Company Filing History:
Years Active: 2018-2019
Title: Innovator Yun-Ya Huang: Pioneering Biomass-Based Polyurethanes
Introduction: Yun-Ya Huang is a prominent inventor based in Hsinchu, Taiwan, known for his innovative contributions to the field of sustainable materials. With a total of three patents to his name, Huang's work focuses on developing eco-friendly alternatives through the use of biomass materials.
Latest Patents: Among his latest inventions are two significant patents that showcase his dedication to sustainability. The first patent is for a biomass thermoplastic polyurethane, which is a reaction product of a unique composition. This composition comprises 1-50 parts by weight of modified lignin, 50-99 parts by weight of a first polyol, and 40-60 parts by weight of a diisocyanate. Notably, the modified lignin used in this formulation has an OH value of less than 3.0 mmol/g, ensuring a high-quality reaction product.
The second patent addresses both a bio-polyol composition and a bio-polyurethane foam. This innovative bio-polyol composition consists of polyol, a surface-modified lignin, and a surfactant as represented by a specific formula. These developments not only enhance the performance of polyurethane materials but also promote greener manufacturing practices.
Career Highlights: Yun-Ya Huang is currently associated with the Industrial Technology Research Institute, where he conducts valuable research to advance sustainable material technologies. His work is instrumental in bridging the gap between traditional manufacturing techniques and modern sustainable practices.
Collaborations: Huang frequently collaborates with his esteemed colleagues, including Wen-Pin Chuang and the talented Yi-Che Su. These partnerships foster a dynamic research environment that encourages the exchange of ideas and enhances innovation in their field.
Conclusion: Through his patents and collaborative efforts, Yun-Ya Huang continues to make significant strides in the development of biomass-based materials. His pioneering work not only contributes to advancements in polyurethane technology but also reinforces the importance of sustainability in modern manufacturing practices.