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포름알데히드에 의한 전통직물의 손상 특성

Damage Characteristics of Korean Traditional Textiles by Formaldehyde

  • 김명남 (국립문화재연구소 보존과학연구실) ;
  • 임보아 (국립문화재연구소 보존과학연구실) ;
  • 이선명 (국립문화재연구소 보존과학연구실)
  • Kim, Myoung Nam (Conservation Science Division, National Research Institute of Cultural Heritage) ;
  • Lim, Bo A (Conservation Science Division, National Research Institute of Cultural Heritage) ;
  • Lee, Sun Myung (Conservation Science Division, National Research Institute of Cultural Heritage)
  • 투고 : 2014.09.28
  • 심사 : 2014.11.05
  • 발행 : 2014.12.20

초록

포름알데히드는 전시 수장 공간에서 농도와 발생빈도가 높아 전통직물(천연염색)에 대한 손상 개연성이 있다. 본 연구는 견, 면, 모시, 삼베의 무염색, 천연염색(적색, 황색, 청색, 흑색) 시편을 대상으로 포름알데히드 0.5, 1, 10, 100, 500ppm 농도에서의 손상, 손상농도 500ppm에서 온습도 조건에 따른 손상과 열화상태에서의 손상을 광학적, 화학적, 물리적 측정방법으로 평가하였다. 이 결과, 포름알데히드 농도 500ppm에서 일부 직물의 색차, 변퇴색등급, 포름산이온 농도, pH가 변화하였으며, 고온 고습조건($30^{\circ}C$, 80%), 고습조건($25^{\circ}C$, 80%)에서는 색차, 변퇴색등급, 포름산이온 농도가 2배 가중되었다. 그러나, 열화직물은 열화정도, 열화 생성물질로 인해 포름알데히드에 의한 손상변화가 미미하였다. 이를 통해 포름알데히드에 의한 전통직물의 손상, 손상농도, 손상가중 조건, 열화상태에서의 손상을 확인하였으며, 포름알데히드는 적색직물의 황변, 열화직물의 황변 탈색, 포름산은 전체직물의 탈색에 영향을 미치는 것으로 나타났다.

Formaldehyde(HCHO) may have a damage effect on Korean traditional textiles, because concentration is high and occurrence frequency is frequent at the exhibition room and storage area. Total 20 specimens were prepared using 4 different materials (silk, cotton, ramie, hemp) after dyeing with 5 colors (undyed, red, yellow, blue, black). The specimens were exposed to HCHO gas in the test chamber. The gas acceleration test was conducted to identify the deterioration of Korean traditional textiles according to HCHO concentration(0.5, 1, 10, 100, 500ppm), to temperature-humidity condition at HCHO 500ppm, and deterioration conditions at HCHO 500ppm. Optical, chemical, and physical evaluation was carried out after the exposure. The results, color difference, grey scale rating, formate($HCO_2{^-}$) of some textiles increased at 500ppm, while pH decreased at 500ppm. Also, color difference, grey scale rating, formate($HCO_2{^-}$) of some textiles increased double damage at high temperatures & humidity, high humidity condition. But, damages of accelerated degradation textiles were slight, because of degradation degree and degradation products. The results suggest that determined the damage to the korean traditional textile, damage level, damage-weighted condition, damage to accelerated degradation textiles. In addition, formaldehyde damaged to yellowing of red textiles, bleaching of accelerated degradation textiles, formic acid damaged to bleaching of total 20 specimens.

