The International Symposium on Polymeric Materials 2024 (ISPM 2024, 14-16 May 2024, Arau, Malaysia) is an upgraded edition of the National Symposium on Polymeric Materials (NSPM) and is a collaborative effort between The Plastics Rubber Institute Malaysia (PRIM) and various local universities. Universiti Malaysia Perlis was honoured to be the organiser for the year 2024. The conference proceedings contain findings in polymeric and biopolymeric materials, polymer composites, rubber technology, and related topics on chemical technologies and will be helpful to many researchers, practitioners, and postgraduate students.
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ISBN-13
978-3-0364-1599-4 (9783036415994)
DOI
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Schweitzer Klassifikation
Preface
Chapter 1: Bio-Based Materials
Characterisation of Irradiated Detergent Using Bovine Serum Albumin (BSA)
Environmental Impact Analysis of Kapok (Ceiba pentandra) Fiber-Based Oil Sorbent Technology: A Life Cycle Analysis
Evaluating the Characteristics and Performance of Pristine and Modified Kapok Fibers as Marine Oil Sorbents
Isolation of Microorganisms for Use in the Biodegradation of Oil Saturated Spent Kapok (Ceiba pentandra ( L.) Gaertn.) Fiber Based Sorbents
Effect of Orientation on Mechanical Properties of Ramie Reinforced ABS Solution Impregnation Composites Using Lay-Up Technique
Chapter 2: Polymer Waste and Bio-Based Waste Recycling
Comparative Study on the Effect of Different Rubber Waste as Filler on Recycled Polyvinylchloride Composites
Extraction and Characterisation of Chitin and Chitosan from Irish Brown Crab Shell Waste
Properties of Re-Vulcanized Waste EPDM/EPDM Rubber Blends with Different Ratios of ZDMA
Investigating the Influence of Varied Seaweed Filler Content on the Thermal and Tensile Properties of Poly(Butylene Adipate-Co-Terephthalate) Bio-Composite
Chapter 3: Advanced Polymers and Composites
Preparation of Electrochemically Active Composite Kapok Fiber Paper for Supercapacitors
3D Bioprinted Polylactic Acid/Pectin Scaffold for Tissue Regeneration Potential: The Study on Printability and Mechanical Properties
Effect of Hydrolysis Acid Concentration on Microcrystalline Cellulose Derived from Denim Fibers for UV-Shielding Applications