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Interactions and Solubilization of Disperse Dye with Modified Gemini Surfactants: Investigation Using the Taguchi Method

机译:分散染料与改性双子表面活性剂的相互作用和增溶:使用田口方法的研究

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摘要

Since the interaction of a disperse dye with a surfactant in micelles plays an important role in textile industry, the purpose of this study was to find out the optimal conditions that describe the dye-surfactant interaction. The effects of temperature, gemini surfactant concentration and ethylene-oxide chain length of gemini surfactants were investigated and optimized using the Taguchi method. First, this method was adopted to carry out the parameter design, and the interaction parameters that would affect the absorbance of UV-visible spectrum were chosen as the control factors. After the selection of an appropriate orthogonal array, an analysis of variance was applied to decide upon the optimal conditions of solubilization parameters and determine the significant factors of the UV-visible absorbance. The optimized conditions were as follow: surfactant concentration 5.6 x 10~(-4) M, length of ethylene oxide chain 20, and temperature 40 °C. Finally, the experimental results of confirmation tests with a confidence interval of 95%, indicated that the experiment is reliable and reproducible. Under these optimum conditions, it was also determined that the solubilization of disperse dye using modified gemini surfactants increased when the surfactant concentration and the ethylene oxide chain length increased.
机译:由于胶束中分散染料与表面活性剂的相互作用在纺织工业中起着重要作用,因此本研究的目的是找出描述染料与表面活性剂相互作用的最佳条件。使用Taguchi方法研究并优化了温度,双子表面活性剂浓度和双子表面活性剂的环氧乙烷链长的影响。首先,采用该方法进行参数设计,选择影响紫外可见光谱吸光度的相互作用参数作为控制因素。选择合适的正交阵列后,应用方差分析来确定增溶参数的最佳条件,并确定紫外线可见吸收率的重要因素。优化条件为:表面活性剂浓度为5.6 x 10〜(-4)M,环氧乙烷链长为20,温度为40°C。最后,置信区间为95%的确认测试的实验结果表明该实验是可靠且可重复的。在这些最佳条件下,还确定了当表面活性剂浓度和环氧乙烷链长增加时,使用改性双子表面活性剂的分散染料增溶作用。

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