• Title/Summary/Keyword: 변퇴색

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Effect of Storage Conditions on the Color and the Mechanical Properties of Fabrics dyed with Natural Dyes (천연염색 직물의 환경조건에 따른 변.퇴색 및 물성변화에 관한 연구)

  • 이미식;홍문경;김의경;배순화
    • Journal of the Korean Society of Clothing and Textiles
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    • v.25 no.3
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    • pp.617-628
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    • 2001
  • Cotton and silk fabrics dyed with brazilein(Caesalpinia Sappan), berberine (Phellodendron Amurense), and shikonin(Lithospermum Erythrorhizon) were stored in the air, in the water, and under the ground for about one year. The change of the color, the flexibility, and the breaking strength were measured at the intervals of few weeks. The results are as follows; 1. The color of the fabrics changed most extensively in the fabrics that were under the ground, then in the order of the ones that were in the water, and in the air. The color of the fabrics changed to the achromatic color over the time. 2. The flexibility change among the dyes was similar. All the fabrics became stiff under the ground and in the water over the storage time. 3. In general, cotton and silk fabrics dyed with berberine showed better strength retention than the fabrics dyed with other substances. 4. The strength retention of cotton fabrics was high in the order of the fabrics which were in the air, in the water, and under the ground. Only minuscule change occurred in the strength of the cotton fabrics. The strength of the fabrics that were in the water and under the ground decreased remarkably after 30 weeks and 20 weeks respectively. 5. The strength retention of silk fabrics was high in the order of the fabrics which were in the air, under the ground, and in the water. In the air, the strength on silk fabrics decreased rapidly after 30 weeks. In the water, the strength of silk fabrics decreased more rapidly than that of the cotton fabrics. Under the ground, the strength retention of silk was higher than that of cotton.

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Dyeing of Silk Fabric with Aqueous Sorghum Extract (수수 추출물에 의한 견직물의 염색)

  • Lee, Sung-Eun;Bae, Do-Gyu;Jung, Yang-Sook
    • Proceedings of the Korean Society of Dyers and Finishers Conference
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    • 2012.03a
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    • pp.43-43
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    • 2012
  • 본 연구에서는 대량으로 손쉽게 구 할 수 있는 식물염료를 확보하여 새로운 천연색소자원을 탐색하기 위해서 진행되었으며, 시료의 최적 추출 조건을 확립하고 추출된 색소의 실크에 대한 염색 특성을 살펴 최적 염색조건을 설정하고, 염색견뢰도를 평가하여 수수 등겨 추출물의 천연색소로의 활용에 대한 기초 자료를 마련하고자 하였다. 수수 색소 추출 시 생산성과 편리성을 고려하여 추출은 pH 4, 추출온도 $60^{\circ}C$, 추출시간 24시간이 적정조건으로 제시되었으며, 수수 추출물에 함유되어 있는 탄닌의 최대흡수파장은 282nm로 나타났다. 견직물의 pH에 따른 염색 특성은 pH가 증가할수록 K/S값이 증가하여 염착량이 증가하였으며, 염색온도가 높을수록 염색시간이 길어질수록 염착량이 증가하는 경향을 보여주고 있다, 염색온도가 높을수록 염색시간이 경과될수록 색상은 $Y{\rightarrow}YR$로 변화되는 것을 알 수 있었으며 염색온도가 높을수록 채도가 증가하였다. 욕비가 클수록 염착량은 감소하였으나, 채도는 약간 증가하는 것을 알 수 있었다. 매염제 처리에 의한 색상변화에서는 Al, Ni 매염은 색상변화는 적었지만, Cu와 Fe 매염은 명도와 채도를 크게 감소시키고 아울러 색상도 Cu는 적갈색으로 Fe는 진회색으로 변화되었다. Sn과 Ti 매염에 의해서 명도는 약간 감소하고 채도는 약간 상승하여 연한 주황색으로 색상이 변화하였다. 설정된 조건에서 염색된 염색포의 일광견뢰도는 2~3급, 세탁견뢰도 변퇴색은 2~3급, 오염은 4~5급으로 나타났다. Fe로 매염된 염색포의 일광견뢰도는 증가하여 3~4급으로 나타났으며, 매염제 처리에 의한 세탁 견뢰도는 같거나 약간 증가되는 것으로 나타났다.

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The Measurement and Analysis for Ultraviolet Radiation (자외선복사의 측정과 분석)

  • Han, Jong-Sung;Kim, Hong-Bum;Kim, Hoon
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.19 no.2
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    • pp.7-12
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    • 2005
  • When a light is projected upon a material, part of its radiant energy is absorbed and the rest is reflected or transmitted according to the nature of the material. The molecules of the substance absorbing a light obtains the radiant energy to make thermal reactions or photochemical reactions. Specially, photochemical reactions by ultraviolet(UV) radiation brings about photochemical degradation such as color change. Because the photochemical damage brings about a devaluation of material and once damaged, it is irretrievable, it is necessary to minimize the damage and conserve the native quality of a material by a protective lighting system. This paper presents the measurement and photochemical damage for UV radiation from light sources. We measured the optical radiations from artificial light sources and daylight, and we analyzed a functional relation between irradiance and UV radiation form the results.

