首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Investigation of the Polyamide 6,6 dyeing process with Acid Blue 45 dye. Part I. Thermodynamics of Acid Blue 45 adsorption
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Investigation of the Polyamide 6,6 dyeing process with Acid Blue 45 dye. Part I. Thermodynamics of Acid Blue 45 adsorption

机译:用酸性蓝45染料研究聚酰胺6,6的染色过程。第一部分。酸性蓝45吸附的热力学

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Among the many synthetic fibres, polyamides are one of the most important. Improvement in the adsorption/adsorption strength of a dye to and inside the yarns is therefore very important for their practical applications. In this study, the kinetics and thermodynamics of the sorption process of Acid Blue 45 on Polyamide 6,6 (Nylon 6,6) were investigated. The sorption was conducted at 293, 303, and 313 (+-) 0.1 K for 48 h from 10~(-5)-10~(-4) M solutions in the presence of 10~(-3) M NaCl. From the kinetic experiments is was found that this time was sufficient to attain the adsorption equilibrium. The first stage of the sorption (up to 160 min) can be well described by a first-order kinetic equation by its numerical fitting to the experimental results. It is a spontaneous process in which the rate of sorption and the sorbed amount increase with increasing temperature. However, it is a relatively slow endothermic process (positive enthalpy of sorption); thus, it must be entropy-driven to produce a negative free energy of sorption. From the sorption isotherms and calculated thermodynamic functions it can be concluded that at higher temperatures (303-313 K), more polar groups of Polyamide 6,6 are accessible for the dye molecules, which may be due to a glass transition. Data on the zeta potential changes and surface free energy components of Polyamide 6,6 will be presented in Part II of this study, which may help in a better understanding of the sorption process.
机译:在许多合成纤维中,聚酰胺是最重要的纤维之一。因此,对于其实际应用而言,提高染料在纱线内部和内部的吸附/吸附强度非常重要。在这项研究中,研究了酸性蓝45在聚酰胺6,6(尼龙6,6)上的吸附过程的动力学和热力学。在10〜(-3)M NaCl存在下,从10〜(-5)-10〜(-4)M溶液在293、303和313(±)0.1 K下进行48 h吸附。从动力学实验中发现,该时间足以达到吸附平衡。吸附的第一阶段(长达160分钟)可以通过一阶动力学方程通过数值拟合实验结果很好地描述。这是一个自发过程,其中吸附速率和吸附量随温度升高而增加。但是,这是一个相对缓慢的吸热过程(吸附的正焓)。因此,必须由熵驱动才能产生负的吸附自由能。从吸附等温线和计算出的热力学函数可以得出结论,在较高的温度(303-313 K)下,染料分子可以接近聚酰胺6,6的更多极性基团,这可能是由于玻璃化转变造成的。聚酰胺6,6的Zeta电位变化和表面自由能组分的数据将在本研究的第二部分中提供,这可能有助于更好地理解吸附过程。

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