首页> 外文期刊>Journal of Applied Polymer Science >Dyeing Transition Temperature of Wools Treated with Low Temperature Plasma,Liquid Ammonia,and High-Pressure Steam in Dyeing with Acid and Disperse Dyes
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Dyeing Transition Temperature of Wools Treated with Low Temperature Plasma,Liquid Ammonia,and High-Pressure Steam in Dyeing with Acid and Disperse Dyes

机译:酸性和分散染料染色中低温等离子体,液氨和高压蒸汽处理的羊毛的染色转变温度

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摘要

Wool fibers treated with oxygen low-temperature plasma, liquid ammonia (NH3), and high-pressw:e (HP) steam were dyed with two acid and three disperse dyes. Rate of dyeing, saturation dye uptake, and dyeing transition temperature were mea- sured. Rate of dyeing of the O2 plasma, NH3, and HP steam-treated wools increased with acid dyes, whereas it did not increase with disperse dyes. Although dyeing transition temperature for acid dyes was decreased by the plasma, NH3, and HP steam treatments, the temperature for disperse dyes was not changed by the treatments. Therefore, it seems that acid dyes penetrate by the intercellular diffusion through the interscale Cell Membrane Complex (CMC) ofwool, whereas disperse dyes pe~etrate by the intracellular diffusion through the intrascale cuticle surface independently with CMC relaxation by the treatments.
机译:用氧气低温等离子体,液氨(NH3)和高压(HP)蒸汽处理的羊毛纤维用两种酸和三种分散染料染色。测量染色速率,饱和染料吸收率和染色转变温度。 O2等离子体,NH3和HP蒸汽处理过的羊毛的染色速率随酸性染料而增加,而随分散染料则不增加。尽管通过等离子,NH3和HP蒸汽处理降低了酸性染料的染色转变温度,但分散染料的温度并未因处理而改变。因此,似乎酸性染料通过细胞间的扩散通过羊毛的鳞间细胞膜复合物(CMC)渗透,而分散染料通过细胞内的扩散通过鳞片内角质层表面渗透而与CMC松弛无关。

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