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The Effect of Enzymolysis on Performance of Soy Protein-Based Adhesive

机译:酶解对大豆蛋白粘合剂性能的影响

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摘要

In this study, bromelain was used to break soy protein molecules into polypeptide chains, and triglycidylamine (TGA) was added to develop a bio-adhesive. The viscosity, residual rate, functional groups, thermal behavior, and fracture surface of different adhesives were measured. A three-ply plywood was fabricated and evaluated. The results showed that using 0.1 wt% bromelain improved the soy protein isolate (SPI) content of the adhesive from 12 wt% to 18 wt%, with viscosity remaining constant, but reduced the residual rate by 9.6% and the wet shear strength of the resultant plywood by 69.8%. After the addition of 9 wt% TGA, the residual rate of the SPI/bromelain/TGA adhesive improved by 13.7%, and the wet shear strength of the resultant plywood increased by 681.3% relative to that of the SPI/bromelain adhesive. The wet shear strength was 30.2% higher than that of the SPI/TGA adhesive, which was attributed to the breakage of protein molecules into polypeptide chains. This occurrence led to (1) the formation of more interlocks with the wood surface during the curing process of the adhesive and (2) the exposure and reaction of more hydrophilic groups with TGA to produce a denser cross-linked network in the adhesive. This denser network exhibited enhanced thermal stability and created a ductile fracture surface after the enzymatic hydrolysis process.
机译:在该研究中,使用溴纤维素将大豆蛋白分子破坏多肽链,并加入三丙酰胺(TGA)以产生生物粘合剂。测量不同粘合剂的粘度,残余速率,官能团,热行为和断裂表面。制造和评估了三层胶合板。结果表明,使用0.1wt%溴纤维将粘合剂的大豆蛋白分离物(SPI)含量从12wt%到18wt%改善,粘度仍然恒定,但将残留速率降低9.6%,湿剪强度合金胶合板69.8%。在加入9wt%TGA后,SPI / Bromelain / TGA粘合剂的残余速率提高了13.7%,并且所得胶合板的湿剪切强度相对于SPI / Bromelain粘合剂的湿剪切强度增加了681.3%。湿剪切强度比SPI / TGA粘合剂高度为30.2%,归因于蛋白质分子的破裂成多肽链。这种情况导致(1)在粘合剂的固化过程中形成与木表面更多的互锁和(2)更亲水基团与TGA的暴露和反应在粘合剂中产生密集交联网络。该密度网络表现出增强的热稳定性,并在酶水解过程后产生延性裂缝表面。

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