DOI QR코드

DOI QR Code

Dyeability and Function of Silk Fabrics Using Myrica Rubra rind Extract

소귀나무 수피(양매피) 추출물을 이용한 견직물의 염색성과 기능성

  • Lee, Jung Eun (Korean Traditional Costume Research Institute, Pusan National University)
  • 이정은 (부산대학교 한국전통복식연구소)
  • Received : 2018.08.17
  • Accepted : 2018.10.05
  • Published : 2018.10.31

Abstract

The purpose of this study is to investigate the dyeability and functional properties of dyed fabric with the extract of Myrica rubra rind. For this purpose, the ultraviolet and visible spectra of the bark extracts were investigated. The dyeing temperature, dyeing time, mordant type, mordanting order, mordant concentration and dyeability were investigated. The color fastness based on washing, dry-cleaning, rubbing and light were evaluated by the types of Myrica rubra rind extract used. In addition, the deodorization and antibacterial activity were measured, and the functionality of the silk fabric dyed with the extract of the Myrica rubra rind was evaluated. The result shows that the color strength of the dye was excellent when the Myrica rubra rind was dyed at $80^{\circ}C$ for 80 minutes. The mordant dye color strength was high in the order of Fe mordant> Cu mordant> Al mordant. The dyeability of Al and Cu mordant was high during pre-mordanting compared to Fe mordant, and the dyeability of Fe mordant was high during post-mordanting than Cu and Al mordant. The deodorant property of the dyed fabric stained with the Myrica rubra rind extract was 92.4% and that of antibacterial property was 99.9% for Staphylococcus aureus and Klebsiella pneumoniae bacteria respectively.

Keywords

References

  1. Bao, J., Cai, Y., Sun, M., Wang, G., & Corke, H. (2005). Anthocyanins, flavonols and free radical scavenging activity of chinese bayberry(myrica rubra) extracts and their color properties and stability. Journal of Agricultural and Food Chemistry, 53(6), 2327-2332. doi:10.1021/jf048312z
  2. Jo, S. J. (2014). 특허로 만나는 우리약초 2 [Patents of Korean medicinal herbs]. Seoul: Academy Book.
  3. Kuo, P. L., Hsu, Y. L., Lin, T. C., Lin, L. T., & Lin, C. C. (2004). Induction of apoptosis in human breast adenocarcinoma MCF-7 cells by prodelphinidin B-2 3,3'-di-O-gallate from Myrica rubra via Fas-mediated pathway. Journal of Pharmacy and Pharmacology, 56(11), 1399-1406. doi:10.1211/0022357044625
  4. Lee, B. C. (2007). 소귀나무 [Myrica rubra]. 산림, 502, 81.
  5. Lim, S. B., Hyun, S. H., Jung, S. K., Jwa, M. K., Song, C. K., & Kim, J. H. (2007). Screening of antioxidants and cosmeceuticals from natural plant resources in jeju island. Journal of Korean Food Science and Technology, 39(2), 200-208
  6. 'Myrica rubra'. (2009). Korea National Arboretum. Retrieved July 18, 2018, from http://www.nature.go.kr/kbi/plant/pilbk/selectPlantPilbkDtl.do?plantPilbkNo=30312.
  7. Nam, K. Y., & Lee, J. S. (2012). Dyeability and functionality of chaenomelis fructus extract. Fashion & Textile Research Journal, 14(3), 478-485. doi:10.5805/KSCI.2012.14.3.478.
  8. Nam, K. Y., & Lee, J. S. (2013). Dyeing properties and functionality of methanol extract from juniperus chinensis heartwood. Journal of Textile Coloration and Finishing, 25(3), 181-193. doi:10.5764/TCF.2013.25.3.194
  9. Sakata, K. (1999). Study on dyeing chemical property of the natural dye. Unpublished doctoral dissertation, University of Shinshu, Matsumoto.
  10. Shin, H. C. (2014). 뿌리혹박테리아가 있어 척박한 땅에서도 잘 자라는 소귀나무 [Myrica rubra grows well on the barren land due to leguminous bacteria]. 산림, 577, 83-85.
  11. Shinohara, H., & Tabata, T. (1992). On the antimicrobial activity of myricitrin extractedd from myrica rubra. Journal of Higashikyushu Junior College, 3, 113.
  12. Sohn, H. Y., Ryu, H. Y., Kwon, Y. S., Kum, E. J., Kwon, C. S., Kwon, G. S.. Kim, K. W., & Son, K. H. (2005). Screening of thrombin inhibitor from medicinal and wild plants(2). Journal of Korean Pharmacognosy, 36(4), 263-272.
  13. Yaga, S., Uchiyama, Y., & Nakasong, H. (1981). Studies on plant pigments (1) : dyeing properties of myrica rubra S. & Z.. Journal of University of Ryukyus 28, 255-263.