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Thermodynamics and kinetics of cashmere dyeing with metal complex dye

机译:金属复合染料羊绒染色的热力学和动力学

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The optimal condition, kinetics and thermodynamics of adsorption of the metal complex dye onto cashmere fibre have been studied in order to evaluate the improvement of cashmere qualities under industrial dyeing conditions with metal complex dye. The optimal conditions for dyeing cashmere fibre are obtained at 85 degrees C temperature, 2-13% initial dye concentration, 3.5 pH and 50 min treatment time. By reducing the temperature and operating time, qualities of cashmere fibre such as luxury and softness improve, and damage to fibres decreases significantly. As a consequence, opportunities for enhancement of cashmere product quality and industrial efficiency due to mild industrial conditions and lower energy needs are attained. The adsorption kinetics of metal complex dye onto cashmere fibre follow a pseudo-second-order kinetic model with an activation energy of 77.33 kJ.mol(-1). The Langmuir isotherm is found the best model for dyeing adsorption onto cashmere fibre. On the basis of thermodynamics, kinetics and diffusion models, both adsorption and diffusion are involved in the process of dyeing cashmere, and an electrostatic attraction between dyeing molecules and cashmere fibre occurs.
机译:研究了金属复合物染料对羊绒纤维的最佳状态,动力学和热力学,以评估工业染色条件下的羊绒素质的改善与金属复合染料。染色羊绒纤维的最佳条件是在85℃的温度下获得2-13%初始染料浓度,3.5 pH和50分钟的处理时间。通过减少温度和工作时间,羊绒纤维的品质如奢侈品和柔软性改善,纤维损坏显着显着降低。因此,达到了加强羊绒产品质量和工业效率导致的工业条件和降低能源需求的机会。金属络合物染料对羊绒纤维的吸附动力学遵循伪二阶动力学模型,其活化能量为77.33kJ.mol(-1)。 Langmuir等温线被发现是染色吸附到羊绒纤维上的最佳模型。在热力学,动力学和扩散模型的基础上,吸附和扩散都涉及染色羊绒的过程,以及染色分子和羊绒纤维之间的静电吸引力。

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