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Recycling keratin polypeptides for anti-felting treatment of wool based on L-cysteine pretreatment

机译:基于L-半胱氨酸预处理的回收角蛋白多肽,用于羊毛的抗毡化处理

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An anti-felting finishing process based on recycling waste wool material was proposed. Wool fabric was pretreated with L-cysteine and then treated with the keratin polypeptides, extracted by protease from the waste wool. And then, wool fabric was treated with glycerol diglycidyl ether as cross-linking agent for a durable anti-felting effect. The padded-out keratin polypeptides solution was collected, replenished with a small amount of fresh keratin polypeptides and recycled for 10 times. An excellent anti-felting performance was still achieved when wool fabric was treated with the 10th-recycled keratin poly peptides. The protein concentration of 10th-recycled keratin polypeptides was almost unchanged, but the weight-average molecular weight decreased. There was no significant difference on the modified surfaces between the wool fabrics treated with recycled keratin polypeptides and those with the fresh ones. Compared with the control, there was an improvement in whiteness, softness, dyeability, hydrophilicity and an acceptable loss in weight (about 1%) and in strength (about 6.1% in warp direction) after fixation of the extracted keratin polypeptides onto the fabrics. The modification mechanism was confirmed by scanning electron microscopy, Raman spectra and X-ray photoelectron spectroscopy analysis of treated wool fabric that L-cysteine can erode the fiber surface, generating more reactive groups, and then keratin polypeptides can easily cross-linked onto the fiber surface by glycerol diglycidyl ether or covered the fiber surface. (C) 2018 Elsevier Ltd. All rights reserved.
机译:提出了一种基于羊毛废料回收的防毡整理工艺。羊毛织物用L-半胱氨酸预处理,然后用角蛋白多肽处理,然后通过蛋白酶从废羊毛中提取。然后,用甘油二缩水甘油醚作为交联剂对羊毛织物进行处理,以实现持久的防结毛效果。收集填充的角蛋白多肽溶液,补充少量新鲜的角蛋白多肽,并循环10次。当羊毛织物用第十次回收的角蛋白多肽处理后,仍具有出色的防缩性能。第10次回收的角蛋白多肽的蛋白质浓度几乎没有变化,但重均分子量降低了。在用回收的角蛋白多肽处理的羊毛织物和用新鲜的角蛋白多肽处理的羊毛织物之间,改性表面没有显着差异。与对照相比,在将提取的角蛋白多肽固定在织物上之后,白度,柔软度,可染性,亲水性和重量(约1%)和强度(经向约6.1%)的可接受的损失有所改善。经处理的羊毛织物的扫描电子显微镜,拉曼光谱和X射线光电子能谱分析证实了修饰机理,即L-半胱氨酸可侵蚀纤维表面,产生更多的反应基团,然后角蛋白多肽可轻松交联到纤维上表面被甘油二缩水甘油醚或纤维表面覆盖。 (C)2018 Elsevier Ltd.保留所有权利。

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