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Research Article

A Comparative Study on Sustainable Dyeing of Silk and Wool with Acid Red 138 Dye

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References

  • Adeel, S., F. Rehman, M. Pervaiz, M. Hussaan, N. Amin, A. Majeed, and H. Rehman. 2021. Microwave Assisted Green Isolation of Laccaic Acid from Lac Insect (Kerria lacca) for Wool Dyeing. Progress in Color, Colorants and Coatings 14 (4):293–2969. doi:10.30509/PCCC.2021.166734.1090.
  • Adeel, S., M. Saeed, A. Abdullah, F. Rehman, M. Salman, M. Kamran, M. Iqbal, and M. Iqbal. 2018. Microwave assisted modulation of vat dyeing of cellulosic fiber: Improvement in color characteristics. Journal of Natural Fibers 15 (4):517–26. doi:10.1080/15440478.2017.1349018.
  • Adeel, S., M. Usman, W. Haider, M. Saeed, M. Muneer, and M. Ali. 2015. Dyeing of gamma irradiated cotton using Direct Yellow 12 and Direct Yellow 27: Improvement in colour strength and fastness properties. Cellulose 22 (3):2095–105. doi:10.1007/s10570-015-0596-0.
  • Adeel, S., S. Kiran, T. Gulzar, F. Rehman, M. Azeem, Z. Ahmad, Z. Iqbal, M. Kamran, and Z. Iqbal. 2017. Influence of ultrasonic radiation on the dyeing of cotton fabric using Reactive Yellow 145 dye. Journal of Natural Fibers 14 (5):658–65. doi:10.1080/15440478.2016.1266292.
  • Al-Sharairi, N., I. C. A. Sandu, V. Vasilache, and I. Sandu. 2020. Recognition of natural silk fibers, dyes and metal threads of historical Romanian textile fragments using the multi-analytical techniques approach. Textile Research Journal 90 (15–16):1671–88. doi:10.1177/0040517519898827.
  • Bait, S., S. Shinde, R. Adivarekar, and N. Sekar. 2020. Multifunctional properties of benzophenone based acid dyes: Synthesis, spectral properties and computational study. Dyes and Pigments 180 (108420):1 doi:10.1016/j.dyepig.2020.108420.
  • Bakan, E., F. Karcı, and O. Avinc. 2018. Synthetic Fiber Dyeing with New Pyrazole Disperse Dyes and Their Colorimetric and Fastness Properties. Fibers and Polymers 19 (3):670–81. doi:10.1007/s12221-018-7227-y.
  • Cai, J., H. Jiang, W. Chen, and Z. Cui. 2020. Design, synthesis, characterization of water-soluble indophenine dyes and their application for dyeing of wool, silk and nylon fabrics. Dyes and Pigments 179:108385. doi:10.1016/j.dyepig.2020.108385.
  • Dodangeh, M., K. Gharanjig, and M. Hosseinnezhad. 2018. The synthesis of poly (amidoamine) dendrimer: Dyeing and fluorescence properties. Progress in Color, Colorants and Coatings 11 (3):173–78.
  • El-Khaled, D., N. Novas, J. A. Gazquez, and F. Manzano-Agugliaro. 2018. Microwave dielectric heating: Applications on metals processing. Renewable and Sustainable Energy Reviews 82:2880–92. doi:10.1016/j.rser.2017.10.043.
  • Elshemy, N., and K. Haggag. 2019. New Trend in Textile Coloration Using Microwave irradiation. Journal of Textiles, Coloration and Polymer Science 16 (1):33–48. doi:10.21608/JTCPS.2019.9928.1019.
  • Gaffer, H., H. Mashaly, S. H. Abdel-Rhman, and M. Hammouda. 2017. Synthesis of novel dyes based on curcumin for the creation of antibacterial silk fabrics. Pigment & Resin Technology 46 (6):478–84. doi:10.1108/PRT-11-2016-0112.
  • Ghasemi, M., S. Mashhadi, M. Asif, I. Tyagi, S. Agarwal, and V. K. Gupta. 2016. Microwave-assisted synthesis of tetraethylenepentamine functionalized activated carbon with high adsorption capacity for Malachite green dye. Journal of Molecular Liquids 213:317–25. doi:10.1016/j.molliq.2015.09.048.
  • Haji, A., and M. Naebe. 2020. Cleaner dyeing of textiles using plasma treatment and natural dyes: A review. Journal of Cleaner Production 265:1–13. doi:10.1016/j.jclepro.2020.121866.
  • Hamley, I. W. 2020. Introduction to Peptide Science. John Wiley & SonsUnited States, 1-240.
