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Portakal Kabuğu ve Portakal Ağacı Yaprağından Elde Edilen Ekstraktlarla Standart Çok Lifli Kumaşın Boyanması

Yıl 2025, Cilt: 40 Sayı: 3, 559 - 568, 26.09.2025
https://doi.org/10.21605/cukurovaumfd.1738580

Öz

Çalışmada, portakal kabuğu ve portakal ağacı yaprağından ekstraktlar elde edilmiştir. Elde edilen doğal boyarmaddelerin lif yüzeyine bağlanabilmesi için farklı oranlarda alüminyum sülfat (Al2(SO4)3.8H2O) ile yapılan mordanlama, boyama ile eşzamanlı olarak gerçekleştirilmiştir. Hazırlanan karışımlarla yün, akrilik, polyester, poliamid, pamuk ve asetat içeren çoklu lif kumaşı renklendirilmiştir. Boyama sonrası, spektrofotometre ile yapılan ölçümler yazılım aracılığıyla değerlendirilmiş; renk kuvveti (K/S), kırmızılık-yeşillik (a*), sarılık-mavilik (b*) ve açıklık-koyuluk (L*) değerleri analiz edilmiştir. Tüm numunelere yıkama uygulanmış ve yıkama sonrası toplam renk farkı (ΔE) değerleri elde edilmiştir. Lif türleri arasında en yüksek renk verimi yün ve poliamid içeren numunelerde gözlemlenmiştir. Yünlü kumaşlarda en yüksek K/S değeri, %1 oranında alüminyum sülfat içeren portakal kabuğu ekstraktı ile elde edilirken; poliamid kumaşlarda ise %3 oranında alüminyum sülfat içeren portakal ağacı yaprağı ekstraktı ile en yüksek renk verimi sağlanmıştır. Bu numunelerde yıkama haslığı da diğer liflere göre daha yüksek bulunmuştur.

