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Fabrication and Design of Wood-Based High-Performance Composites
Published on: November 9, 2019
Synthesis and Characterization of Soy Hull Biochar-Based Flexible Polyurethane Foam Composites
Kavya Ganesan1, Bethany Guin1, Elijah Wilbanks1
1Department of Food, Nutrition, and Packaging Science, Clemson University, Clemson, SC 29634, USA.
Abstract:
Flexible polyurethane foams are a diverse class of materials encompassing furniture, packaging, automotive, and many other industrial and domestic applications. Polyurethane foams are synthesized by the addition of polyols and isocyanates; however, the petroleum origin and toxic nature of isocyanates have driven many to look for more sustainable routes to production. Renewable fillers have emerged as a biobased resource to decrease the carbon footprint of this widely used polymeric material. In this study, soy hulls, as mass-produced, industrial by-products of soybean production, were used to create a biochar beneficial in the synthesis of flexible polyurethane foam composites. The addition of soy hull biochar was found to maintain the compression properties of foams at a decreasing isocyanate index, reducing the amount of isocyanates needed for production. In addition, the addition of biochar decreased the flammability of foams, important for many applications where consumer safety is important. The results point to the ability to create safer, more sustainable, and even more cost-effective polyurethane foams through the reduction in isocyanate use while maintaining the properties of this important class of polymers.

