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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >The effects of physical and chemical treatments on Na2S produced feather keratin films
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The effects of physical and chemical treatments on Na2S produced feather keratin films

机译:理化处理对Na2S产生的羽毛角蛋白膜的影响

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The industrial utilisation of feather keratin as a biopolymer has proven difficult due to the lack of a viable extraction technique and the poor mechanical properties of the regenerated products. Here, pure keratin films were produced from chicken feathers using sodium sulphide as sole extraction reagent in a scheme that allows films to be formed without residual chemicals. In a comparison to other films, those produced using Na2S extraction were found to be superior to other regenerated protein films and were similar to un-oriented commercial polymers. However, there was considerable variation in tensile properties between twenty repetitions of extracting and casting films which was attributed to variations in chain entanglement caused by the drying conditions. Chemical and physical treatments including crosslinking, dehydration and addition of nano-particles were investigated as means to enhance these properties. Significant increases were achieved by soaking films in isopropyl alcohol or weak acid (13 to 50% increases) or by formaldehyde or glutaraldehyde crosslinking (24 to 40% increases). The wide range of values across the pure keratin films indicates that the best route to further strength improvement may be from optimising self-assembly via controlling drying conditions, rather than from chemical treatment. Crown Copyright (C) 2014 Published by Elsevier B.V. All rights reserved.
机译:羽毛角蛋白作为生物聚合物的工业利用已被证明是困难的,因为缺乏可行的提取技术和再生产品的较差的机械性能。在这里,采用硫化钠作为唯一的提取试剂,从鸡毛中制备出纯净的角蛋白薄膜,其方案允许薄膜形成而无残留化学物质。与其他薄膜相比,发现使用Na2S萃取生产的薄膜优于其他再生的蛋白质薄膜,并且类似于未定向的商业聚合物。然而,由于干燥条件引起的链缠结的变化,在萃取膜和流延膜的二十次重复之间,拉伸性能存在相当大的变化。研究了包括交联,脱水和添加纳米粒子在内的化学和物理处理方法,以增强这些性能。通过将薄膜浸泡在异丙醇或弱酸中(增加13%至50%)或通过甲醛或戊二醛交联(增加24%至40%)来实现显着增加。纯角蛋白薄膜的取值范围很广,这表明进一步提高强度的最佳途径可能是通过控制干燥条件来优化自组装,而不是化学处理。官方版权(C)2014,Elsevier B.V.保留所有权利。

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