Zhang Binghan, Wang Jinguo, Zhang Fengrong, Wu Lishun, Guo Baicheng, Gao Zhenhua, Zhang Leipeng
Department of Chemistry and Chemical Engineering, Heze University, Heze, Shandong 274015, China.
Heze Forestry Administration, Heze, Shandong 274015, China.
ACS Omega. 2022 Jun 24;7(27):23138-23146. doi: 10.1021/acsomega.2c00833. eCollection 2022 Jul 12.
A soybean protein-based adhesive with desired adhesion properties and low processing cost is prepared by a simple and practical method, which is of great significance to the sustainable utilization of resources and human health. Nevertheless, the protein of high-temperature soybean meal (HSM) has a high degree of denaturation and low solubility, endowing the resultant soybean-based adhesive with a high viscosity and unstable bonding performance. Herein, we propose the strategy of protein molecular recombination to improve the bonding properties of the adhesive. First, chemical denaturation was carried out under the combined action of sodium sulfite, sodium dodecyl sulfate, sodium hydroxide, urea, or sodium dodecyl sulfate/sodium hydroxide to reshape the structure of the protein to release active groups. Then, thermal treatment was employed to facilitate the protein repolymerization and protein-carbohydrate Maillard reaction. Meanwhile, the epichlorohydrin-modified polyamide (PAE) as a crosslinking agent was introduced to recombine unfolded protein and the products from Maillard reaction to develop an eco-friendly soy protein-based adhesive with an excellent and stable bonding performance. As expected, the highest cycle wet bond strength of the adhesive sample of 1.20 MPa was attained by adding a combination of 2% SDS and 0.5% sodium hydroxide, exceeding the value required for structural use (0.98 MPa) of 22.44% according to the JIS K6806-2003 commercial standard. Moreover, the adhesive possessed the preferable viscosity and viscosity stability accompanied by good wettability. Noteworthily, the adhesive had a short time of dry glue, which could be solved by combining it with soybean meal (SM) at the ratio of 30:10.
一种具有所需粘附性能且加工成本低的大豆蛋白基胶粘剂,通过一种简单实用的方法制备而成,这对资源的可持续利用和人类健康具有重要意义。然而,高温豆粕(HSM)中的蛋白质变性程度高、溶解度低,使得所得大豆基胶粘剂具有高粘度和不稳定的粘结性能。在此,我们提出蛋白质分子重组策略来改善胶粘剂的粘结性能。首先,在亚硫酸钠、十二烷基硫酸钠、氢氧化钠、尿素或十二烷基硫酸钠/氢氧化钠的共同作用下进行化学变性,以重塑蛋白质结构,释放活性基团。然后,采用热处理促进蛋白质再聚合和蛋白质 - 碳水化合物美拉德反应。同时,引入环氧氯丙烷改性聚酰胺(PAE)作为交联剂,使展开的蛋白质与美拉德反应产物重组,从而开发出一种具有优异且稳定粘结性能的环保大豆蛋白基胶粘剂。正如预期的那样,通过添加2% SDS和0.5%氢氧化钠的组合,胶粘剂样品获得了最高的循环湿粘结强度,为1.20 MPa,根据JIS K6806 - 2003商业标准,超过了结构使用所需的值(0.98 MPa)的22.44%。此外,该胶粘剂具有较好的粘度和粘度稳定性,同时具有良好的润湿性。值得注意的是,该胶粘剂的干胶时间短,通过将其与豆粕(SM)按30:10的比例混合可以解决这一问题。