Applications of Biodegradable and Bio-Based Polymers for Human Health and a Cleaner Environment (eBook, ePUB)
Redaktion: Stoica, Iuliana; Haghi, A. K.; Rawat, Neha Kanwar; Mukbaniani, Omari
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Applications of Biodegradable and Bio-Based Polymers for Human Health and a Cleaner Environment (eBook, ePUB)
Redaktion: Stoica, Iuliana; Haghi, A. K.; Rawat, Neha Kanwar; Mukbaniani, Omari
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Here is an interdisciplinary look at concepts that can be applied across engineering disciplines in the development of products, processes, and systems to minimize environmental impacts across all life cycle phases using biodegradable and bio-based polymers.
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Here is an interdisciplinary look at concepts that can be applied across engineering disciplines in the development of products, processes, and systems to minimize environmental impacts across all life cycle phases using biodegradable and bio-based polymers.
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Produktdetails
- Produktdetails
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 576
- Erscheinungstermin: 22. Dezember 2021
- Englisch
- ISBN-13: 9781000345650
- Artikelnr.: 62880793
- Verlag: Taylor & Francis eBooks
- Seitenzahl: 576
- Erscheinungstermin: 22. Dezember 2021
- Englisch
- ISBN-13: 9781000345650
- Artikelnr.: 62880793
- Herstellerkennzeichnung Die Herstellerinformationen sind derzeit nicht verfügbar.
Iuliana Stoica, PhD, is a Scientific Researcher in physics at the Romanian Academy, "Petru Poni" Institute of Macromolecular Chemistry, Department of Polymer Materials Physics. Her area of scientific activity is focused on characterization of a wide range of polymers, copolymers, polymeric composites, and polymeric mixtures. She was a main or co-author for over 95 papers in peer-reviewed ISI journals, and she has contributed several book chapters on polymer and materials science. She was a member of the organizing and program committees of several scientific conferences. Omari V. Mukbaniani, DSc, is Professor of Ivane Javakhishvili Tbilisi State University (TSU), Faculty of Exact and Natural Sciences, Department of Chemistry, and Chair of Macromolecular Chemistry, Tbilisi, Georgia. He is also Director of the Institute of Macromolecular Chemistry and Polymeric Materials at TSU and a member of the Academy of Natural Sciences of Georgia. He is the author of more than 480 publications, 25 books, monographs, and 10 inventions. He created the International Symposium on Polymers and Advanced Materials ICSP&AM. Neha Kanwar Rawat, PhD, is a recipient of a prestigious DST Young Scientist Postdoctoral Fellowship and is presently a researcher in the Materials Science Division, CSIR-National Aerospace Laboratories, Bangalore, India. Her main interests include nanotechnology-nanostructured materials synthesis and characterization, with her main focus on comprising green chemistry, novel sustainable chemical processing of nano-conducting polymers/nanocomposites, etc. She has contributed chapters to international books published with the Royal Society of Chemistry, Wiley, Elsevier, etc. A. K. Haghi, PhD, is the author and editor of over 200 books, as well as over 1000 published papers in various journals and conference proceedings. Dr. Haghi has received several grants, consulted for a number of major corporations, and is a frequent speaker to national and international audiences. Since 1983, he served as professor at several universities. He is the former Editor-in-Chief of the International Journal of Chemoinformatics and Chemical Engineering and Polymers Research Journal. He is also a member of the Canadian Research and Development Center of Sciences and Cultures.
Part 1: Biopolymers-Based Advanced Materials 1. Wood-Based Biopolymers as
Active Elements in New Green Silicone Composites 2. Rheological Insights in
Development of Biopolymer Scaffolds 3. Revealing Novel Functionalities and
Inherent Properties of Bio-Based Polymers for Biomedical and Sustainable
Applications 4. Bio-Based Polymers for Liposomal Drug Formulations 5.
Biomaterial-Based Implants: A Medical Device to Reconstruct the Biological
Structure 6. Metal Complexes-based Catalysts for Oxidation Reactions as New
Alternatives for Catalytic Processes in the Production of Bio-Based
Polymers Part 2: Biodegradable Polymers and Sustainable Composites 7.
Current Trends and Perspectives in Biodegradable Polymers 8. Surface
Modification and Analysis of Biodegradable Biopolymer Materials for Various
Applications 9. Galactomannan: A Biodegradable Polymer Used for Bio-Based
Edible Coating and Film Materials 10. Poly(lactic acid)-Based Materials:
Food Packaging Application and Biodegradability Evaluation 11.
Biodegradable and Biocompatible Nanocomposite Hydrogels as Emerging
Biomaterials 12. New Perspectives on Development of Nanocomposites Based on
Biodegradable Polymers and Their Tissue Engineering Applications 13.
Bionanocomposites for Biomedical Applications Part 3: Environmental
Opportunities and Risks 14. Cyclodextrin-Based Polymers for Pollutant
Removal 15. Molecular Modeling and Properties of Chelate Agents and Their
Composites for Treatment of Heavy Metal Intoxication 16. High Energy
Radiation: A Promising Media for the Synthesis of Hydrogels Free from Toxic
Chemicals 17. Chemistry of Schiff Base Synthesis and Their Applications: A
Greener Approach 18. Eco-Compatible Synthetic Strategies: A Paradigm Shift
in Organic Synthesis
Active Elements in New Green Silicone Composites 2. Rheological Insights in
Development of Biopolymer Scaffolds 3. Revealing Novel Functionalities and
Inherent Properties of Bio-Based Polymers for Biomedical and Sustainable
Applications 4. Bio-Based Polymers for Liposomal Drug Formulations 5.
