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Effects of thermal treatment on the properties of defatted soya bean flour and its adhesion to plywood

机译:热处理对脱脂大豆粉及其与胶合板粘合性能的影响

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摘要

With an attempt to economically and efficiently improve the water resistance of defatted soya bean flour (DSF)-based wood adhesives, DSF was subjected to thermal treatment at various temperatures (65°C, 80°C, 95°C, 110°C and 125°C) for 30 min. The effects of thermal treatment temperature onto the chemical structure, crystalline degree, water-insoluble content and acetaldehyde value of the thermally treated DSF (T-DSF) were investigated. The thermal stabilities and bonding properties of soya bean adhesives prepared from T-DSF and cross-linker epichlorohydrin-modified polyamide (EMPA) were also investigated. Test results indicated that both the water-insoluble content and the acetaldehyde value of T-DSF increased after thermal treatment, reaching the highest values of 27.28% and 26.81 mg g−1, respectively. All plywood bonded with the T-DSF-based adhesive withstood a 28 h boiling–dry–boiling accelerated ageing treatment, while plywood bonded with the DSF-based adhesive delaminated after 4 h of water boiling, demonstrating the significantly improved water resistance of the T-DSF-based adhesives. Related analyses also confirmed that this improvement was due to: (i) the formation of insoluble cross-linked structures of T-DSF resulting from protein–protein self-cross-linking reactions and the protein–carbohydrate Maillard reaction and (ii) increased cross-linking efficiency between T-DSF and cross-linker EMPA owing to more T-DSF-reactive groups being released after thermal treatment.
机译:为了经济有效地改善脱脂大豆粉(DSF)基木材粘合剂的耐水性,DSF在各种温度(65°C,80°C,95°C,110°C和125°C)30分钟。研究了热处理温度对热处理DSF(T-DSF)的化学结构,结晶度,水不溶物含量和乙醛值的影响。还研究了由T-DSF和交联剂环氧氯丙烷改性的聚酰胺(EMPA)制备的大豆胶的热稳定性和粘合性能。试验结果表明,热处理后T-DSF的水不溶物含量和乙醛值均增加,分别达到最高值27.28%和26.81mg g -1 。用T-DSF基胶粘剂粘合的所有胶合板都经受了28 h的沸腾-干-沸腾加速老化处理,而用DSF基胶粘剂粘合的胶合板在水沸腾4 h后分层。这表明T的耐水性显着提高。 -基于DSF的粘合剂。相关分析还证实,这种改善是由于:(i)蛋白质-蛋白质自交联反应和蛋白质-碳水化合物美拉德反应形成的T-DSF不溶性交联结构,以及(ii)交叉反应增加由于热处理后释放出更多的T-DSF反应性基团,因此T-DSF和交联剂EMPA之间具有更高的连接效率。

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