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Power Ultrasound-Assisted Cleaner Leather Dyeing Technique: Influence of Process Parameters

机译:功率超声辅助清洁皮革染色技术:工艺参数的影响

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The application of power ultrasound to leather processing has a significant role in the concept of "clean technology" for leather production. The effect of power ultrasound in leatherdyeing has been compared with dyeing in the absence of ultrasound and conventional drumming. The power ultrasound source used in these experiments was ultrasonic cleaner (150 W and 33 kHz). The effect of various process parameters such as amount of dye offer, temperature, and type of dye has been experimentally found out. The effect of presonication of dye solution as well as leather has been studied. Experiments at ultrasonic bath temperature were carried out to find out the combined thermal as well as stirring effects of ultrasound. Dyeing in the presence of ultrasound affords about 37.5 (1.8 times) difference as increase in % dye exhaustion or about 50% decrease in the time required for dyeing compared to dyeing in the absence of ultrasound for 4% acid red dye. About 29 (1.55 times) increase in % dye exhaustion or 30% reduction in time required for dyeing was observed using ultrasound at stationary condition compared with conventional dynamic drumming conditions. The effect of ultrasound at constant temperature conditions with a control experiment has also been studied. The dye exhaustion increases as the temperature increases (30-60℃) and better results are observed at higher temperature due to the use of ultrasound. Presonication of dye solution or crust leather prior to the dyeing process has no significant improvement in dye exhaustion, suggesting ultrasound effect is realized when it is applied during the dyeing process. The results indicate that 1697 and 1416 ppm of dye can be reduced in the spent liquor due to the use of ultrasound for acid red (for 100 min) and acid black (for 3 h) dyes, respectively, thereby reducing the pollution load in the effluent stream. The color yield of the leather as inferred from the reflectance measurement indicates that dye offer can be halved when ultrasound is employed to promote dyeing. Scanning electron microscopy analysis of the cross section of the dyed leather indicates that fiber structure is not affected due to the use of ultrasound underthe given process conditions. The present study clearly demonstrates that ultrasound can be used as a tool to improve the rate of exhaustion of dye, reduce pollution load in the spent effluent liquor, and improve the quality of leather produced. The study also offered provision to employ optimum levels of chemicals and increases percentage exhaustion for a given time, thereby limiting the pollution load in the tannery effluent, which is of great social concern.
机译:功率超声在皮革加工中的应用在皮革生产的“清洁技术”概念中具有重要作用。功率超声在皮革染色中的作用已与没有超声和常规鼓处理的染色进行了比较。这些实验中使用的功率超声源是超声清洁器(150 W和33 kHz)。已经通过实验发现了各种工艺参数的影响,例如染料供应量,温度和染料类型。已经研究了染料溶液和皮革的预超声处理效果。在超声浴温度下进行了实验,以发现超声的综合热效应和搅拌效应。与不使用超声对4%酸性红色染料进行染色相比,在存在超声的情况下进行染色可产生约37.5(1.8倍)的差异,这是因为染料消耗率的增加或染色所需时间的减少约50%。与传统的动态鼓打条件相比,使用超声波在静止条件下观察到的染料消耗率提高了约29(1.55倍)或染色所需时间减少了30%。还通过控制实验研究了超声波在恒温条件下的影响。随着温度的升高(30-60℃),染料的消耗增加,并且由于使用超声波,在较高的温度下观察到更好的结果。在染色过程之前对染料溶液或结皮皮革进行预超声处理对染料消耗没有明显的改善,这表明在染色过程中使用超声波可以实现超声效果。结果表明,通过分别对酸性红(持续100分钟)和酸性黑(持续3小时)使用超声波,可以减少废液中1697和1416 ppm的染料,从而减少了废液中的污染负荷。废水。由反射率测量推断出的皮革的颜色产量表明,当采用超声波促进染色时,染料的供应量可以减半。染色皮革横截面的扫描电子显微镜分析表明,在给定的工艺条件下,由于使用超声波,纤维结构没有受到影响。本研究清楚地表明,超声可以用作提高染料耗竭率,减少废废液中污染负荷并提高皮革质量的工具。该研究还提供了在给定时间内采用最佳化学物质水平并增加排气百分比的措施,从而限制了制革厂废水中的污染负荷,这引起了社会的极大关注。

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