키워드

참고문헌

  1. Chiavari, C., Martini, C., Prandstraller, D., Niklasson, A., Johansson, L. G., Svensson, J. E., Aslund, A. and Bergsten, C. J., 2008, Atmospheric corrosion of historical organ pipes: The influence of environment and materials. Corrosion Science, 50, 2444-2455. https://doi.org/10.1016/j.corsci.2008.06.045
  2. Druzik, C., 1991, Foraldehyde: detection and mitigation. 1990 WAAC Annual Meeting: Presentation summaries, Western Association for Art Conservation Newsletter, 13, 3-8. (in English)
  3. Fenech, A., Strlic, M., Degano, I. and Cassar, M., 2010, Stability of chromogenic colour prints in polluted indoor environments. Polymer Degradation and Stability, 95, 2481-2485. https://doi.org/10.1016/j.polymdegradstab.2010.08.009
  4. Hatchfield, P, 2002, Pollutants in the Museum Environment. Archetype publications. London, 14-21. (in English)
  5. Hays, S. M., Gobbell, R. V. and Ganick, N. R., 1995, Indoor air quality: solution and strategies. Newyork: Mcgraw-Hill, 66, 69. (in English)
  6. Industry-University Cooperation Foundation of Hanyang University, 2007, Development of conservation system for protection of movable cultural properties. National Research Institute of Cultural Heritage, Daejeon, 27, 178-183. (in Korean with English abstract)
  7. Kang, D. I., 2008, The metal corrosion caused by museum indoor air pollutants. Journal of Conservation Science, 22, 5-14. (in Korean with English abstract)
  8. Kim, H. T., 2009, Stabilization for Conservation Environment in National Achives Repository. Conservation of the Archives, 2, 67-74.
  9. Kim, M. N., 2004, Emission Characteristics of Aldehydes from Wood Products Used by Museum and Effect of Aldehydes on Metal Corrosion. Master's Thesis, The University of Seoul. (in Korean with English abstract)
  10. Lee, S.E., and Roh, H.S., 2006, Environmental Measurements of Gallery and Storage Rooms of The New National Museum of Korea. Conservation Science in Museum, 7, 75-87. (in Korean with English abstract)
  11. Menart, E., Bruin, G. D. and Strlic, M., 2011, Dose-response functions for historic paper. Polymer Degradation and Stability, 96, 2029-2039. https://doi.org/10.1016/j.polymdegradstab.2011.09.002
  12. Ministry of Environment, 2014, Indoor air quality control in public use facilities, etc. Enforcement Regulations, appendix 1, 2. (in Korean)
  13. National Museum of Korea, 2012, website(www.museum.go.kr), Collection database. (in Korean)
  14. National Research Institute of Cultural Heritage conservation science division, 2013, Evaluation on material damages of movable cultural properties caused by formaldehyde. National Research Institute of Cultural Heritage, Dajeon, 3-5, 20-22. (in Korean with English abstract)
  15. Nilsson, J., Vilaplana, F., Karlsson, S., Bjurman, J., Iversen, T., 2010, The Validation of Artificial Ageing Method for Silk Textiles Using Markers for Chemical and Physical Properties of Seventeenth-Century Silk. Studies in Conservation, 55, 55-65. https://doi.org/10.1179/sic.2010.55.1.55
  16. Ryhl-Svendsen, M., 2008, Corrosivity measurements of indoor museum environments using lead coupons as dosimeters. Journal of Cultural Heritage, 9, 285-293. https://doi.org/10.1016/j.culher.2008.01.005
  17. Striegel, M.F., 1991, The effects of gas phase formaldehyde on selected inorganic materials found in museums. in P. Hatchfield(ed.) Objects Specialty Group Postprints 1991, Abstracts Presented at the Annual meeting, Albuquerque, New Mexico 3-8 June, Washington, DC: American Institute for Conservation of Historic and Artistic Works, 1-12.
  18. Strlic, M., Cigic, I. K., Mozir, A., Bruin, G. D., Kolar, J. and Cassar, M., 2011, The effect of volatile organic compounds and hypoxia on paper degradation. Polymer Degradation and Stability, 96, 608-615. https://doi.org/10.1016/j.polymdegradstab.2010.12.017
  19. Te'treault, J., 2003, Airborne Pollutants in Museums, Galleries and Archives : Risk Assessment, Control Strategies, and Preservation Management. Canadian Conservation Institute, Ottawa, 8-32.
  20. The National Folk Musuem of Korea, 2012, website (www.nfm.go.kr), Data info. (in Korean)

피인용 문헌

  1. Damage Characteristics of Korean Traditional Textiles by Acetaldehyde vol.32, pp.3, 2016, https://doi.org/10.12654/JCS.2016.32.3.03