High-performance and high-functionality technologies for bioplastic "polylactic acid" and future challenges.
S10217
★The Path and Challenges of High-Performance Functionalization of Polylactic Acid for General-Purpose Plastics ★Can Stereocomplex-Type Polylactic Acid Truly Become a Savior?
【Speaker】Masatsugu Mochizuki, Specially Appointed Professor, Center for Fiber Science, Kyoto Institute of Technology (Former: Unitika) 【Target Audience】Departments related to bioplastics 【Venue】Kyoto Research Park, 4th Floor, Conference Room A [Kyoto, Tambaguchi] Approximately a 5-minute walk from JR Tambaguchi Station 【Date and Time】February 21, 2011 (Monday) 13:00-16:00
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[Lecture Summary] In light of the current global environmental and resource issues, this presentation will provide a thorough and clear explanation of why polylactic acid is gaining attention, as well as the current status and applications of its high-performance and advanced functionalization technologies, in a way that everyone can understand.
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New members who apply for the first time by February 10 will receive an early bird discount price of 43,050 yen.
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P2
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P2
Applications/Examples of results
1. Paradigm Shift in Polymer Chemistry Industry and Polymer Materials Science (1) Issues with Polymer Raw Materials Derived from Fossil Resources (Petroleum) ① Trends in Oil Production and Future Predictions 2. Bioplastics Contributing to Environmental Load Reduction (1) What are Bioplastics? - What is the Difference Between Green Plastics and Biomass Plastics? ① Definition and Identification Labeling System by the Japan Bioplastics Association 3. Classification and Characteristics of Biodegradable Plastics (1) Classification by Raw Material Source and Manufacturing Process 4. The Path to General-purpose Plastics through High Performance and Functionality of Polylactic Acid (1) Why is Polylactic Acid the Best Choice? - Why is it possible to expand into both bio-recyclable materials and durable structural materials? 5. Remaining Technical Challenges of Polylactic Acid and Their Solutions (1) Remaining Technical Challenges - Shortening the Molding Cycle and Improving Thermal and Mechanical Properties ① Improvement of Heat Resistance (Iron Resistance, Hot Rigidity, Load Deflection Temperature) ② Improvement of Dimensional Stability (Low Thermal Shrinkage Rate, Creep Resistance) ③ Improvement of Gas Barrier Properties 【Q&A and Business Card Exchange】
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