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Dyeability of Protein Fiber Treated with Wisteria floribunda Leaf Extract

참등나무 잎 추출액을 이용한 단백질 섬유의 염색성

  • 최순화 (중부대학교 패션디자인학과)
  • Received : 2014.08.27
  • Accepted : 2014.09.19
  • Published : 2014.09.27

Abstract

In this study, the colorants of Wisteria floribunda leaf were extracted with water. Silk and wool fabrics have been dyed with the aqueous extract of Wisteria floribunda leaf and their dyeabilities was studied. Additionally the fastness to washing, drycleaning, light and perspiration were also investigated. Silk and wool fabrics dyed with the extract of Wisteria floribunda leaf were colored in yellowish red tint. The optimum dyeing condition of the colorants extracted from Wisteria floribunda leaf was three repeated dyeing at 70, $95^{\circ}C$ for 1hr using post mordanting. For dyed silk and wool fabrics, the fastness to washing was improved by mordanting, and the fastness to drycleaning was very outstanding.

Keywords

References

  1. J. Y. Bae and J. H. Park, Pharmacognostical Studies on the Folk Medicine 'DeungNaMu', J. of the Korean Society of Pharmacognosy, 43(2), 98(2012).
  2. W. G. Oh, I. C. Jang, G. I. Jeon, E. J. Park, H. R. Park, and S. C. Lee, Antioxidative Activity of Extracts from Wisteria floribunda Flowers, J. of the Korean Society Food Science and Nutrition, 37(6), 677(2008). https://doi.org/10.3746/jkfn.2008.37.6.677
  3. J. W. Kim and J. W. Lim, The Bacterial Gall of Wistaria floribunda Caused by Pantoea agglomerans pv. milletiae, Research in Plant Disease, 7(3), 145(2001).
  4. Y. M. Lee, "100 Korean Trees", Hyeon Am Sa, Seoul, pp.83-88, 1996.
  5. Y. O. Jeong and S. S. Kim, Colorfastness of Fabrics Dyed in Dyebath Extracted from Wisteria, The Korean J. of Community Living Science, 14(2), 125(2003).
  6. Y. S. Kim and S. E. Bae, Dyeabilities with Various Fabrics and Chemical Composition of Brown Colorants from Pine Bark, Fashion and Textile Research J., 15(1), 138(2013). https://doi.org/10.5805/SFTI.2013.15.1.138
  7. S. K. Bai, The Dyeing Properties of Silk Fabrics with Brassica Campestris, J. of the Korean Society Clothing Industry, 7(5), 542(2005).
  8. J. H. Son, M. S. Lee, and T. L. Chun, Catechins Content and Color Values of Silk Fabrics Dyed with Korean Green Tea Extracts, Textile Coloration and Finishing(J. of Korea Soc. Dyers and Finishers), 18(1), 10(2006).
  9. B. H. Kim and W. S. Song, The Dyeability and Antimicrobial Activity of Artemisia princeps Extracts, Textile Coloration and Finishing(J. of Korea Soc. Dyers and Finishers), 11(5), 308(1999).
  10. K. Y. Nam and J. S. Lee, Dyeing Properties and Functionality of Hot-water Extract from Juniperus chinensis Heartwood, Textile Coloration and Finishing (J. of Korea Soc. Dyers and Finishers), 25(3), 181(2013). https://doi.org/10.5764/TCF.2013.25.3.181
  11. K. Y. Nam and J. S. Lee, Dyeing Properties and Functionality of Methanol Extract from Juniperus chinensis Heartwood, Textile Coloration and Finishing (J. of Korea Soc. Dyers and Finishers), 25(3), 194(2013). https://doi.org/10.5764/TCF.2013.25.3.194
  12. J. S. Bae, Y. K. Kim, and M. W. Huh, The Dyeability and Antibacterial Activity of Silk, Rayon Fabrics Dyed with Cochineal, Textile Coloration and Finishing(J. of Korea Soc. Dyers and Finishers), 18(6), 1(2006).

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