رنگرزی پارچه مخلوط پنبه/ پلی‌استر با رنگزای طبیعی رازیانه و تأثیر عملیات‌های پیش‌تکمیل فرابنفش و پلاسمای دمای پایین

نوع مقاله : مقاله پژوهشی

نویسندگان

دانشکده مهندسی نساجی، دانشگاه یزد، یزد، ایران. کد پستی: 8915818411

10.30509/jcst.2025.167411.1244

چکیده

در این کار تحقیقاتی از رازیانه به عنوان رنگزای طبیعی برای رنگرزی پارچه مخلوط پنبه/ پلی‌استر به منظور افزایش حفاظت در برابر پرتو فرابنفش و فعالیت ضدباکتری و خواص آنتی‌اکسیدانی استفاده شد. از طرف دیگر به منظور افزایش تمایل رنگزا به لیف، از پیش‌تکمیل‌های پلاسمای دمای پایین و پرتو فرابنفش استفاده شد. برای این منظور، پارچه خام و پیش‌تکمیل­شده  مخلوط پنبه/ پلی‌استر توسط عصاره اتانولی برگ رازیانه توسط روش رمق‌کشی رنگرزی شدند. قدرت رنگی، انواع ثبات‌های رنگی، محافظت در برابر پرتو فرابنفش، فعالیت ضدمیکروبی، خواص آنتی‌اکسیدانی، میزان آ‌ب‌دوستی، خواص فیزیک و مکانیکی نمونه‌های رنگرزی­شده مورد ارزیابی قرار گرفت. پارچه پیش‌تکمیل‌شده رنگرزی‌شده با عصاره رازیانه، با حداقل تأثیر بر استحکام کششی، افزایش چشمگیری در محافظت در برابر پرتو فرابنفش نشان داد. 

کلیدواژه‌ها

موضوعات


عنوان مقاله [English]

Dyeing of woven cotton-polyester blend fabric using fennel (Foeniculum vulgare) as a Natural Dye and Effects of UV and Low-Temperature Plasma Pre-treatments

نویسندگان [English]

  • Abolfazl Zare Mehrjardi
  • Maedeh Davari Moghaddam
Department of Textile Engineering, Yazd University, P.O. Code: 8915818411, Yazd, Iran
چکیده [English]

This research used fennel as a natural dye for dyeing the cotton-polyester blend fabric to increase UV protection and antibacterial and antioxidant activity. On the other hand, low-temperature plasma and UV pre-treatments were used to increase the affinity of the dye to the fabric. For this purpose, the raw and pretreated cotton-polyester blend fabrics were dyed with the ethanol extract of fennel leaf by the exhaustion method. The color strength, various color fastness, UV protection, antimicrobial activity, antioxidant activity, hydrophilicity, physical and mechanical properties of dyed samples were evaluated. The pretreated fabric dyed with fennel extract showed a significant increase in the UV protection factor (UPF) with minimal effect on tensile strength.

کلیدواژه‌ها [English]

