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Shrinkage Properties of Wool Treated with Low Temperature Plasma and Chitosan Biopolymer

机译:低温等离子体和壳聚糖生物聚合物处理羊毛的收缩性能

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摘要

Low temperature plasma treatments of wool modify only the cuticle surface of the fibers, improving their surface wettability, dyeability, fiber cohesion, and shrink resistance. The shrink-resist properties obtained with plasma treatment do not impart a machine-washable finish, which is an important end-user demand. However, the shrink resistance of air plasma treated wool is suitably enhanced by a subsequent biopolymer chitosan application. Using a qualitative colorimetric method, chitosan adsorption is shown to increse after treatment with air plasma. SEM observation yield information about the etching effect and chirosan adsorption. Given that both kinds of treatments, air plasma and chitosan, are environmentally acceptable, a new ecological shrink-proofing process is proposed.
机译:羊毛的低温等离子处理仅会改变纤维的表皮表面,从而改善其表面润湿性,染色性,纤维内聚力和抗收缩性。通过等离子处理获得的抗收缩性能不会赋予可机洗的外观,这是最终用户的重要需求。然而,通过随后的生物聚合物壳聚糖的施用,适当地增强了空气等离子体处理的羊毛的抗收缩性。使用定性比色法显示,在用空气等离子处理后,壳聚糖的吸附增加。 SEM观察得出有关刻蚀效果和氯尿烷吸附的信息。鉴于空气等离子体和壳聚糖这两种处理方法在环境上都是可接受的,因此提出了一种新的生态防缩方法。

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