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Ultrasound for low temperature dyeing of wool with acid dye

机译:超声波,用酸性染料对羊毛进行低温染色

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The possibility of reducing the temperature of conventional wool dyeing with an acid levelling dye using ultrasound was studied in order to reach exhaustion values comparable to those obtained with the standard procedure at 98°C, obtaining dyed samples of good quality. The aim was to develop a laboratory method that could be transferred at industrial level, reducing both the energy consumption and fiber damage caused by the prolonged exposure to high temperature without the use of polluting auxiliary agents. Dyeings of wool fabrics were carried out in the temperature range between 60°C and 80°C using either mechanical or ultrasound agitation of the bath and coupling the two methods to compare the results. For each dyeing, the exhaustion curves of the dye bath were determined and the better results of dyeing kinetics were obtained with ultrasound coupled with mechanical stirring. Hence the corresponding half dyeing times, absorption rate constants according to Cegarra-Puente modified equation and ultrasonic efficiency were calculated in comparison with mechanical stirring alone. In the presence of ultrasound the absorption rate constants increased by at least 50%, at each temperature, confirming the synergic effect of sonication on the dyeing kinetics. Moreover the apparent activation energies were also evaluated and the positive effect of ultrasound was ascribed to the pre-exponential factor of the Arrhenius equation. It was also shown that the effect of ultrasound at 60°C was just on the dye bath, practically unaffecting the wool fiber surface, as confirmed by the results of SEM analysis. Finally, fastness tests to rubbing and domestic laundering yielded good values for samples dyed in ultrasound assisted process even at the lower temperature. These results suggest the possibility, thanks to the use of ultrasound, to obtain a well equalized dyeing on wool working yet at 60°C, a temperature process strongly lower than 98°C, currently used in industry, which damages the mechanical properties of the fibers.
机译:为了达到与在98°C下用标准程序获得的吸尽率相当的吸尽率值,研究了使用超声波降低使用酸均染染料对常规羊毛进行染色的温度的可能性,从而获得了高质量的染色样品。目的是开发一种可以在工业水平上转移的实验室方法,以减少能源消耗和因长时间暴露于高温而造成的纤维损坏,而无需使用污染助剂。羊毛织物的染色是在60°C至80°C的温度范围内,使用浴液的机械或超声搅拌,并结合两种方法进行比较。对于每种染色,确定了染浴的耗尽曲线,并且在超声与机械搅拌的结合下获得了更好的染色动力学结果。因此,与单独的机械搅拌相比,计算了相应的半染色时间,根据Cegarra-Puente修正方程式得出的吸收速率常数和超声效率。在超声的存在下,在每个温度下,吸收速率常数至少增加50%,这证实了超声对染色动力学的协同作用。此外,还评估了表观活化能,并将超声的积极作用归因于Arrhenius方程的指数前因子。还显示出,在60℃下超声波的作用仅在染浴上,实际上不影响羊毛纤维表面,这由SEM分析的结果证实。最后,即使在较低温度下,经超声波辅助处理染色的样品的耐摩擦性和家庭洗涤牢度测试也取得了良好的价值。这些结果表明,由于使用了超声波,因此有可能在仍在60°C的温度下工作的羊毛上获得均匀的染色,该温度过程大大低于目前工业上使用的98°C,这会损害羊毛的机械性能。纤维。

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