  • Cotton
  • PET blend Fabric Fennel as Natural dye Pre
  • treatment Plasma Ultraviolet protection Color fastness
  1. Gorjan M, Jazbe K, Mozeti M, Kert M. UV-protective properties of cotton fabric treated with plasma, UV absorber and reactive dye, Fibers and Polymers. 2014;15(10):2095-2104. https://doi.org/10.1007/s12221-014-2095-6.
  2. Gruji D, Savi A, Topali -Trivunovi L, Gorjanc M. Surface Modification of Textile for Antimicrobial Treatment with Medicinal Plant Extracts. In: Shahid M, Chen G, Tang R-Ch. (eds) Handbook of Textile Coloration and Finishing. Studium Press LLc, 2018, 293- 320.
  3. Zhonghua Li, Yanyun Zhang, Weibang Xia, Yijun Tang, Qing Li, Producing natural-colored super-powerful antibacterial cotton with plasma-assisted fiber surface modification: a green and effective cotton process for medical and healthcare applications, Mater. Adv. 2023;4:932–939. https://doi.org/ 10.1039/ d2ma 00701k.
  4. Shahidi S, Moazzenchi B, Comparison between Mordant Treatment and Plasma Sputtering on Natural Dying and UV Protection Properties of Wool Fabric, Fibers Polym 2019; 20(8):1658-1665. https://doi.org/ 10.1007/s12221-019-2040-9.
  5. Gruji D, Savi A, Topali-Trivunovi L, Milanovi J, Haji A, Plasma surface modification of textiles for application of natural dyes, In: Islam SU, Haji A. (eds.) Advances in plasma treatment of textile surfaces. Woodhead Publishing. A volume in The Textile Institute Book Series, Elsevier, Bahman 4, 1402 AP-Technology& Engineering-662 pages.
  6. Chavan RB. Health and environmental hazards of synthetic dyes [phD thesis]. University of Bahir Dar, Bahir Dar. 2013.
  7. Gorjan M, Savić A, Topalić-Trivunović L, Mozetič M, Zaplotnik R, Vesel A, et al. Dyeing of plasma treated cotton and bamboo rayonwith Fallopia japonica extract, Cellulose, 2016;23(3):2221-2228, https://doi. org/ 10.1007/s10570-016-0951-9.
  8. Uddin MA, Rahman MM, Haque AN, Smriti SA, Datta E, Farzana N, Chowdhury S, Haider J, Sayem AS. Textile colouration with natural colourants: a review. J Cleaner Prod. 2022;349:131489. https://doi. org/10.1016/j.jclepro. 2022. 131489.
  9. Ibrahim NA, Eid BM, Kafafy H. Sustainable colorants for protective textiles. Ul-Islam Sh, Butola BS. (Eds.), In book: Advances in Functional and protective textiles. Woodhead Publishing. 2020. 569-629
  10. Shahid-ul-Islam Shahid, M., Mohammed, F., Perspectives for natural products-based agents derived from industrial plants in textile applications - a review. J. Clean. Prod. 2013; 57: 2–18. https://doi.org/ 10.1016/j.jclepro.2013.06.004
  11. Ishrat Ali S, Revival of natural dyes in Asia, Journal of the Society of Dyers Colour. 1993;109(1):13-14, https://doi.org/ 10.1111/j. 1478-4408.1993.tb01494.x.
  12. Joshi M, Wazed Ali S, Purwar R, Ecofriendly antimicrobial finishing of textiles using bioactive agents on natural products, Indian J Fibre Text Res. 2009;34:295-304.
  13. Mingbo M, Rongxia L, Yangyang D, Zhirong T, Analysis of antibacterial properties of naturally colored cottons, Text Res J. 2013;83(5):462-470, https://doi.org/ 10.1177/0040517512 4475 85.
  14. Kumar Samanta A, Agarwal, P, Application of natural dyes on textiles, Indian J Fiber Text Res. 2012;34:384-399.
  15. Kerkeni A, Behary N, Perwuelz A, Gupta D. Dyeing of woven polyester fabric with curcumin: effect of dye concentrations and surface pre‐activation using air atmospheric plasma and ultraviolet excimer treatment. Colorat Technol. 2012;128(3): 223-9. https://doi.org/ 10.1111/j.1478-4408.2012.00367.x.
