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Influence of the structure of cotton fabrics of various weaves on sorption and fixation of reactive dyes in cold dyeing

Field of Science:Chemical EngineeringChemical Engineering (miscellaneous)
National field of science (HAC):02.00.06 — High-molecular compounds02.00.07 — Chemistry and technology of composite, paint-and-varnish and rubber materials02.00.08 — Chemistry and technology of oil and gas02.00.13 — Technology of inorganic substances and materials based on them02.00.14 — Technology of organic substances and materials based on them02.00.15 — Technology of silicate and refractory non-metallic materials02.00.16 — Processes and apparatuses of chemical technology and food production02.00.18 — Technology of processing and storage of fishery products04.00.14 — Mineral processing06.01.11 — Storage and processing of agricultural products02.00.05 — Chemistry and technology of cellulose and pulp-and-paper production02.00.17 — Technologies and biotechnologies for processing, storage and refining of agricultural and food products03.00.12 — Biotechnology
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ARTICLE ANNOTATION

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This study investigates the influence of the structural characteristics of bleached cotton fabrics with different weaves on the efficiency of semi-continuous cold dyeing with reactive dyes. Twill and satin weave fabrics with varying surface density, thread count, fill factor, and bulk porosity were used. The research confirmed that the structural parameters of cotton fabrics and the type of weave significantly affect the cold dyeing process. Satin weaves, having fewer binding points and higher porosity, provide better dye utilization and higher color strength. It was found that the dye Denovo Orange C2D has a higher fixation rate than Denovo Red Y2BL, indicating the importance of dye chemical nature along with fabric structure. The results can be applied to develop rational cold dyeing technological regimes and to design cotton fabrics with desired optical and operational properties.

AUTHORS

M.Ахмедова

TOSHKENT TO'QIMACHILIK VA YENGIL SANOAT INSTITUTI

Tags

# color intensity# cotton fabric# sorption# reactive dyes# weave# cold dyeing# fixation

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References

Nawab Y., Hamdani S. T. A., Shaker K. Structural Textile Design: Interlacing and Interlooping. — Boca Raton: CRC Press (Taylor & Francis Group), 2020. — 396 p.

Grosberg P. The Mechanical Properties of Woven Fabrics Part II: The Bending of Woven Fabrics. Text Res J. 1966; 36: 205-211.

Uzma Syed, Roger H Wardman. Assessment of uniformity of fibre coloration in Tencel woven fabrics dyed using reactive dyes. Review of Progress in Coloration and Related Topics 127(6) December 2011.

Backer, S., An engineering approach to textile structure. Structural mechanics of fibres, yarns, and fabrics, ed. J. Hearle, W, S, P. Grosberg, and S. Backer. Vol. 1. 1969, New York, London, Sydney, Toronto: Wiley-interscience. 238

D.B. Khudayberdieva, M.Sh.Akhmedova. Impact of the weave structure of cotton fabrics on the physical-mechanical and structural-sorption properties // International Conference on Physical Research & Engineering Technology Problems AIP Conf. Proc. 2025, 3304, 030052-1–030052-8.

М.З.Абдукаримова, А.Л.Хамроев, А.А.Миратаев. Толали материалларни пардозлаш кимёвий технологияси. “Мехнат”, 2014, -с. 95.

Khudaiberdieva Dilfuza, Akhmedova Mukaddam. Evaluation of the effect of weave structure on the dyeing of fabrics with reactive dyes. Journal of Multidisciplinary Sciences and Innovations. Volume 04, Issue 09. -p. 1713-1720.

Yuanzhao Zhu, Weitao Zhou, Pei Xiao, Yanan Zhao, Xinmei Guan, Zhenfang Chang, Zhengping Xia, Qing Wang. Process optimization for pre-treatment and dyeing one bath of viscose fabric with enzyme in cold pad-batch. Journal of The Textile Institute, 2018.

R.M. Christie (Ed.), Environmental Aspects of Textile Dyeing, Woodhead publisher, UK, 2007.

J. Shore (Ed.), Cellulosic Dyeing, The Society of Dyers and Colourists, UK, 1995.

Khatri, Zeeshan Memon, M.Brohi, Khan. (2012). Cold Pad Batch Dyeing: Eco-friendly Dye Application on Cotton. 10.1007/978-3-7091-0109-4_29. 8. J. Su, Leonhardt, Melliand International 12 (3) (2006) 233–235.

Zeeshan Khatri, Muhammad Hanif Memon, Awais Khatri, Anwaruddin Tanwari. Cold Pad-Batch dyeing method for cotton fabric dyeing with reactive dyes using ultrasonic energy // Ultrasonics Sonochemistry Volume 18, Issue 6, November 2011, Pages 1301-1307

F. Schlaeppi. Optimizing Textile Wet Processes to Reduce Environmental Impact // Textile Chemist and Colorist 30(4) (1998) 19-26

A.Giehl, K. Schafer, H.Hocker, Ultrasonic in wool dyeing-ready for practical application, International Textile Bulletin (1998) 90–95.

E.Oner, I.Baser, K.Acar, Use of ultrasonic energy in reactive dyeing of cellulose fabrics, Journal of the Society of Dyers and Colourists, 111(1995) 279–281.

Бузов Б.А., Алыменкова Н.Д., Петропавловский Д.Г. и др. Лабораторный практикум по материаловедению швейного производства. – М.: Легпромбытиздат, 1991. -с. 90-98.

M.Z.Abdukarimova, I.A.Nabiyeva, G.X.Ismoilova. To‘qimachilik mahsulotlarini kimyoviy pardozlash texnologiyasi fanidan laboratoriya va amaliy mashg‘ulotlar uchun o‘quv qo‘llanma. TTYSI, 2015, 81-b.

Kannan MSS, Gobalakrishnan M, Kumaravel S, Nithyanadan R, Rajashankar KJ, Vadicherala T. (2006) Influence of cationization of cotton on reactive dyeing. J Text Appar Technol Manag 5:1–16