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The influence of enzymatic treatment on wool fibre properties using PEG-modified proteases

机译:使用PEG修饰的蛋白酶进行酶处理对羊毛纤维性能的影响

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摘要

The main contribution of the presented work was to introduce the use of proteases modified with the soluble polymer polyethylene glycol(PEG)in the bio-fmishing process of wool fibres,to target enzyme action to the outer parts of wool fibres,i.e.to avoid the diffusion and consequent destroying of the inner parts of the wool fibre structure,in the case of native proteases using.Different proteolytic enzymes from Bacillus lentus and Bacillus subtilis in native and PEG-modified forms were investigated and their influence on the modification of wool fibres morphology surface,chemical structure,as well as the hydrolysis of wool proteins,the physico-mechanical properties,and the sorption properties of 1:2 metal complex dye during dyeing were studied.SEM images of wool fibres confirmed smoother and cleaner fibre surfaces without fibre damages using PEG-modified proteases.Modified enzyme products have a benefit effect on the wool fibres felting behaviours(14%)in the case when PEG-modified B.lentus is used,without markedly fibre damage expressed by tensile strength and weight loss of the fibre.Meanwhile the dye exhaustion showed slower but comparable level of dye uptake at the end of the dyeing.
机译:这项工作的主要贡献是介绍了用可溶性聚合物聚乙二醇(PEG)修饰的蛋白酶在羊毛纤维的生物修饰过程中的用途,以将酶作用靶向到羊毛纤维的外部,即避免在使用天然蛋白酶的情况下,羊毛纤维结构的内部扩散和随后的破坏。研究了来自慢芽孢杆菌和枯草芽孢杆菌的天然和PEG修饰形式的不同蛋白水解酶及其对羊毛纤维形态改变的影响研究了羊毛蛋白的表面,化学结构以及羊毛蛋白的水解,理化性质和1:2金属络合物染料在染色过程中的吸附性能。当使用PEG修饰的B.len时,修饰的酶产物对羊毛纤维的毛毡行为具有有益作用(14%)使用tus时,纤维的拉伸强度和重量损失没有明显的纤维损伤。同时,染料耗尽在染色结束时显示出较慢但相当的染料吸收水平。

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