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首页> 外文期刊>Journal of Applied Polymer Science >Wheat gluten fractions as wood adhesives-glutenins versus gliadins
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Wheat gluten fractions as wood adhesives-glutenins versus gliadins

机译:小麦面筋级分作为木材粘合剂-面筋和麦胶

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摘要

Plant proteins, such as wheat gluten, constitute attractive raw materials for sustainable wood adhesives. In this study, alkaline water dispersions of the protein classes of wheat gluten, glutenin, and gliadin were used as adhesives to bond together wood substrates of beech. The aim of the study is to measure the tensile shear strength of the wood substrates to compare the adhesive performance of glutenin and gliadin and to investigate the influence of application method and penetration of the dispersions into the wood material. A sodium hydroxide solution (0.1M) was used as dispersing and denaturing agent. Dispersions with different protein concentrations and viscosities were used, employing wheat gluten dispersions as references. Two different application methods, a press temperature of 110°C and a press time of 15 min, were employed. The tensile shear strength and water resistance of the wood substrates were compared, using a slightly modified version of the European Standard EN 204. The bond lines of the substrates were examined by optical microscopy to study the penetration and bond-line thickness. The results reveal that the adhesive properties of gliadin are inferior to that of both glutenin and wheat gluten, especially in terms of water resistance. However, the tensile shear strength and the water resistance of gliadin are significantly improved when over-penetration of the protein into the wood material is avoided, rendering the adhesive performance of gliadin equal to that of glutenin and wheat gluten.
机译:诸如小麦面筋之类的植物蛋白构成了可持续木材胶粘剂的诱人原料。在这项研究中,小麦面筋,谷蛋白和麦醇溶蛋白的蛋白质类别的碱性水分散体被用作粘合剂,将山毛榉的木材基质粘合在一起。该研究的目的是测量木材基材的拉伸剪切强度,以比较谷蛋白和麦醇溶蛋白的粘合性能,并研究施涂方法和分散液渗透到木材中的影响。使用氢氧化钠溶液(0.1M)作为分散和变性剂。使用不同蛋白浓度和粘度的分散液,以小麦面筋分散液为参考。采用两种不同的施加方法,压制温度为110°C,压制时间为15分钟。使用欧洲标准EN 204的略微修改版本,比较了木质基材的拉伸剪切强度和耐水性。通过光学显微镜检查了基材的粘合线,以研究渗透力和粘合线的厚度。结果表明,麦醇溶蛋白的粘合性能低于面筋和小麦面筋,特别是在耐水性方面。然而,当避免蛋白质过度渗透到木材中时,麦醇溶蛋白的拉伸剪切强度和耐水性得到显着改善,从而使麦醇溶蛋白的粘合性能与谷蛋白和小麦面筋的粘合性能相同。

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