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    • ISSN: 2010-0221 (Print)
    • Frequency: Bimonthly
    • DOI: 10.18178/IJCEA
    • Editor-in-Chief: Prof. Dr. Shen-Ming Chen
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Editor-in-chief
Prof. Dr. Shen-Ming Chen
National Taipei University of Technology, Taiwan
 

IJCEA 2019 Vol.10(2): 60-63 ISSN: 2010-0221
doi: 10.18178/ijcea.2019.10.2.741

The Effects of Cationization on Dyeing Properties of Cotton Fabric Dyed with Marigold and Rose

Matrikan Nutchawanit, Chutimon Satirapipathkul, and Rattanaphol Mongkholrattanasit
Abstract—A cationizing agent was used for increasing the color yield, in terms of the Kubelka–Munk values (color strength, K/S). Cotton fabrics were dyed using the extract of waste marigold and rose. This work was to study the optimum of time, temperature and concentration in cationizing process on dyed cotton. The K/S and color values (L*, a*, b*) were measured to discover the suitable condition from color value and color strength estimation, cotton fabric cationized with 10 g/L of cationizing-agent concentration for 30 minutes at the 50°C showed the highest K/S. In case of roses, the best condition is treated with cationizing-agent concentration of 15 g/L for 15 minutes at 50°C. The obtainable results revealed that the color strength of cationized cotton fabrics were increased when compared to K/S of untreated cotton up to 34.26% and 331.91% for marigold and rose dyes, respectively, and the obtainable color of cationized cotton fabrics were brighter as compared to the untreated cotton.

Index Terms—Cationization, cotton dyeing, marigold dye, rose dye.

M. Nutchawanit and C. Satirapipathkul are with Chulalongkorn University, Thailand (e-mail: matrikan.n@gmail.com, chutimon.s@chula.ac.th). Rattanaphol Mongkholrattanasit is with Rajamangala University of Technology Phra Nakhon, Thailand (e-mail: Rattanaphol.m@rmutp.ac.th).

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Cite: Matrikan Nutchawanit, Chutimon Satirapipathkul, and Rattanaphol Mongkholrattanasit, "The Effects of Cationization on Dyeing Properties of Cotton Fabric Dyed with Marigold and Rose," International Journal of Chemical Engineering and Applications vol. 10, no. 2, pp. 60-63, 2019.

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