包括替代还原剂的有效还原清除参数

IF 0.1 Q4 ENGINEERING, CHEMICAL
M. Waqas, Syed Zameer Ul Hassan, S. Siddique, Ali Asghar, Anila Ali, Ali Raza Shafqat, Zafar Javed, Zohaib Iqbal, Mehwish Hafeez
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引用次数: 0

摘要

聚酯的染色是用分散染料进行的。一些分散染料在染色过程中仍然未固定,并在色度和色牢度方面产生问题。还原清除(RC)是一种去除这些未固定染料并提高色牢度的工艺。在巴基斯坦纺织工业中,使用连二亚硫酸钠(Na2S2O4)进行还原清理,这在还原染料方面效果最好。连二亚亚硫酸钠的问题是它对空气敏感,也会造成许多环境问题。其敏感性导致还原清除结果不一致。不同的染料采用不同的还原澄清工艺和配方。二氧化硫脲(TUD)是一种绿色还原剂,可替代连二亚硫酸钠。TUD(CH4N2S)是一种稳定的产物,其结果与连二亚硫酸钠相当。本项目采用互锁针织面料,其成分为再生聚酯。织物首先用黑色染料染色,然后在实验室规模上用不同的因素(遮光深度、TUD浓度、RC温度)进行还原澄清。分别根据标准号ISO 105-C06、ISO 105-E04和ISO 105-E01,进行了三次色牢度测试,以评估每个因素的不同水平,即耐洗涤色牢度、耐汗渍色牢度和耐水牢度。观察到遮荫深度不影响结果,而浓度和RC温度对结果有显著影响。此外,还测定了TUD的有效浓度。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effective reduction clearing parameters involving alternative reducing agent
Dyeing of polyester is done by using disperse dyes. Some of the disperse dyes remain unfixed during dyeing and create problems in shade and colorfastness properties. Reduction clearing (RC) is a process to remove these unfixed dyes and to enhance colorfastness properties. In the Pakistani textile industry, reduction clearing is being done by using sodium dithionite (Na2S2O4), which has the best results in reducing dyestuff.  The problem with sodium dithionite is that it is sensitive to air and also creates a lot of environmental issues. Its sensitivity causes inconsistent results of reduction clearing. Different dyers used different processes and recipes of reduction clearing. Thiourea Dioxide (TUD) is a green reducing agent and can be used as a replacement for sodium dithionite. TUD (CH4N2S) is a stable product with a comparable result with sodium dithionite. Interlock knitted fabric is used in this project whose composition has recycled polyester. The fabric was first dyed using black dyestuff and then reduction clearing was done on a lab-scale with different factors (Shade depth, the concentration of TUD, RC temperature). Three colorfastness tests were conducted to evaluate the different levels of each factor i.e. colorfastness to washing, fastness to perspiration, and fastness to water according to standard numbers ISO 105-C06, ISO 105-E04, and ISO 105-E01, respectively. It was observed that shade depth does not affect the results while concentration and RC temperature have a significant effect on the results. Moreover, the effective concentration of TUD was also determined.
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