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A durable, hard-wearing material
Details
Hydrocarbons, the main source of plastic materials, are threatened with exhaustion. Although plastics offer advantages such as high resistance to atmospheric agents, ease of use and moderate costs, their end-of-life management is problematic. This thesis explores the use of a natural polymer, cellulose, as a sustainable alternative.Cellulose, extracted from wood, cotton, etc., can be modified by esterification to become apolar. Combined with polyurethane diacrylate in various percentages, it forms composite materials that are biodegradable under natural conditions (soil, sunlight, etc.). These composites have good resistance to water vapour and non-polar solvents, but low resistance to solvents of medium polarity.The main factors influencing moisture resistance are : Carbon chain length. Steric hindrance, determined by ester type. Degree of substitution.This study highlights the potential of cellulose as an environmentally-friendly solution for reducing dependence on hydrocarbon-based plastics.
Autorentext
Dr. BAIRA Fayçal-né le 20 janvier 1981 à Batna, Algérie, Dr. BAIRA Fayçal est maître de conférences classe A à l'université Batna 2. En tant qu'enseignant-chercheur, ses travaux couvrent plusieurs domaines, notamment la chimie des matériaux et les polymères. La métallurgie et la chimie théorique, la synthèse organique, la corrosion.
Weitere Informationen
- Allgemeine Informationen
- GTIN 09786208481643
- Genre Chemistry
- Anzahl Seiten 68
- Herausgeber Our Knowledge Publishing
- Größe H220mm x B150mm
- Jahr 2025
- EAN 9786208481643
- Format Kartonierter Einband
- ISBN 978-620-8-48164-3
- Veröffentlichung 29.08.2025
- Titel A durable, hard-wearing material
- Autor Fayçal Baira
- Untertitel A durable and resistant material: date kernel flour in composites.DE
- Sprache Englisch