  16. Dadalioǧlu I, Evrendilek GA. Chemical compositions and antibacterial effects of essential oils of Turkish oregano (Origanum minutiflorum), bay laurel (Laurus nobilis), Spanish lavender (Lavandula stoechas L.), and fennel (Foeniculum vulgare) on common foodborne pathogens. J Agric Food Chem. 2004;52(26):8255-60. https://doi. org/10.1021/jf049033e.
  17. Pizzicato B, Pacifico S, Cayuela D, Mijas G, Riba-Moliner M. Advancements in sustainable natural dyes for textile applications: A review Molecules. 2023; 28 (16):5954. https://doi.org/10.3390/molecules 28165954
  18. Duran N, Duran M. Enzyme applications in the textile industry. Review Prog Color Relat Top. 2000; 30:41-44.
  19. Kumar D, Bhardwaj R, Jassal S, Goyal T, Khullar A, Gupta N. Application of enzymes for an eco-friendly approach to textile processing. Environ Sci Pollution Res. 2021:1-1. https://doi.org/10.1007/s11356-021-16764-4.
  20. Ibrahim SF, Investigation into the Effect of UV/ozone Treatments on the Physical Properties and Dyeing Kinetics of some Polymeric Fabrics [PhD Thesis]. Faculty of Science, Cairo University. 2003
  21. Hawkyard, CJ, Shao J, Carr CM, Investigation Into the Effect of UV/ozone Tretments on Dye-ability and Printability of Wool, J Soc Dyers Colour, 1997; 113: 126-130. https://doi. org/10.1111/\j.1478-4408.1997. tb01884.x.
  22. Michael MN, El-Zaher NA, Ibrahim S, Investigation into Surface Modification of some Polymeric Fabrics by UV/ozone Treatment, Polym-Plast Technol Eng. 2004;43:1041-1052. https://doi.org/10.1081/ PPT-200030016.
  23. Dai D, Shi M, Effects of electron beam irradiation on structure and properties of ultra-high molecular weight polyethylene fiber. J Indust Text. 2018;47(6):1355-1377. https://doi.org/ 10.1177/152808371769061.
  24. Ibrahim SF, El-Zaher NA, Micheal MN. Characteri-zation and evaluation of physico-chemical properties of polymeric fabrics treated with UV/ozone. Res J Text Apparel. 2010;14(2):59-71. https://doi.org/10.1108/ RJTA-14-02-2010-B008.
  25. Zhang Y, Rather LJ, Li Q. Recent advances in the surface modification strategies to improve functional finishing of cotton with natural colourants-A review. J Cleaner Product. 2022;335:130313. https://doi.org/ 10. 1016/j.jclepro.2021. 130313.
  26. Essa DM, Recent techniques of surface modification for textile fabrics. J Meas Sci Appl, JMSA. 2024; 4(1): 66-87. https://doi.org/10.1016/j.jclepro .2021. 130313.
  27. Safapour S, Sadeghi-Kiakhani M, Sabzi F. Applications of Ultraviolet Irradiation in Surface Modification and Improvement of Dyeing and Finishing Processes of Proteinous and Cellulosic Fibers. J Stud Color World. (2017); 7(3): 1-20 [In Persian].
  28. Ražić SE, Čunko R, Bautista L, Bukošek V. Plasma effect on the chemical structure of cellulose fabric for modification of some functional properties. Procedia Eng. 2017; 200: 333-40. 10.1016/j.proeng. 2017.07. 047.
  29. Yaman N, Özdoğan E, Seventekin N, Ayhan H. Plasma treatment of polypropylene fabric for improved dyeability with soluble textile dyestuff. Appl Surf Sci. 2009; 255(15): 6764-70. 10.1016/j.apsusc. 2008.10. 121.
  30. Park Y, Koo K. The eco-friendly surface modification of textiles for deep digital textile printing by in-line atmospheric non-thermal plasma treatment. Fibers Polym. 2014; 15:1701-7. https://doi.org/ 10.1007/ s12221-014-1701-y.
  31. Zille, A. Plasma Technology in Fashion and Textiles, In: Sustainable Technologies for Fashion and Textiles; Woodhead Publishing Series in Textiles, 2020: 117–142. 10.1016/B978-0-08-102867-4.00006-2.
  32. Ennaceur S, Bouaziz A, Gargoubi S, Mnif W, Dridi D. Enhanced natural dyeing and antibacterial properties of cotton by physical and chemical pretreatments. Process. 2022;10(11):2263. https://doi.org/10.3390/pr 10112263.
