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Research Article

Broadening Color Shade Range of Rubia tinctorum L. Natural Colorants on Wool Fibers via Combination of Metal Mordants: Color Characteristics and Fastness Studies

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References

  • Bechtold, T., and R. Mussak, ed. 2009. Handbook of natural colorants, Vol. 8. Hoboken, New Jersy, USA: John Wiley & Sons.
  • Cristea, D., and G. Vilarem. 2006. Improving light fastness of natural dyes on cotton yarn. Dyes and Pigments 70 (3):238–17. doi:10.1016/j.dyepig.2005.03.006.
  • Fain, V. Y., B. E. Zaitsev, and M. A. Ryabov. 2004. Metal complexes with alizarin and alizarin red S: Electronic absorption spectra and structure of ligands. Russian Journal of Coordination Chemistry 30 (5):365–70. doi:10.1023/B:RUCO.0000026008.98495.51.
  • Feiz, M., and H. Norouzi. 2014. Dyeing studies of wool fibers with madder (Rubia tinctorum) and effect of different mordants and mordanting procedures on color characteristics of dyed samples. Fibers and Polymers 15 (12):2504–14. doi:10.1007/s12221-014-2504-x.
  • Gulrajani, M., R. Srivastava, and M. Goel. 2001. Colour gamut of natural dyes on cotton yarns. Coloration Technology 117 (4):225–28. doi:10.1111/j.1478-4408.2001.tb00066.x.
  • Haji, A., and M. İ. Bahtiyari. 2021. Natural compounds in sustainable dyeing and functional finishing of textiles. In Green chemistry for sustainable textiles, 191–203. Woodhead Publishing. doi:10.1016/B978-0-323-85204-3.00004-X.
  • Haji, A., and M. Rahimi. 2022. RSM optimization of wool dyeing with Berberis thunbergii DC leaves as a new source of natural dye. Journal of Natural Fibers 19 (8):2785–98. doi:10.1080/15440478.2020.1821293.
  • Hosseinnezhad, M., K. Gharanjig, R. Jafari, H. Imani, and N. Razani. 2021. Cleaner colorant extraction and environmentally wool dyeing using oak as eco-friendly mordant. Environmental Science and Pollution Research 28 (6):7249–60. doi:10.1007/s11356-020-11041-2.
  • Hosseinnezhad, M., K. Gharanjig, N. Razani, R. Jafari, and M. R. Saeb. 2022. Green miles in dyeing technology: Metal-rich pumpkin extracts in aid of natural dyes. Environmental Science and Pollution Research 29 (33):50608–16. doi:https://doi.org/10.1007/s11356-022-19389-3.
  • Islam, S. U., L. J. Rather, M. Shabbir, M. N. Bukhari, M. A. Khan, and F. Mohammad. 2018. First application of mix metallic salt mordant combinations to develop newer shades on wool with Bixa orellana natural dye using reflectance spectroscopy. Journal of Natural Fibers 15 (3):363–72. doi:10.1080/15440478.2017.1330717.
  • Islam, S. U., L. J. Rather, M. Shabbir, M. N. Bukhari, M. Shahid, M. A. Khan, and F. Mohammad. 2017. Bi and tri metal salt combinations plus colorants extracted from timber industry waste as effective dyeing materials to produce novel shades on wool. Journal of Natural Fibers 14 (4):586–96. doi:10.1080/15440478.2016.1240638.
  • Jahangiri, A., S. M. Ghoreishian, A. Akbari, M. Norouzi, M. Ghasemi, M. Ghoreishian, and E. Shafiabadi. 2018. Natural dyeing of wool by madder (rubia tinctorum l.) root extract using tannin-based biomordants: Colorimetric, fastness and tensile assay. Fibers and Polymers 19 (10):2139–48. doi:10.1007/s12221-018-8069-3.
  • Khan, M. A., S. U. Islam, and F. Mohammad. 2017. Investigating the combined effect of natural and metal salt mordants on coloring potential of indian rhubarb (Rheum emodi) natural dye. Journal of Natural Fibers 14 (2):196–204. doi:10.1080/15440478.2016.1193084.
  • Khan, S. A., S. U. Islam, M. Shahid, M. I. Khan, M. Yusuf, L. J. Rather, M. A. Khan, and F. Mohammad. 2015. Mixed metal mordant dyeing of wool using root extract of rheum emodi (indian rhubarb/dolu). Journal of Natural Fibers 12 (3):243–55. doi:10.1080/15440478.2014.919893.
  • Manian, A. P., R. Paul, and T. Bechtold. 2016. Metal mordanting in dyeing with natural colourants. Coloration Technology 132 (2):107–13. doi:10.1111/cote.12199.
  • Mehrparvar, L., S. Safapour, M. Sadeghi-Kiakhani, and K. Gharanjig. 2016. A cleaner and eco-benign process for wool dyeing with madder, Rubia tinctorum L., root natural dye. International Journal of Environmental Science and Technology 13 (11):2569–78. doi:10.1007/s13762-016-1060-x.