Kaynakça

  • 1. Sancar Beşen, B., Parlakyiğit, P. ve Yılmaz, E. (2024). Simultaneous coloring and antibacterial finishing to cotton through environmentally-friendly way. Tekstil ve Konfeksiyon, 34(1), 44-50.
  • 2. Aishwariya, S. (2020). Textiles from orange peel waste. Science & Technology Development Journal, 23(2), 508-516.
  • 3. Devi, O.R. & Saini, H. (2020). Utilization of orange peel waste in textile industry: A review. International Journal of Chemical Studies, 8(4) 5-8.
  • 4. Benli, H. ve Bahtiyari, M.İ. (2011). Portakal ağacı yaprakları ile viskon kumaşların boyanması. Akdeniz Sanat, 4(8) 85-89.
  • 5. Tayyab, N., Sayed, R.Y., Faisal, R. & Wang, W. (2020). Dyeing and colour fastness of natural dye from Citrus aurantium. Industria Textila, 71(1) 350-356.
  • 6. Edeen, A.B. (2015). Dyeing of Egyptian cotton fabrics with orange peel using padding technique. International Design Journal, 5(2), 511-516.
  • 7. Fernández-Cabal, J., Avilés-Betanzos, A., Cauich-Rodríguez, J.V., Ramírez-Sucre, M.O. & Rodríguez-Buenfil, I.M. (2025) Recent developments in Citrus aurantium L.: An overview of bioactive compounds, extraction techniques, and technological applications. Processes, 13(120), 1-34.
  • 8. Sentthil Kumar, C.S. & Dhinakaran, M. (2017). Extraction and applicatıon of natural dyes from orange peel and lemon peel on cotton fabrics. International Research Journal of Engineering and Technology, 4(5), 237-238.
  • 9. Taura, U.H., Abubakar, M.A., Abubakar, A.M. & Kurgıya, M.U. (2024). Extraction and characterisation of natural dye from orange peel for textile applications. Journal of Applied Life Sciences and Environment, 57(1), 169-181.
  • 10. Li, K., Ding, Q. & Zhang, H. (2022). Eco-friendly dyeing of cotton fabric using natural dye from orange peel. The Journal of The Textile Institute, 113(3), 360-366.
  • 11. Baaka, N., Mahfoudhi, A. & Mhenni, M.F. (2017). Orange peels waste as a low cost cotton natural dye. Moroccan Journal of Chemistry, 5(2), 259-265.
  • 12. Iqbal, S. & Ansari, T. (2021). Extraction and application of natural dyes. Sustainable Practices in the Textile Industry (s.13), Wiley, 368.
  • 13. Chavan, R.B. (2011). Environmentally friendly dyes. Handbook of Textile and Industrial Dyeing. Woodhead Publishing, Cambridge.
  • 14. Chakraborty, J.N. (2011). Metal-complex dyes. Handbook of Textile and Industrial Dyes. Woodhead Publishing, Philadelphia, 454.
  • 15. Failisnur, F., Sofyan, S., Kasim, A. & Angraini, T. (2018). Study of cotton fabric dyeing process with some mordant methods by using gambier (Uncaria gambir roxb) extract. International Journal on Advanced Science Engineering and Information Technology, 8(4), 1098-1104.
  • 16. Rosyida, A., Suranto, Masykuri, M. & Margono, M. (2022). Minimisation of pollution in the cotton fabric dyeing process with natural dyes by the selection of mordant type. Research Journal of Textile and Apparel, 26(1), 41-56.
  • 17. SDL Atlas, (2025). www.sdlatlas.com/test-materials/multifiber/multifiber-adjacent-fabric-ioaisotic-10-meters, Erişim tarihi: 17.07.2025.
  • 18. Özdemir, H. (2018). Bodur mürver (Sambucus ebulus L.) ile yün ipliklerin boyanması. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 33(1), 219-228.
  • 19. Koyuncu, M. (2022). Investigation of color, and fastness properties of wool yarn dyed with ternary plant combination: A new dyeing method for the production of eco-friendly textiles. Çukurova Üniversitesi Mühendislik Fakültesi Dergisi, 37(4), 1077-1086.
  • 20. Krishna, S., Sreedhar, I. & Patel, C.M. (2021). Molecular dynamics simulation of polyamide-based materials – A review. Computational Materials Science, 200, 1-14.
  • 21. Sezgin Bozok, S., Ahmed, T., Bebekli, M. & Oğulata, R.T. (2023). Investigation of the effect of different mordant substances and nonionic surfactant on cotton fabrics dyed with eucalyptus leaf extract by using IR dyeing machine. The Journal of The Textile Institute, 115(12), 2421-2428.
  • 22. Khettal, B., Kadri, N., Tighilet, K., Adjebli, A. & Dahmoune, F. (2016). Phenolic compounds from Citrus leaves: antioxidant activity and enzymatic browning inhibition. Journal of Complementary and Integrative Medicine, 20160030, 1-13.
  • 23. Uysal, S., Cvetanović, A., Zengin, G., Đurović,, S., Zeković, Z. & Aktumsek, A. (2018). Effects of orange leaves extraction conditions on antioxidant and phenolic content: Optimization using response surface methodology. Analytical Letters, 51(10), 1505-1519.
  • 24. Hussain, T., Arain, M.F., Khan, I.A., Javed, K., Khan, H., Ahmed, A. & Khan, A. (2024). Recycling orange waste for the sustainable dyeing of polyester fabric. Journal of the Indian Chemical Society, 101, 1-9.
  • 25. Dhahri, H., Guesmi, A. & Hamadi, N.B. (2019). Application of phenolic compounds as natural dye extractedfrom date-pits: dyeing studies of modified acrylic fibres. Natural Product Research, 33(9), 1329-1333.
  • 26. Hou, X., Chen, X., Cheng, Y., Xu, H., Chen, L. & Yang, Y. (2013). Dyeing and UV-protection properties of water extracts from orange peel. Journal of Cleaner Production, 52, 410-419.
  • 27. Bancroft, W.D. (2002). Alumina. Mordants II, ASC Publications, 36.
  • 28. Ivanovska, A., Gajic´, I.S., Ladarevic´, J., Miloševic´, M., Savic´ , I., Mihajlovski, K. & Kosti´c, M. (2022). Sustainable dyeing and functionalization of different fibers using orange peel extract’s antioxidants. Antioxidants, 11(2059), 1-15.

