has not dramatically increased yet. As a result, improvements in surface modification of bio-polymers through graft copolymerisation are enormously important, because they will widen the scope of their applications. Read more... Abstract: Annotation This volume presents the latest research and developments in the practical application of these methods in industry, both to enable polymer scientists and engineers to keep up with the latest research trends, as well as to propose ideas for further research and application. Research into bio-based polymers has become increasingly prevalent. However, due to challenges related to the properties of these materials compared to synthetic polymers - such as their resistance to chemicals or weather - uptake has not dramatically increased yet. As a result, improvements in surface modification of bio-polymers through graft copolymerisation are enormously important, because they will widen the scope of their applications Content: Front Cover Biopolymer Grafting: Synthesis and Properties Biopolymer Grafting: Synthesis and Properties Copyright Dedicated Contents Contributors About the Editor Preface 1 -- Synthesis and Characterization of Graft Copolymers of Plant Polysaccharides 1. INTRODUCTION 2. GRAFT COPOLYMERIZATION 2.1 Concept 2.2 Methods 2.2.1 Conventional Radical Grafting Copolymerization 2.2.2 Macromonomer Radical Grafting Copolymerization 2.2.3 High-Energy-Initiated Grafting copolymerization 2.2.3.1 Microwave-Assisted Grafting Copolymerization. 10. GRAFT COPOLYMERIZATION OF FENUGREEK GUM11. GRAFT COPOLYMERIZATION OF GUM KONDAGOGU 12. GRAFT COPOLYMERIZATION OF GUM GHATTI 13. GRAFT COPOLYMERIZATION OF KONJAC GLUCOMANNAN 14. GRAFT COPOLYMERIZATION OF PSYLLIUM POLYSACCHARIDE 15. GRAFT COPOLYMERIZATION OF PLANT-DERIVED STARCHES 16. APPLICATIONS OF PLANT POLYSACCHARIDE-G-COPOLYMERS 17. CONCLUSION REFERENCES 2 -- Functional Separation Membranes From Grafted Biopolymers 1. INTRODUCTION 2. SIGNIFICANCE FOR PREPARATION OF SEPARATION MEMBRANES FROM GRAFTED BIOPOLYMERS 3. PRINCIPLE OF MEMBRANE SEPARATION TECHNOLOGY. 3.1 Principle of Diffusion Dialysis3.2 Principle of Reverse Osmosis 3.3 Principle of Nanofiltration 3.4 Principle of Ultrafiltration 3.5 Principle of Microfiltration 3.6 Principle of Pervaporation 3.7 Principle of Evapomeation 3.8 Principle of Gas Permeation 4. TECHNOLOGY OF GRAFTED BIOPOLYMER MEMBRANE 4.1 Dialysis 4.1.1 Diffusion Dialysis 4.1.2 Hemodialysis 4.2 Reverse Osmosis 4.3 Nanofiltration 4.4 Ultrafiltration 4.5 Pervaporation 4.6 Evapomeation 4.7 Gas Permeation 4.8 Medical, Clinical, and Other Field 4.8.1 Biocompatibility 4.9 Blood Compatibility 4.9.1 Others. 5. CONCLUSIONSREFERENCES FURTHER READING 3 -- Grafting Derivate From Alginate 1. INTRODUCTION 2. ALKYLATED DERIVATIVES OF ALGINATE 2.1 Alkane 2.1.1 Esterification 2.1.2 Reductive-Amination 2.2 N-Octylamine 2.2.1 Ugi Reaction 2.2.2 Amidation 2.3 Oleoyl Chloride 3. DERIVATIVES BASED ON ALGINATE AND ACRYLATE AND ITS DERIVATIVES 3.1 Acrylic Acid 3.2 Alkylated Acrylate 3.2.1 Graft Copolymerization 3.2.2 Reductive-Amination 3.3 Other Acrylic Polymers 4. DERIVATIVES BASED ON ALGINATE AND ACRYLAMIDE AND ITS DERIVATIVES 4.1 Acrylamide 4.2 N-Isopropylacrylamide.
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