  • Rather, L. J., S. U. Islam, M. Shabbir, M. N. Bukhari, F. Mohammad, and M. A. Khan. 2018. Adhatoda vasica in conjunction with binary combinations of metal salts and biomordants as an effective textile dye to produce novel shades on wool. Journal of Natural Fibers 15 (4):611–23. doi:10.1080/15440478.2017.1349712.
  • Rather, L. J., M. Shabbir, F. Mohammad, and Q. Li. 2020a. Effect of binary and ternary combination of metal salt on colorimetric and fastness characteristics of Acacia Nilotica dyed woolen yarn. Journal of Natural Fibers 17 (8):1171–83. doi:10.1080/15440478.2018.1558150.
  • Rather, L. J., M. Shabbir, F. Mohammad, and Q. Li. 2020b. Terminalia arjuna dyed woolen yarn-effect of binary and ternary metal salt combinations: A greener route for production of ecofriendly textiles. Journal of Natural Fibers 17 (12):1693–705. doi:10.1080/15440478.2019.1588830.
  • Rather, L. J., Q. Zhou, A. Ali, Q. M. R. Haque, and Q. Li. 2021. Valorization of agro-industrial waste from peanuts for sustainable natural dye production: Focus on adsorption mechanisms, ultraviolet protection, and antimicrobial properties of dyed wool fabric. ACS Food Science & Technology 1 (3):427–42. doi:10.1021/acsfoodscitech.1c00005.
  • Sadeghi-Kiakhani, M., S. Safapour, and Y. Golpazir-Sorkheh. 2022. Sustainable antimicrobial and antioxidant finishing and natural dyeing properties of wool yarn treated with chitosan-poly (amidoamine) dendrimer hybrid as a biomordant. Journal of Natural Fibers 19 (15):9988–10000. doi:10.1080/15440478.2021.1993475.
  • Sadeghi-Kiakhani, M., S. Safapour, S. A. Habibzadeh, and A. R. Tehrani-Bagha. 2021a. Grafting of wool with alginate biopolymer/nano Ag as a clean antimicrobial and antioxidant agent: Characterization and natural dyeing studies. Journal of Polymers and the Environment 29 (8):2639–49. doi:10.1007/s10924-021-02046-0.
  • Sadeghi-Kiakhani, M., S. Safapour, and S. Mirnezhad. 2018. Thermodynamic and kinetic studies of the adsorption behaviour of the natural dye cochineal on polyamide 66. Coloration Technology 134 (4):308–14. doi:10.1111/cote.12342.
  • Sadeghi-Kiakhani, M., S. Safapour, F. Sabzi, and A. R. Tehrani-Bagha. 2020. Effect of ultra violet (UV) irradiation as an environmentally friendly pre-treatment on dyeing characteristic and colorimetric analysis of wool. Fibers and Polymers 21 (1):179–87. doi:10.1007/s12221-020-9154-y.
  • Sadeghi-Kiakhani, M., A. R. Tehrani-Bagha, S. Safapour, S. Eshaghloo-Galugahi, and S. M. Etezad. 2021b. Ultrasound-assisted extraction of natural dyes from Hawthorn fruits for dyeing polyamide fabric and study its fastness, antimicrobial, and antioxidant properties. Environment, Development and Sustainability 23 (6):9163–80. doi:10.1007/s10668-020-01017-0.
  • Safapour, S., M. Mazhar, M. Nikanfard, and F. Liaghat. 2022. Recent advancements on the functionalized cyclodextrin-based adsorbents for dye removal from aqueous solutions. International Journal of Environmental Science and Technology 19 (6):5753–90. doi:https://doi.org/10.1007/s13762-021-03671-x.
  • Safapour, S., and L. J. Rather. 2022. Assessment of colorimetric and fastness properties of Prangos ferulacea (Jashir) dyed wool yarns in conjunction with mixed metal mordant combinations via reflectance spectroscopy. Journal of Natural Fibers 1–13. in press. doi:10.1080/15440478.2022.2134267.
  • Safapour, S., M. Sadeghi-Kiakhani, and S. Eshaghloo-Galugahi. 2018. Extraction, dyeing, and antibacterial properties of crataegus elbursensis fruit natural dye on wool yarn. Fibers and Polymers 19 (7):1428–34. doi:10.1007/s12221-018-7643-z.
  • Shahparvari, M. R., M. Safi, S. Safapour, and K. Gharanjig. 2018. Compatibility of natural dyes on aluminum pre-mordanted woolen yarns by determination of diffusion coefficient. Fibers and Polymers 19 (8):1663–69. doi:10.1007/s12221-018-7777-z.
  • Zhang, Y., S. U. Islam, L. J. Rather, and Q. Li. 2022. Recent advances in the surface modification strategies to improve functional finishing of cotton with natural colourants-A review. Journal of Cleaner Production 335:130313. doi:10.1016/j.jclepro.2021.130313.
  • Zhou, Q., L. J. Rather, A. Ali, W. Wang, Y. Zhang, Q. M. R. Haque, and Q. Li. 2020. Environmental friendly bioactive finishing of wool textiles using the tannin-rich extracts of Chinese tallow (Sapium sebiferum L.) waste/fallen leaves. Dyes and Pigments 176:108230. doi:10.1016/j.dyepig.2020.108230.