  33. Bhatti IA, Adeel S, Siddique S, Abbas M. Effect of UV radiation on the dyeing of cotton fabric with reactive blue 13. J Saudi Chem Soc. 2014; 18:606–609. 10.1016/j.jscs.2012. 11.006.
  34. Ajmal, M, Adeel S, Azeem M, Zuber M, Akhtar N, Iqbal N. 2014. Modulation of pomegranate peels colourant characteristics for textile dyeing using high energy radiation. Industrial Crops Products 58:188–193. https://doi.org/10.1016/j.indcrop. 2014. 04.026.
  35. Adeel S, Rehman F, Hanif R, Zuber M, Haq E, Muneer M. Ecofriendly dyeing of UV-irradiated cotton using extract of Acacia nilotica Bark (kiker) as a source of Quercetin. Asian J Chem. 2014;26:830–834. https://doi.org/10.14233/ajchem. 2014. .
  36. Rehman F, Adeel S, Shahid M, Bhatti IA, Nasir F, Akhtar N, and Ahmad Z. Dyeing of γ-irradiated cotton with natural flavonoid dye extracted from irradiated onion shells (Allium cepa) powder. Radiat Phys Chem. 2013;92:71-75. https://doi.org/10.1016/ j.radphyschem. 2013. 07. 002.
  37. Iqbal J, Bhatti IA, Adeel S. Effect of UV radiation on dyeing of cotton fabric with extracts of henna leaves. Indian J Fiber Text Res. 2008;33:157–62. https://doi. org/10.1016/j.jscs. 2012. 11.006.
  38. Rehman F, Adeel S, Hanif R, Muneer M, Zia KM, Zuber M, Jamal MA, Khosa MK. Modulation of marigold-based lutein dye and its dyeing behaviour using UV radiation. J Natural Fibers. 2017; 14(1):63-70. https://doi.org/10.1080/15440478. 2016.1146642.
  39. Sadannavar MK, Periyasamy A, Islam SR, Shafiq F, Dong X, Zhao T. Natural dyeing and antimicrobial functionalization of wool fabrics dyed with chinese Dragon Fruit Extract to Enhance Sustainable Textiles. Sustainability. 2024,16,6832. https://doi .org/ 10.3390/ su16166832.
  40. Baykal PD, Babaarslan O, Erol R. Prediction of strength and elongation properties of cotton polyester-blended OE rotor yarns. Fibres Text Eastern Eur. 2006;14(1):18.
  41. Burkinshaw SM, Liu K, Salihu G, The Wash-off of Dyeings Using Interstitial Water Part 5: Residual Dyebath and Wash-off Liquor Generated during the Application of Disperse Dyes and Reactive Dyes to Polyester/Cotton Fabric. Dye. Pigm. 2019,171.106367.
  42. Li Z, Zhang Y, Xia W, Tang Y, Li Q. Producing natural-colored super-powerful antibacterial cotton with plasma-assisted fiber surface modification: a green and effective cotton process for medical and healthcare applications. Mater Adv. 2023;4(3):932-9. https://doi. org/ 10.1039/D2MA 00701K.
  43. Shivankar VS, Daberao A, Karche N. Effect of various parameters on dyeing of polyester cotton blend. Int J Text Eng Processes. 2015;1(4):9-13.
  44. Fazal R, Adeel S, Qaiser S, Bhatti IA, Shahid M, Dyeing behaviour of gamma irradiated cotton fabric using Lawson dye extracted from henna leaves (Lawsonia inermis). Radiat Phys Chem 2012; 81(11): 1752–1756. https://doi.org/10.1016/j. radphyschem. 2012.06.013.
  45. Bhatti IA, Adeel S, Parveen S, Zuber M. Dyeing of UV irradiated cotton and polyester fabrics with multifunctional reactive and disperse dyes. J Saudi Chem Soc. 2016; 20(2):178-84. https://doi.org/10. 1016/j.jscs.2012.12. 014.
  46. Haddar W, Elksibi I, Meksi N, Mhenni MF. Valorization of the leaves of fennel (Foeniculum vulgare) as natural dyes fixed on modified cotton: A dyeing process optimization based on a response surface methodology. Industrial Crops Products. 2014; 52:588-96. http://dx.doi.org/10.1016/j.indcrop.2013.11. 019.
  47. Maghrabi HA, Textile Design for Diagnostic X-ray Shielding Garments and Comfort Enhancement for Female Users [Ph.D thesis]. [Dissertation] RMIT University, 2017.