Dyeing of Standard Multifiber Fabric with Extracts Obtained from Orange Peel and Orange Tree Leaves

Yıl 2025, Cilt: 40 Sayı: 3, 559 - 568, 26.09.2025
https://doi.org/10.21605/cukurovaumfd.1738580

Öz

In the study, extracts were obtained from orange peels and orange tree leaves. Mordanting with different proportions of aluminum sulfate (Al2(SO4)3.8H2O) was carried out simultaneously with dyeing to ensure the binding of the obtained natural dyes to the fibers. Multifiber fabrics containing wool, acrylic, polyester, polyamide, cotton, and acetate were dyed using the prepared dyeing solutions. After dyeing, measurements taken with a spectrophotometer were evaluated via software, and color strength (K/S), redness-greenness (a*), yellowness-blueness (b*), and apparent darkness (L*) values were analyzed. All samples were washed, and total color difference (ΔE) values were obtained after washing. According to the results, the highest color yield among the different fiber types was observed in samples containing wool and polyamide. While the highest K/S value in wool fabrics was obtained with orange peel extract containing 1% aluminum sulfate, the highest color yield was achieved in polyamide fabrics with orange tree leaf extract containing 3% aluminum sulfate. Washing fastness in these samples is also higher than in other samples.

Kaynakça

  • 1. Sancar Beşen, B., Parlakyiğit, P. ve Yılmaz, E. (2024). Simultaneous coloring and antibacterial finishing to cotton through environmentally-friendly way. Tekstil ve Konfeksiyon, 34(1), 44-50.
  • 2. Aishwariya, S. (2020). Textiles from orange peel waste. Science & Technology Development Journal, 23(2), 508-516.
  • 3. Devi, O.R. & Saini, H. (2020). Utilization of orange peel waste in textile industry: A review. International Journal of Chemical Studies, 8(4) 5-8.
  • 4. Benli, H. ve Bahtiyari, M.İ. (2011). Portakal ağacı yaprakları ile viskon kumaşların boyanması. Akdeniz Sanat, 4(8) 85-89.
  • 5. Tayyab, N., Sayed, R.Y., Faisal, R. & Wang, W. (2020). Dyeing and colour fastness of natural dye from Citrus aurantium. Industria Textila, 71(1) 350-356.
  • 6. Edeen, A.B. (2015). Dyeing of Egyptian cotton fabrics with orange peel using padding technique. International Design Journal, 5(2), 511-516.
  • 7. Fernández-Cabal, J., Avilés-Betanzos, A., Cauich-Rodríguez, J.V., Ramírez-Sucre, M.O. & Rodríguez-Buenfil, I.M. (2025) Recent developments in Citrus aurantium L.: An overview of bioactive compounds, extraction techniques, and technological applications. Processes, 13(120), 1-34.
  • 8. Sentthil Kumar, C.S. & Dhinakaran, M. (2017). Extraction and applicatıon of natural dyes from orange peel and lemon peel on cotton fabrics. International Research Journal of Engineering and Technology, 4(5), 237-238.
  • 9. Taura, U.H., Abubakar, M.A., Abubakar, A.M. & Kurgıya, M.U. (2024). Extraction and characterisation of natural dye from orange peel for textile applications. Journal of Applied Life Sciences and Environment, 57(1), 169-181.
  • 10. Li, K., Ding, Q. & Zhang, H. (2022). Eco-friendly dyeing of cotton fabric using natural dye from orange peel. The Journal of The Textile Institute, 113(3), 360-366.
  • 11. Baaka, N., Mahfoudhi, A. & Mhenni, M.F. (2017). Orange peels waste as a low cost cotton natural dye. Moroccan Journal of Chemistry, 5(2), 259-265.
  • 12. Iqbal, S. & Ansari, T. (2021). Extraction and application of natural dyes. Sustainable Practices in the Textile Industry (s.13), Wiley, 368.
  • 13. Chavan, R.B. (2011). Environmentally friendly dyes. Handbook of Textile and Industrial Dyeing. Woodhead Publishing, Cambridge.
  • 14. Chakraborty, J.N. (2011). Metal-complex dyes. Handbook of Textile and Industrial Dyes. Woodhead Publishing, Philadelphia, 454.