Biomaterial-Based Implants: A Medical Device to Reconstruct the Biological
Structure 6. Metal Complexes-based Catalysts for Oxidation Reactions as New
Alternatives for Catalytic Processes in the Production of Bio-Based
Polymers Part 2: Biodegradable Polymers and Sustainable Composites 7.
Current Trends and Perspectives in Biodegradable Polymers 8. Surface
Modification and Analysis of Biodegradable Biopolymer Materials for Various
Applications 9. Galactomannan: A Biodegradable Polymer Used for Bio-Based
Edible Coating and Film Materials 10. Poly(lactic acid)-Based Materials:
Food Packaging Application and Biodegradability Evaluation 11.
Biodegradable and Biocompatible Nanocomposite Hydrogels as Emerging
Biomaterials 12. New Perspectives on Development of Nanocomposites Based on
Biodegradable Polymers and Their Tissue Engineering Applications 13.
Bionanocomposites for Biomedical Applications Part 3: Environmental
Opportunities and Risks 14. Cyclodextrin-Based Polymers for Pollutant
Removal 15. Molecular Modeling and Properties of Chelate Agents and Their
Composites for Treatment of Heavy Metal Intoxication 16. High Energy
Radiation: A Promising Media for the Synthesis of Hydrogels Free from Toxic
Chemicals 17. Chemistry of Schiff Base Synthesis and Their Applications: A
Greener Approach 18. Eco-Compatible Synthetic Strategies: A Paradigm Shift
in Organic Synthesis
Part 1: Biopolymers-Based Advanced Materials 1. Wood-Based Biopolymers as
Active Elements in New Green Silicone Composites 2. Rheological Insights in
Development of Biopolymer Scaffolds 3. Revealing Novel Functionalities and
Inherent Properties of Bio-Based Polymers for Biomedical and Sustainable
Applications 4. Bio-Based Polymers for Liposomal Drug Formulations 5.
Biomaterial-Based Implants: A Medical Device to Reconstruct the Biological
Structure 6. Metal Complexes-based Catalysts for Oxidation Reactions as New
Alternatives for Catalytic Processes in the Production of Bio-Based
Polymers Part 2: Biodegradable Polymers and Sustainable Composites 7.
Current Trends and Perspectives in Biodegradable Polymers 8. Surface
Modification and Analysis of Biodegradable Biopolymer Materials for Various
Applications 9. Galactomannan: A Biodegradable Polymer Used for Bio-Based
Edible Coating and Film Materials 10. Poly(lactic acid)-Based Materials:
Food Packaging Application and Biodegradability Evaluation 11.
Biodegradable and Biocompatible Nanocomposite Hydrogels as Emerging
Biomaterials 12. New Perspectives on Development of Nanocomposites Based on
Biodegradable Polymers and Their Tissue Engineering Applications 13.
Bionanocomposites for Biomedical Applications Part 3: Environmental
Opportunities and Risks 14. Cyclodextrin-Based Polymers for Pollutant
Removal 15. Molecular Modeling and Properties of Chelate Agents and Their
Composites for Treatment of Heavy Metal Intoxication 16. High Energy
Radiation: A Promising Media for the Synthesis of Hydrogels Free from Toxic
Chemicals 17. Chemistry of Schiff Base Synthesis and Their Applications: A
Greener Approach 18. Eco-Compatible Synthetic Strategies: A Paradigm Shift
in Organic Synthesis
Active Elements in New Green Silicone Composites 2. Rheological Insights in
Development of Biopolymer Scaffolds 3. Revealing Novel Functionalities and
Inherent Properties of Bio-Based Polymers for Biomedical and Sustainable
Applications 4. Bio-Based Polymers for Liposomal Drug Formulations 5.
Biomaterial-Based Implants: A Medical Device to Reconstruct the Biological
Structure 6. Metal Complexes-based Catalysts for Oxidation Reactions as New
Alternatives for Catalytic Processes in the Production of Bio-Based
Polymers Part 2: Biodegradable Polymers and Sustainable Composites 7.
Current Trends and Perspectives in Biodegradable Polymers 8. Surface
Modification and Analysis of Biodegradable Biopolymer Materials for Various
Applications 9. Galactomannan: A Biodegradable Polymer Used for Bio-Based
Edible Coating and Film Materials 10. Poly(lactic acid)-Based Materials:
Food Packaging Application and Biodegradability Evaluation 11.
Biodegradable and Biocompatible Nanocomposite Hydrogels as Emerging
Biomaterials 12. New Perspectives on Development of Nanocomposites Based on
Biodegradable Polymers and Their Tissue Engineering Applications 13.
Bionanocomposites for Biomedical Applications Part 3: Environmental
Opportunities and Risks 14. Cyclodextrin-Based Polymers for Pollutant
Removal 15. Molecular Modeling and Properties of Chelate Agents and Their
Composites for Treatment of Heavy Metal Intoxication 16. High Energy
Radiation: A Promising Media for the Synthesis of Hydrogels Free from Toxic
Chemicals 17. Chemistry of Schiff Base Synthesis and Their Applications: A
Greener Approach 18. Eco-Compatible Synthetic Strategies: A Paradigm Shift
in Organic Synthesis