Li Hanyin, Wang Sen, Zhang Xiang, Wu Hao, Wang Yujie, Zhou Na, Zhao Zijie, Wang Chao, Zhang Xiaofan, Wang Xian, Li Cheng
College of Forestry, Henan Agricultural University, Zhengzhou 450002, China.
College of Landscape Architecture and Art, Henan Agricultural University, Zhengzhou 450002, China.
Polymers (Basel). 2023 Jul 7;15(13):2975. doi: 10.3390/polym15132975.
To develop a lower-cost, excellent-performance, and environmentally friendly phenol-formaldehyde (PF) resin, soybean meal was used to modify PF resin, and soybean meal-phenol-formaldehyde (SMPF) resins were prepared. This reveals the effect of soybean meal on the structural, bonding, and curing properties of PF resin, which are very important for its applications in the wood industry. The resins' physicochemical properties and curing performance were investigated, showing that SMPF resins have higher curing temperatures than PF resin. The Fourier transform infrared spectroscopy results indicated that a cross-linking reaction occurred between the amino groups of soybean protein and the hydroxymethyl phenol. Moreover, with the addition of soybean meal, the viscosity of SMPF increased while the gel time decreased. It is worth mentioning that SMPF-2 resin has favorable viscosity, short gel time, low curing temperature (135.78 °C), and high water resistance and bonding strength (1.01 MPa). Finally, all the plywoods bonded with SMPF resins have good water resistance and bonding strength, which could meet the standard (GB/T 17657-2013, type I) for plywood. The optimized SMPF resins showed the potential for application to partially replace PF resin in the wood industry.
为了开发一种低成本、高性能且环保的酚醛(PF)树脂,采用豆粕对PF树脂进行改性,制备了豆粕-酚醛(SMPF)树脂。这揭示了豆粕对PF树脂的结构、粘结和固化性能的影响,这些性能对其在木材工业中的应用非常重要。对树脂的物理化学性质和固化性能进行了研究,结果表明SMPF树脂的固化温度高于PF树脂。傅里叶变换红外光谱结果表明,大豆蛋白的氨基与羟甲基苯酚之间发生了交联反应。此外,随着豆粕的添加,SMPF的粘度增加而凝胶时间缩短。值得一提的是,SMPF-2树脂具有良好的粘度、较短的凝胶时间、较低的固化温度(135.78℃)以及较高的耐水性和粘结强度(1.01MPa)。最后,所有用SMPF树脂粘结的胶合板都具有良好的耐水性和粘结强度,能够满足胶合板标准(GB/T 17657-2013,I型)。优化后的SMPF树脂显示出在木材工业中部分替代PF树脂的应用潜力。