  • 15. Failisnur, F., Sofyan, S., Kasim, A. & Angraini, T. (2018). Study of cotton fabric dyeing process with some mordant methods by using gambier (Uncaria gambir roxb) extract. International Journal on Advanced Science Engineering and Information Technology, 8(4), 1098-1104.
  • 16. Rosyida, A., Suranto, Masykuri, M. & Margono, M. (2022). Minimisation of pollution in the cotton fabric dyeing process with natural dyes by the selection of mordant type. Research Journal of Textile and Apparel, 26(1), 41-56.
  • 17. SDL Atlas, (2025). www.sdlatlas.com/test-materials/multifiber/multifiber-adjacent-fabric-ioaisotic-10-meters, Erişim tarihi: 17.07.2025.
  • 18. Özdemir, H. (2018). Bodur mürver (Sambucus ebulus L.) ile yün ipliklerin boyanması. Çukurova Üniversitesi Mühendislik-Mimarlık Fakültesi Dergisi, 33(1), 219-228.
  • 19. Koyuncu, M. (2022). Investigation of color, and fastness properties of wool yarn dyed with ternary plant combination: A new dyeing method for the production of eco-friendly textiles. Çukurova Üniversitesi Mühendislik Fakültesi Dergisi, 37(4), 1077-1086.
  • 20. Krishna, S., Sreedhar, I. & Patel, C.M. (2021). Molecular dynamics simulation of polyamide-based materials – A review. Computational Materials Science, 200, 1-14.
  • 21. Sezgin Bozok, S., Ahmed, T., Bebekli, M. & Oğulata, R.T. (2023). Investigation of the effect of different mordant substances and nonionic surfactant on cotton fabrics dyed with eucalyptus leaf extract by using IR dyeing machine. The Journal of The Textile Institute, 115(12), 2421-2428.
  • 22. Khettal, B., Kadri, N., Tighilet, K., Adjebli, A. & Dahmoune, F. (2016). Phenolic compounds from Citrus leaves: antioxidant activity and enzymatic browning inhibition. Journal of Complementary and Integrative Medicine, 20160030, 1-13.
  • 23. Uysal, S., Cvetanović, A., Zengin, G., Đurović,, S., Zeković, Z. & Aktumsek, A. (2018). Effects of orange leaves extraction conditions on antioxidant and phenolic content: Optimization using response surface methodology. Analytical Letters, 51(10), 1505-1519.
  • 24. Hussain, T., Arain, M.F., Khan, I.A., Javed, K., Khan, H., Ahmed, A. & Khan, A. (2024). Recycling orange waste for the sustainable dyeing of polyester fabric. Journal of the Indian Chemical Society, 101, 1-9.
  • 25. Dhahri, H., Guesmi, A. & Hamadi, N.B. (2019). Application of phenolic compounds as natural dye extractedfrom date-pits: dyeing studies of modified acrylic fibres. Natural Product Research, 33(9), 1329-1333.
  • 26. Hou, X., Chen, X., Cheng, Y., Xu, H., Chen, L. & Yang, Y. (2013). Dyeing and UV-protection properties of water extracts from orange peel. Journal of Cleaner Production, 52, 410-419.
  • 27. Bancroft, W.D. (2002). Alumina. Mordants II, ASC Publications, 36.
  • 28. Ivanovska, A., Gajic´, I.S., Ladarevic´, J., Miloševic´, M., Savic´ , I., Mihajlovski, K. & Kosti´c, M. (2022). Sustainable dyeing and functionalization of different fibers using orange peel extract’s antioxidants. Antioxidants, 11(2059), 1-15.
Toplam 28 adet kaynakça vardır.

Ayrıntılar

Birincil Dil Türkçe
Konular Tekstil Terbiyesi
Bölüm Makaleler
Yazarlar

Sabiha Sezgin Bozok 0000-0002-8464-0405

R. Tuğrul Oğulata 0000-0003-2783-5246

Yayımlanma Tarihi 26 Eylül 2025
Gönderilme Tarihi 10 Temmuz 2025
Kabul Tarihi 18 Ağustos 2025
Yayımlandığı Sayı Yıl 2025 Cilt: 40 Sayı: 3

Kaynak Göster

APA Sezgin Bozok, S., & Oğulata, R. T. (2025). Portakal Kabuğu ve Portakal Ağacı Yaprağından Elde Edilen Ekstraktlarla Standart Çok Lifli Kumaşın Boyanması. Çukurova Üniversitesi Mühendislik Fakültesi Dergisi, 40(3), 559-568. https://doi.org/10.21605/cukurovaumfd.1738580