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인공열화 시 공기질 및 습도가 밀랍지의 열화에 미치는 영향
양은정,최경화,강영석,조정혜,정혜영,Yang, Eun Jeong,Choi, Kyoung Hwa,Kang, Yeong Seok,Cho, Jung hye,Jeong, Hye Young 국립문화재연구소 2012 保存科學硏究 Vol.33 No.-
제책 시료의 경우 낱장과 달리 제책 위치에 따라 공기, 습도, 빛 등의 접하는 정도가 다르기 때문에 열화특성 또한 제책 위치에 따라 다르다. 특히 밀랍지는 일반적인 한지와는 달리 통기성이 없으며 발수성이 있는 성질을 가지고 있기 때문에 밀랍지로 제작된 제책본의 경우 주위 보존환경과 접하는 부분과, 외부와 접하지 않는 내부에서의 열화 인자 및 기작(mechanism, 機作)의 상이성(相異性)은 일반 서적들에 비해 높다. 따라서 본 연구에서는 밀랍본의 내 외부의 열화 특성의 상이성(相異性)을 분석하기 위해 공기 및 수분의 조건에 따라 밀랍지를 인공열화 시킨 후 각 조건별 열화 특성을 비교 분석하였다. 인공열화 후 밀랍지의 물리적, 광학적 특성 분석 결과, 산소가 밀랍지의 열화를 촉진시키는 것으로 나타났으며, 습도 50 % RH 조건이 0 %RH의 조건보다 밀랍지의 열화에 안정적인 것으로 나타났다. 또한 열화된 시편으로부터 추출된 밀랍의 GC/MS 분석을 실시하여 각 조건에 따른 밀랍의 분해산물을 비교분석한 결과, 열화가 진행됨에 따라 팔미트 산 등의 지방산을 포함하는 C9-C20의 탄소수를 가지는 저분자화합물이 증가되고, 탄화수소화물 및 지방족 알코올 등을 포함하는 C21-C36의 탄소수를 가지는 화합물과 왁스 에스테르 등을 포함하는 C34 이상의 고분자화합물은 감소되어 밀랍성분이 분해되었음을 알 수 있었다. 각 조건에 따른 밀랍의 분해는 물리적, 광학적 특성 변화율과 마찬가지로 산소에 의해 촉진되는 것으로 나타났으며, 습도 50% RH에서보다 0% RH에서 높게 발생되는 것으로 나타났다. A beeswax-treated paper has no air permeability but has the water repellency compared with a general Hanji. Because of these properties, the differences of the aging factors and mechanisms between the outer partition of beeswax-treated paper that is affected by the surrounding conservation environment and the inner partition of it that is not affected are bigger than general books. In this research, we analyzed and compared the aging characteristics through the accelerated aging of the beeswax-treated paper by some air and humidity conditions. The results of the physical and optical analysis after the artificial aging, it was shown that the oxygen accelerates the aging of the beeswax-treated paper and the condition with the humidity 50% RH is more stable than the condition with the humidity 0% RH. The results of the CG/MS analysis that was conducted to figure out the decomposition charateristics of the beeswax according to the air quality and the humidity, a low molecular weight compound that the number of carbon is C9-C20 including a fatty acid such as a palmitic acid was increased as the aging was progressed. However, under the same environment, a compound that the number of carbon is C21-C36 including a hydrocarbon and a aliphatic alcohol and a high molecular weight compound that the number of carbon is more than C34 including a wax ester were decreased. A rate of change according to the air quality and the humidity was similar to the beeswax-treated papers.
열화율이 상이한 밀랍지의 초임계유체추출 탈랍처리효과 비교분석
정혜영(Hye Young Jeong),강영석(Young Suk Kang),고인희(In Hee Go),양은정(Eun Jeong Yang),최경화(Kyoung Hwa Choi) 한국펄프·종이공학회 2014 펄프.종이기술 Vol.46 No.6
This study aims to investigate the applicability of supercritical fluid extraction as a dewaxing technique to restore the beeswax-treated volume of the Annals of the Joseon Dynasty in various deterioration and damage conditions. Thus, this study analyzed the dewaxing efficiency and changes in physical and morphological properties before and after dewaxing, by applying the optimal supercritical fluid extraction dewaxing condition (70℃, 40 MPa, CO₂, Co-solvent 20% DCM, 2 hour) to 3 kinds of beeswax-treated paper with different deterioration rates (dry artificial aging of 10, 20 and 30 days at 120℃). After dry artificial aging at 120℃ for 30 days, the average molecular weight of the beeswax-treated specimen was 1.856×105 g/mol, showing deterioration about 80% of the beeswax-treated paper before dewaxing. It was a similar level to the molecular weight of the bees-waxed volume of the Annals of the Joseon Dynasty that has a higher degree of damage. As a result of analyzing the dewaxing efficiency through FT-IR analysis, this study discovered that it was possible to effectively dewax beeswax-treated paper in the range of deterioration 20 to 80% with this supercritical fluid extraction dewaxing technique applied. As a result of analyzing changes in the physical and morphological properties before and after dewaxing, the viscosity tended to decrease to a slight degree, and since no morphological deformation or damage of stencil fibers was found, it was concluded possible to conduct stable dewaxing through this supercritical fluid extraction technique.