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Nano-scale blocking mechanism of MMT and its effects on the properties of polyisocyanate-modified soybean protein adhesive.

机译:MMT的纳米尺度阻断机理及其对多异氰酸酯改性大豆蛋白胶黏剂性能的影响。

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摘要

A novel soybean protein-based wood adhesive with improved water resistance was developed using thermal-caustic degraded soybean proteins with modifications by polyisocyanate and nano-scale montmorillonite (MMT). A gel permeation chromatography (GPC) analysis, X-ray diffraction (XRD) measurement, Fourier transform infrared spectroscopy (FTIR) analysis, traditional chemical analysis and plywood evaluation indicated that the thermal-caustic degradation process effectively reduced the viscosity of the high-concentration soybean protein solution due to the sharp decrease in the molecular weight of the soybean proteins. Crosslinking by polyisocyanate increased the molecular weight and produced soybean protein with a crosslinked structure, which improved the water resistance but clearly shortened the work life of the polyisocyanate-modified soybean protein adhesive. The addition of 3% MMT effectively prolonged the work life of the modified soybean protein adhesive and reduced the bond strength to some extent. A nano-scale blocking mechanism of MMT that retards the effects on some properties of soybean protein adhesive was presented because the exfoliated nano-scale MMT platelets not only reduced the number but also increased the steric hindrance of some active groups of soybean proteins via hydrogen and electrostatic bonds.
机译:使用热苛性降解大豆蛋白并经多异氰酸酯和纳米级蒙脱土(MMT)改性,开发了一种新型的基于大豆蛋白的木材粘合剂,具有改善的耐水性。凝胶渗透色谱(GPC)分析,X射线衍射(XRD)测量,傅立叶变换红外光谱(FTIR)分析,传统化学分析和胶合板评估表明,热碱降解过程有效降低了高浓度粘度大豆蛋白溶液由于大豆蛋白分子量的急剧下降。多异氰酸酯的交联增加了分子量,并产生了具有交联结构的大豆蛋白,从而改善了耐水性,但明显缩短了多异氰酸酯改性大豆蛋白胶粘剂的使用寿命。 3%MMT的添加有效地延长了改性大豆蛋白胶粘剂的使用寿命,并在一定程度上降低了粘结强度。提出了MMT的纳米级阻断机制,该机制阻止了大豆蛋白胶粘剂某些性能的影响,因为剥落的纳米级MMT血小板不仅减少了数量,而且还通过氢和氢键增加了大豆蛋白某些活性基团的空间位阻。静电键。

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