  48. Rather MA, Dar BA, Sofi SN, Bhat BA, Qurishi MA. Foeniculum vulgare: A comprehensive review of its traditional use, phytochemistry, pharmacology, and safety. Arabian J Chem. 2016;9:1574-1583. http://dx.doi.org/10.1016/j.arabjc. 2012.04.011.
  49. Baseri S. Eco-friendly production of anti-UV and antibacterial cotton fabrics via waste products. Cellulose. 2020;27:10407-23.10.1007/s10570-020-03471-5.
  50. Jonobi, P. Majd, A. Marof A. Amini, Sh. Efficiency of anise extract (Pimpinella anisum) on the biological activity of Tribolium castaneum and its antioxidant performance. J Novel Res Plant Protect. 1393; 6(4):309-322 [In Persian].
  51. Deng J, Cheng W, Yang G. A novel antioxidant activity index (AAU) for natural products using the DPPH assay. Food Chem. 2011 15;125(4):1430-1435. https://doi.org/10.1016/j. foodchem. 2010. 10.031
  52. Hasan MM, Hossain MB, Azim AY, Ghosh NC, Reza MS. Application of purified curcumin as natural dye on cotton and polyester. Int J Eng Technol. 2014; 14(5):17-23.
  53. Badgujar SB, Patel VV, Bandivdekar AH. Foeniculum vulgare Mill: a review of its botany, phytochemistry, pharmacology, contemporary application, and toxicology. BioMed Res Int. 2014;2014(1):1-32. http://dx.doi.org/ 10.1155/ 2014/842674
  54. Hassan S, Saleh SM, Ismail EE, Abd Thaloth J. Ultraviolet Protection of Cotton Fabrics and Their Blends Using Natural Plant Extracts by Printing Style. Egyptian J Chem. 2020; 63(9):3481-9. 10.21608/ ejchem.2020.23842.2419.
  55. Park Y, Koo K, Kim S, Choe J. Improving the colorfastness of poly (ethylene terephthalate) fabrics with the natural dye of Caesalpinia sappan L. Wood extract and the effect of chitosan and low‐temperature plasma. J Appl Polym Sci. 2008; 109(1):160-6. 10. 1002/app.27899.
  56. Bhatti IA, Adeel S, Jamal MA, Safdar M, Abbas M. Influence of gamma radiation on the colour strength and fastness properties of fabric using turmeric (Curcuma longa L.) as natural dye. Radiat Phys Chem. 2010; 79(5):622-5. 10.1016/ j.radphyschem. 2009.12. 006.
  57. Safapour S, Sadeghi-Kiakhani M, Sabzi F. Applications of Ultraviolet Irradiation in Surface Modification and Improvement of Dyeing and Finishing Processes of Proteinous and Cellulosic Fibers. J Stud Color World. 2017; 7(3):1-20.20.1001. 1.22517278.1396.7.3.2.6. [In Persian].
  58. Bhatti IA, Adeel S, Parveen S, Zuber M. Dyeing of UV irradiated cotton and polyester fabrics with multifunctional reactive and disperse dyes. J Saudi Chem Soc. 2016; 20(2):178-84. http://dx.doi.org/ 10.1016/j.jscs.2012.12.014.
  59. Mahdavi S, Alizad M, Sajadi P, Baleghi M. A study of the antioxidant and antimicrobial effects of ethanolic extract of fennel (Foeniculum vulgare Mill) seeds. J Babol Uni Medical Sci. 2017;19(5):32-8 [In Persian].
  60. Karabulut K, Atav R. Dyeing of cotton fabric with natural dyes without mordant usage part I: determining the most suitable dye plants for dyeing and UV protective functionalization. Fibers Polym. 2020; 21:1773-1782.10. 1007/s12221-020-9365-2.
  61. Rather LJ, Zhou Q, Ali A, Haque QM, Li Q. Valorization of natural dyes extracted from Mugwort leaves (Folium artemisiae argyi) for wool fabric dyeing: optimization of extraction and dyeing processes with simultaneous coloration and biofunctionalization. ACS Sustainable chem Eng. 2020; 8(7):2822-2834. https://dx.doi.org/10.1021/ acssuschemeng. 9b06928.
  62. Boyadzhieva S, Angelov G. Optimization of water extraction of fennel seeds. J Chem Technol Metall. 2014; 49(5): 447-450. https://www.researchgate.net /publication/286816283.