[Book] Environmental Compatibility and Recycling Technology of Container Packaging Materials (No. 2182)
2182 Container packaging materials
【Available for preview】★ How can we achieve gas barrier properties, heat sealability, and physical strength equivalent to conventional materials?
★ Development of Marine Biodegradable Plastics! Achieving both 'Physical Properties During Use' and 'Biodegradation After Use'! --------------------- ■ Key Points of This Document ◆ Organization of Various Regulations, Standards, and Certifications ◆ - Understanding the Plastic Resource Circulation Strategy - Mechanisms and Challenges of Mass Balance and Segregation - Evaluation of Environmentally Friendly Materials from the Perspective of LCA ◆ Establishment of Various Recycling Technologies ◆ - Chemical recycling conducted under mild conditions - Development of decomposition catalysts for polyolefins - Improvement of physically degraded recycled plastics - Prevention of contamination and yellowing - Balancing physical properties and recyclability ◆ Case Studies of Environmentally Friendly Material Development ◆ - Realization of mono-materialization → Improvement of barrier properties and optimization of material properties - Development of biodegradable/marine biodegradable plastics → Decomposition control using switch functions and decomposition accelerators - Adoption of biomass plastics → Measures for heat resistance, water resistance, moldability, odor, etc. - Expectations for paper-based materials → Manifestation of functions such as barrier properties and heat sealability
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■ Table of Contents Chapter 1: Market and Technological Trends in Container and Packaging Materials, Regulatory Compliance Chapter 2: Resource Circulation through Recycling Technology and Its Application to Container and Packaging Materials Chapter 3: Development of Monomaterial Packaging Materials and Case Studies of Their Adoption Chapter 4: Design and Development of Marine-Degradable/Biodegradable Plastics, Degradation Control, and Applications in Container Packaging Chapter 5: Synthesis and Development of Biomass-Based Packaging Materials and Improvement of Physical Properties, along with Case Studies of Their Adoption Chapter 6: Practical Application of Paper-Based Container Packaging and the Manifestation of Functions such as Barrier Properties and Heat Sealability --------------------- ● Publication Date: December 27, 2022 ● Format: A4, 548 pages ● Authors: 84 individuals ● ISBN: 978-4-86104-914-9 ---------------------
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