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Studies on the use of power ultrasound in leather dyeing

机译:功率超声在皮革染色中的应用研究

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摘要

Uses of power ultrasound for acceleration/performing the chemical as well as physical processes are gaining importance. In conventional leather processing, the. diffusion of chemicals through the pores of the skin/hide is achieved by the mechanical agitation caused by the paddle or drumming action. In this work, the use of power ultrasound in the dyeing of leather has been studied with the aim to improve the exhaustion of dye for a given processing time, to reduce the dyeing time and to improve the quality of dyed leather. The effect of power ultrasound in the dyeing of full chrome cow crust leather in a stationary condition is compared with dyeing in the absence of ultrasound as a control experiment both in a stationary as well as conventional drumming condition. An ultrasonic cleaner (150 W and 33 kHz) was used for the experiments. Actual power dissipated into the system was calculated from the calorimetric measurement. Experiments were carried out with variation in type of dye, amount of dye offer, temperature and time. The results show that there is a significant improvement in the percentage exhaustion of dye due to the presence of ultrasound, when compared to dyeing in absence of ultrasound. Experiments on equilibrium dye uptake carried out with or without ultrasound suggest that ultrasound help to improve the kinetics of leather dyeing. The results indicate that leathers dyed in presence of ultrasound have higher colour values, better dye penetration and fastness properties compared to control leathers. The physical testing results show that strength properties of the dyed leathers are not affected due to the application of ultrasound under the given process conditions. Apparent diffusion coefficient during the initial stage of dyeing process, both in presence and in absence of ultrasound was calculated. The values show that ultrasound helps in improving the apparent diffusion coefficient more for the difficult dyeing conditions such as in the case of metal-complex dyes having bigger aggregate size compared to less difficult dyeing conditions. (C) 2002 Elsevier Science B.V. All rights reserved. [References: 41]
机译:使用功率超声来加速/执行化学过程以及物理过程变得越来越重要。在常规皮革加工中,。化学物质通过皮肤/皮革的毛孔扩散是通过桨或击鼓动作引起的机械搅动来实现的。在这项工作中,已经研究了在皮革染色中使用功率超声的目的,目的是在给定的处理时间内改善染料的消耗,减少染色时间并提高染色皮革的质量。将功率超声在固定条件下对全铬牛皮的染色与在固定条件下以及常规转鼓条件下不进行超声染色作为对照实验的染色效果进行了比较。超声清洁器(150 W和33 kHz)用于实验。根据比色法测量,计算出消耗到系统中的实际功率。在改变染料类型,染料供应量,温度和时间的情况下进行实验。结果表明,与不存在超声的染色相比,由于存在超声,染料的耗竭百分比有显着改善。在有或没有超声波的情况下进行的平衡染料吸收实验表明,超声波有助于改善皮革染色的动力学。结果表明,与对照皮革相比,在超声条件下染色的皮革具有更高的色值,更好的染料渗透性和坚牢度。物理测试结果表明,在给定的工艺条件下,由于施加超声波,染色皮革的强度特性不会受到影响。计算在存在和不存在超声的情况下,染色过程初始阶段的表观扩散系数。该值表明,对于较难染色的条件,例如与较难染色的条件相比,在具有较大聚集体尺寸的金属络合物染料的情况下,超声有助于更大程度地改善表观扩散系数。 (C)2002 Elsevier Science B.V.保留所有权利。 [参考:41]

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