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Study of C.I. Reactive Yellow 145, C.I. Reactive Red 238, and C.I. Reactive Blue 235 dyestuffs in order to use them in color formulation. Part 1: characterization and compatibility
Authors:Sabrine Chaouch  Imed Ben Marzoug  Neji Ladhari
Affiliation:1. Textile Engineering Laboratory (LGTex), University of Monastir, Monastir, Tunisia;2. National Engineering School of Monastir (ENIM), University of Monastir, Monastir, Tunisia;3. Higher Institute of Technological Studies (ISET) of Ksar-Hellal, Ksar-Hellal, Tunisia;4. Higher Institute of Fashion Crafts of Monastir (IS3M), University of Monastir, Monastir, Tunisia
Abstract:Generally, textile dyeing is based on a mixture of several dyestuffs used in different proportions to achieve the desired-colors. The dyes used in a mixture should react with the fiber similarly; thus they must be compatible among themselves. So, to realize mixtures it is indispensable to study the compatibility of dyes, in order to ensure optimal dyeing formulation. This paper describes the characterization and studies the compatibility of three cold bifunctionnal reactive dyes (C.I. Reactive Yellow 145, C.I. Reactive Red 238, and C.I. Reactive Blue 235) in order to explore the possibility to use them in mixtures. The dye compatibility was studied based on several criteria such as dye extinction coefficients, exhaustion and fixation yield rates, adsorption kinetics, and adsorption isotherms. The exhaustion and fixation yield rates of all three dyes was compared between them and their adsorption kinetics and adsorption isotherms models were drawn and discussed. Between the different studied models, the Elovich model presents the best model describing the kinetics of different dyes, and Freundlich model presents the best model for analyzing the adsorption isotherms. The obtained results show that the analyzed dyes are perfectly compatible and have the same dyeing properties. They present close extinction coefficients as well as similar exhaustion and fixation yield rates.
Keywords:Color formulation  dyeing  reactive dyes  exhaustion and fixation yields  adsorption kinetics and isotherms
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