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Rheological Characterization of a Wood Adhesive Based on a Hydrolyzed Soy Protein Suspension

机译:基于水解大约蛋白悬浮液的木材粘合剂的流变学特征

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摘要

Soy protein (SP) is a promising raw material for the development of renewable and environmentally friendly adhesives. This work aims to study the effect of protein denaturation and/or hydrolysis on the rheology of a soy protein isolate (SPI) suspension. Four stages of chemical modification of SPI were evaluated: unmodified (U), denatured (D), partially hydrolyzed (PH) and fully hydrolyzed (H). Fourier-transform infrared spectroscopy (FTIR) and sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) confirmed that polypeptides with high molecular weight were fully fragmented into smaller ones. Rheological analysis showed that U behaves as a gel-like material while PH and H act as viscous-like materials. Hydrolysis caused a significant decrease in the viscosity, even for suspensions with high solid content. Furthermore, comparing U and H, the viscosity at high shear strength dropped 65% with an increase of 219% in the solid content. The shear strength of the adhesives can be increased through two strategies: crosslinking with epoxy resin and the addition of different reinforcements. Considering suspension H as reference, the addition of 20% epoxy resin and 5% montmorillonite clay caused an increase in the shear strength of almost 39%. These results could contribute to the development of high solid content SP-based adhesive with desirable rheological properties and zero formaldehyde emission.
机译:大豆蛋白(SP)是用于开发可再生和环保粘合剂的有希望的原料。这项工作旨在研究蛋白质变性和/或水解对大豆蛋白分离物(SPI)悬浮液的流变的影响。评估SPI的化学改性的四个阶段:未修饰(U),变性(D),部分水解(pH)并完全水解(H)。傅里叶变换红外光谱(FTIR)和十二烷基硫酸钠 - 聚丙烯酰胺凝胶电泳(SDS-PAGE)证实,具有高分子量的多肽完全分割成较小的多肽。流变分析表明,U表现为凝胶状材料,而pH和H充当粘性材料。即使对于具有高固体含量的悬浮液,水解导致粘度显着降低。此外,比较U和H,高剪切强度下的粘度下降65%,固体含量增加219%。粘合剂的剪切强度可以通过两种策略增加:用环氧树脂交联并添加不同的增强剂。考虑悬浮液H作为参考,加入20%环氧树脂和5%蒙脱石粘土,导致剪切强度的增加差约39%。这些结果可能有助于开发高固含量Sp基粘合剂,具有所需的流变性质和零甲醛排放。

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  • 来源
    《Journal of Polymers and the Environment》 |2020年第9期|2490-2497|共8页
  • 作者单位

    Inst Nacl Tecnol Ind Ave Gen Paz 5445 CP 1650 Edificio 10 San Martin Buenos Aires Argentina|Univ Nacl San Martin UNSAM 3IA Inst Invest & Ingn Ambiental Francia 34 San Martin Buenos Aires Argentina;

    Inst Nacl Tecnol Ind Ave Gen Paz 5445 CP 1650 Edificio 10 San Martin Buenos Aires Argentina|Univ Nacl San Martin UNSAM 3IA Inst Invest & Ingn Ambiental Francia 34 San Martin Buenos Aires Argentina;

    Inst Nacl Tecnol Ind Ave Gen Paz 5445 CP 1650 Edificio 10 San Martin Buenos Aires Argentina;

    Inst Nacl Tecnol Ind Ave Gen Paz 5445 CP 1650 Edificio 10 San Martin Buenos Aires Argentina;

    Inst Nacl Tecnol Ind Ave Gen Paz 5445 CP 1650 Edificio 10 San Martin Buenos Aires Argentina|Consejo Nacl Invest Cient & Tecn 2290 Godoy Cruz Buenos Aires DF Argentina|Univ Nacl Oeste Belgrano 369 Merlo Buenos Aires Argentina;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Adhesive; Soy protein; Wood; Rheology;

    机译:粘合剂;大豆蛋白;木;流变学;

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