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Abstract
Water-resistant bonds are important in many wood products and have been hard to obtain with many bio-based adhesives. Using a three-step process, water-soluble soy flour has been converted into adhesives that cure into an insoluble material for water-durable adhesives. The process consists of denaturation of soy flour, followed by modification with formaldehyde and then conversion via co-polymerization with a suitable cross-linking agent into an insoluble material. Both formaldehyde and phenol-formaldehyde are used across-linking agents. The extent of conversion into the cross-linked copolymer was assessed with a 24-h water extraction procedure and via elemental analysis. Soy-based resins with 44–86% conversion of soluble soy flour have been successfully prepared with up to complete conversion of the protein component. These resins were also used to prepare strandboards of comparable performance to a control commercial phenol-formaldehyde resin. A direct relationship between the percentage of soy flour incorporated and the final board performance was obtained.
Keywords
Soy,
soybeans,
phenol,
formaldehyde,
wood adhesive,
durable adhesive,
phenolic resins,
adhesives,
water repellents,
soybean glue,
soy flour,
phenolic resin glue,
bonding
Citation
Wescott, J.M.; Frihart, C.R.; Traska, A.E. 2006. High-soy-containing water-durable adhesives. Journal of adhesion science and technology. Vol. 20, no. 8 (2006): pages 859-873.