  • Irfan, M., H. Zhang, U. Syed, and A. Hou. 2018. Low liquor dyeing of cotton fabric with reactive dye by an eco-friendly technique. Journal of Cleaner Production 197:1480–87. doi:10.1016/j.jclepro.2018.06.300.
  • Islam, S., and F. Mohammad. 2015. High-energy radiation induced sustainable coloration and functional finishing of textile materials. Industrial & Engineering Chemistry Research 54 (15):3727–45. doi:10.1021/acs.iecr.5b00524.
  • Ketema, A., and A. Worku. 2020. “Review on Intermolecular Forces between Dyes Used for Polyester Dyeing and Polyester Fiber.” Journal of Chemistry Article ID 6628404, 1–7 doi:10.1155/2020/6628404
  • Kiran, S., S. Nosheen, S. Abrar, S. Javed, N. Aslam, G. Afzal, and F. Ijaz. 2019b. Remediation of Textile Effluents via Physical and Chemical Methods for a Safe Environment. In Textiles and Clothing, ed.M. Shabbir, 191–234. USA , Scrivener Publishing LLC. doi:10.1002/9781119526599.ch8.
  • Kiran, S., S. Adeel, F. U. Rehman, T. Gulzar, M. Jannat, and M. Zuber. 2019a. Ecofriendly dyeing of microwave treated cotton fabric using reactive violet H3R. Global Nest Journal 21 (1):43–47. doi:10.30955/gnj.002523.
  • Mohamed, F. A., A. El-Megied, A. Saadia, and R. Mohareb. 2020. Synthesis and application of novel reactive dyes based on Dimedone moiety. Egyptian Journal of Chemistry 63 (11):4–6. doi:10.21608/ejchem.2020.24092.2437.
  • Preetha, B. K., and B. Vishalakshi. 2020. Microwave assisted synthesis of karaya gum based montmorillonite nanocomposite: Characterization, swelling and dye adsorption studies. International Journal of Biological Macromolecules 154:739–50. doi:10.1016/j.ijbiomac.2020.03.107.
  • Ramalingam, S., K. J. Sreeram, J. R. Rao, and B. U. Nair. 2016. Organic nanocolorants: Self-fixed, optothermal resistive, silica-supported dyes for sustainable dyeing of leather. ACS Sustainable Chemistry & Engineering 4 (5):2706–14. doi:10.1021/acssuschemeng.6b00218.
  • Rastogi, S., ., and B. Kandasubramanian. 2020. Progressive trends in heavy metal ions and dyes adsorption using silk fibroin composites. Environmental Science and Pollution Research 27 (1):210–37. doi:10.1007/s11356-019-07280-7.
  • Rehman, F. U., S. Adeel, M. Akmal, K. Majeed, S. Z. Iqbal, and N. Amin. 2020. Eco-friendly dyeing of cellulosic fabric using Direct Red 28 and Direct Blue 15 dyes. Global Nest Journal 22 (2):173–78. doi:10.30955/gnj.003176.
  • Sadeghi-Kiakhani, M., and S. Safapour. 2018. Salt-free dyeing of cotton fabric modified with prepared chitosan-poly propylene imine dendrimer using direct dyes. Progress in Color, Colorants and Coatings 11 (1):21–32. doi:10.30509/PCCC.2018.75734.
  • Shahid, M., Y. Zhou, R. C. Tang, G. Chen, and W. A. Wani. 2017. Colourful and antioxidant silk with chlorogenic acid: Process development and optimization by central composite design. Dyes and Pigments 138:30–38. doi:10.1016/j.dyepig.2016.11.012.
  • Shahidi, S., J. Wiener, and M. Ghoranneviss. 2013. Surface modification methods for improving the dyeability of textile fabrics. Eco-Friendly Textile Dyeing and Finishing 34–50. doi:10.5772/53911.
  • Syrine, L., M. Jabli, S. B. Abdessalem, and S. G. Almalki. 2020. FT-IR spectroscopy and morphological study of functionalized cellulosic fibers: Evaluation of their dyeing properties using biological Pistacia vera hulls by-product extract. International Journal of Biological Macromolecules 145:1106–14. doi:10.1016/j.ijbiomac.2019.09.204.
  • Usman, M., S. Adeel, W. Haider, A. Ghaffar, F. Rehman, and M. Ali. 2016. Dyeing of biotreated and gamma irradiated cotton fabric using direct yellow 12 and direct yellow 27. Journal of Natural Fibers 13 (4):483–91. doi:10.1080/15440478.2015.1066289.
  • Xue, Z. 2016. Study of dyeing properties of wool fabrics treated with microwave. The Journal of the Textile Institute 107 (2):258–63. doi:10.1080/00405000.2015.1024974.

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