Investigation into the color stripping of the pigment printed cotton fabric using the ozone assisted process: A study on the decolorization and characterization

Author:

Powar Ajinkya1234ORCID,Perwuelz Anne12,Behary Nemeshwaree12,vinh Hoang Le5,Aussenac Thierry5,Loghin Carmen3,Sergiu Maier Stelian3,Guan Jinping4,Chen Guoqiang4

Affiliation:

1. Ecole Nationale Supérieure des Arts et Industries Textiles (ENSAIT), GEMTEX Laboratory, Roubaix, France

2. University de Lille, Nord de France, Lille, France

3. Faculty of Industrial Design and Business Management, Gheorghe Asachi Technical University of Iasi, Iasi, Romania

4. College of Textile and Clothing Engineering, Soochow University, Suzhou, China

5. Institut Polytechnique UniLaSalle, Université d’Artois, URL 7519, Beauvais, France

Abstract

Color stripping is one of the most convenient ways to rectify the various shade faults occurred during printing or dyeing process of textiles. But, the conventional chemical assisted process poses serious risk of the environmental pollution. Secondly, the chemical recycling of the cellulosic fibers may be disrupted due to the presence of the impurities like colorants, finishes, and the additives in the discarded textiles. So, there is a need to study ways to remove such impurities from the discarded cellulosic textiles in a sustainable manner. This work examines the decolorization of the pigment prints on cellulosic fabrics at pilot scale using an ozone-assisted process. The effect of varying pH, ozone concentration and the treatment time on the decolorization of the pigment prints was optimized using the response surface methodology technique. The effects of ozonation process parameters on the mechanical properties of cellulosic cotton fabric were measured. Decolorization of pigment printed samples was studied with respect to the surface effects by a scanning electron microscopy (SEM), and the chemical removal effects of ozonation treatment were studied using X-ray photoelectron spectroscopy. The possible mechanism regarding the action of ozone for the decolorization is discussed.

Funder

Erasmus Mundus join Doctorate Programm about Sustainable Management and Design for Textiles by European Commission

Publisher

SAGE Publications

Subject

General Materials Science

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