Hongshan Li, Yang Bai, Yingzhang Liu, Yanqun Huang, Xin Duan, Yihong Gao, P. Wang, Rong Liu, Guanben Du, Long Yang
Aiming at the low strength and poor water resistance of traditional biomass adhesives and the environmental risks of petroleum-based adhesives, this study developed a formaldehyde-free silk fibroin/gelatin (SF/GEL) biomass wood adhesive based on the synergistic effect of β-sheet structure and interfacial Schiff base reaction. Aldehyde groups were introduced on wood surfaces via “NaOH pretreatment-NaIO 4 oxidation” modification. The β-sheet structure of silk fibroin enhanced the cohesion of the adhesive layer, while gelatin enhanced wettability. Under hot-pressing, aldehyde groups reacted with amino groups to form Schiff base covalent bonds, which combined with mechanical interlocking to realize interface strengthening. Under the optimal process (SF/GEL = 1:1, hot-pressing at 140 °C for 6 min), the dry strength of eucalyptus plywood reached 3.75 ± 0.25 MPa, and remained 2.95 ± 0.37 MPa after cyclic aging (soaking the specimens in boiling water for 4 h, followed by drying for 20 h, repeating this cycle twice; then testing the bonding strength after soaking the specimens in cold water for 1 h), exceeding the bonding strength requirement of 0.7 MPa specified in the GB/T 17657-2022 national standard. The dry strength of poplar plywood was 2.75 ± 0.30 MPa, and remained 1.98 ± 0.28 MPa after cyclic aging, also exceeding the 0.7 MPa bonding strength requirement of the GB/T 17657-2022 national standard. With renewable raw materials and environmentally friendly process, this adhesive provides a green and high-performance solution for the wood processing industry.