Ghahri Saman, Pizzi Antonio, Hajihassani Reza
Wood and Forest Products Research Division, Research Institute of Forests and Rangelands, Agricultural Research, Education and Extension Organization (AREEO), Tehran 19395-1113, Iran.
LERMAB, Faculte des Sciences, University of Lorraine, Blvd. des Aiguillettes, 54000 Nancy, France.
Polymers (Basel). 2022 Mar 13;14(6):1150. doi: 10.3390/polym14061150.
This is a study of concept on the initial application for wood adhesives totally biosourced from the covalent reaction between soy protein isolate (SPI) and a commercial flavonoid tannin, namely quebracho tannin. The adhesive is composed exclusively of the two vegetable biomaterials mentioned and thus is totally biosourced and non-toxic, as tannin has been classified as being not at all toxic by the European Commission REACH program. The pre-reaction between the two yielded the best plywood bonding results when limited to a temperature of 40 °C, final cross-linking being achieved during the plywood higher temperature hot pressing procedure, as for any other thermosetting adhesive. Pre-reaction at higher temperatures, namely 60 °C and 80 °C, achieved extensive premature cross-linking that lost any activity to cross-link further when hot pressed for preparing plywood. The reaction was followed by thermomechanical analysis, by matrix assisted laser desorption ionization time of flight (MALDI ToF) mass spectrometry, and by plywood shear strength tested dry, after a 24 h cold water soak and 1 h in boiling water. The adhesive of this approach lends itself to be further reinforced by the multitude of approaches on soy resins already developed by several other research groups.
这是一项关于大豆分离蛋白(SPI)与一种商业黄酮类单宁(即坚木单宁)之间共价反应完全生物源化的木材胶粘剂初步应用概念的研究。该胶粘剂仅由上述两种植物生物材料组成,因此完全是生物源的且无毒,因为单宁已被欧盟委员会的REACH计划归类为完全无毒。当限于40°C的温度时,两者之间的预反应产生了最佳的胶合板粘结效果,最终交联是在胶合板高温热压过程中实现的,这与任何其他热固性胶粘剂一样。在较高温度(即60°C和80°C)下的预反应导致大量过早交联,在热压制备胶合板时失去了进一步交联的任何活性。通过热机械分析、基质辅助激光解吸电离飞行时间(MALDI ToF)质谱以及在24小时冷水浸泡和1小时沸水浸泡后测试的胶合板干剪切强度来跟踪反应。这种方法的胶粘剂可通过其他几个研究小组已经开发的多种大豆树脂方法进一步增强。