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Development of soybeans starch based tough, water resistant and mildew-proof adhesives through multiple cross linking cooperation strategy

机译:通过多交叉联系合作策略开发大豆淀粉的坚韧,防水和霉菌粘合剂

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摘要

The exploitation of the environment-friendly and renewable biomass adhesive is a promising alternative compared to petroleum-based ones in the wood industry. In this study, soybean flour (SF) was chosen as a renewable starting material for the preparation of the biomass adhesive. The soy protein structure was unfolded by the calcium hydroxide and multiple reactive groups (-COOH, -NH2, -OH, -SH) of the protein chain were exposed. Inspired by the marine mussel protein, tannic acid (TA) with many poly-catechol/pyrogallol groups was capable of interacting with protein molecules under the alkaline conditions and the strong metal coordination between Ca2+ and TA enable to reinforce the network structure of adhesive. Furthermore, the incorporation of 1,6-Hexanediol diglycidyl ether (HDE) into the pristine protein adhesive had reacted with protein molecules via chemical covalent bonds to form the stable and toughness cross-linking network. The as-obtained adhesive showed improved bonding strength and comparable water resistance. Notably, the enhanced adhesive showed an outstanding wet shear strength of 1.12 MPa, meeting China's interior furnishing requirements (= 0.7 MPa). Additionally, in contrast to unmodified adhesive, the mildew resistance of the cooperation modified adhesive was improved and the storage life extended. This research provides a novel and green way to develop a formaldehyde-free adhesive for the wood industry.
机译:与木材工业中的石油基础相比,对环境友好和可再生的生物质粘合剂的开发是一个有前途的替代方案。在该研究中,选择大豆面粉(SF)作为用于制备生物质粘合剂的可再生原料。通过氢氧化钙和多种反应性基团(-COOH,-NH2,-OH,-SH)展开大豆蛋白质结构暴露。由海洋贻贝蛋白质的启发,具有许多多种多蛋白/吡糖醇基团的单宁酸(TA)能够在碱性条件下与蛋白质分子相互作用,并且Ca2 +和Ta之间的强金属配位能够加强粘合剂的网络结构。此外,将1,6-己二醇二缩水甘油醚(HDE)掺入原始蛋白粘合剂中,通过化学共价键与蛋白质分子反应,形成稳定和韧性交联网络。所获得的粘合剂显示出改善的粘合强度和可比的耐水性。值得注意的是,增强的粘合剂显示出优异的湿剪力强度为1.12MPa,满足中国内部家具要求(& = 0.7 MPa)。另外,与未修饰的粘合剂相反,改善了配合改性粘合剂的霉菌抗性,延长了储存寿命。本研究提供了一种新颖而绿色的方式,可以为木材工业开发一种无甲醛粘合剂。

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