Scientific Conservation of Seodae of the Chuncheon National Museum (국립춘천박물관 소장 서대(犀帶)의 과학적 보존)

  • Park, Seungwon;Kwon, Heehong;Yu, Heisun;Jo, Kyungmi
    • Conservation Science in Museum
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    • v.11
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    • pp.31-42
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    • 2010
  • Here is an introduction of the conservation and making process of Seodae(Rank Belt with A Rhinoceros' Horn) of the Chuncheon National Museum. The seodae has a structure composed of wrapping fabric around a leather frame and decorated with ttidon(an ornament) made of a rhinoceros' horn and a metal frame. The adhesion between leather was weak and separation was taking place, parts of the horn were missing and the fabric was discoloring. Also the metal frame and the metal wire attaching ttidon were severly corroded. Nondestructive analysis was carried out by using a portable x-ray fluorescence spectroscopy to analyze the components of the metal parts. Conservation was carried out by dismantling parts and carrying out conservation process of each one according to material, then the parts were put back together.

Effects of the Wet Cleaning to the Color Change of the Dyed Fabrics with Natural Dyes (천연염색포의 습식세척에 의한 색상변화)

  • Baek, Young-Mee;Goto-Doshida, Sumiko;Saito, Masako
    • Journal of Conservation Science
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    • v.28 no.1
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    • pp.21-27
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    • 2012
  • In the Chosun period, the noble class usually buried the dead bodies in the lime-covered tomb. Recently their costumes are excavated while maintaining the shape. However, the textiles discovered from the inside have been degradated by a body and moisture. To conserve these textiles one of the most important thing is how to clean these textiles right after the excavation. The purpose of this study is to examine the effects of wet cleaning to minimize the color change of textile remains. For this purpose, silk and cotton were dyed with natural dyes (7 red, 1 blue, 6 yellow, 4 green and 4 purple colors), then they were kept for 6 months with pork meat at $10^{\circ}C$, and were washed by four cleaning solutions (water, anionic surfactant (SDS), non-ionic surfactant (Triton X-100) and natural surfactant (saponin)) at $20^{\circ}C$ and $40^{\circ}C$. The color change was evaluated by color difference (${\Delta}E$) between non-treated and after washed samples. From the results, it was found that the color changes are significantly different depending on the washing temperature, textile material, the cleaning agents and the type of dyes.

Damage Characteristics of Korean Traditional Textiles by Sulfur Dioxide (이산화황에 의한 전통직물의 손상 특성)

  • Kim, Myoung Nam;Lim, Bo A;Shin, Eun Jeong;Lee, Sun Myung
    • Journal of Conservation Science
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    • v.28 no.4
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    • pp.321-328
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    • 2012
  • A $SO_2$ gas acceleration test was carried out on four textile groups (silk, cotton, ramie cloth, hemp cloth) which were categoried in five categories by the dyeing materials (undyed, red, yellow, blue, black) and the relation between the concentration of $SO_2$ and deterioration rate was evaluated. The textiles were exposed to 0.01, 0.12, 1, 10, 100, 1000, and 5000 ppm of $SO_2$ for 24 hours and the optical, physical, and chemical deterioration rates were studied. An optical change was identified as the color difference and grey scale rating (colorfastness) enhanced with the increase of gas concentration while there was little physical change. Chemical damage was caused by the acidification of the textile material due to the trapped sulfate ion concentration. The result of optical, physical, and chemical deterioration rates shows that 1 ppm/day $SO_2$ is a critical level of deterioration of traditional textiles.

A Study on Extraction and Analysis of Red Dyed Fabric (적색 염직물의 색소 추출 방법 및 분석연구)

  • Imn, Se Yeon;Chung, Yong Jae
    • Journal of Conservation Science
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    • v.32 no.3
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    • pp.385-394
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    • 2016
  • A fabric excavated from tombs or passed down is not easy to find its original color as it degrades and discolors by UV and visible rays, oxygen and microorganisms. LC-MS analysis is commonly used for separating and analyzing colors, but color extraction process is complicated and important in dye-qualitative analysis. To extract red colors from a fabric which is dyed with safflower and lac, solvents; hydrogen chloride, pyridine and oxalic acid are used and oxalic acid was the most effective solvent. Meanwhile, dyed samples were put in degradation condition; UV-A for 168 hours and analyzed with LC-MS to find out its colors'chemical changes. As a result, carthamin is detected in $T_R$ 13 min and laccaic acid A is detected in $T_R$ 10 min. However carthamin is not detected in a degraded fabric dying with safflower, it could be identified as a safflower fabric by the molecular weight of m/z 931. Through this study the most optimal method for red color extraction is found so it is expected to be used as a base line data for red color LC-MS analysis.

Effectiveness of an Environment-friendly Fumigator for Microorganisms that Can Cause Biological Damage to Records in Japan, Malaysia, and Oman (일본, 말레이시아, 오만의 기록물에서 분리한 유해미생물에 대한 친환경 기록물 소독장비 효과검증)

  • Kim, Min Ji;Lee, Eon Sook;Choi, Young Nam;Choi, Young Sin
    • Journal of Korean Society of Archives and Records Management
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    • v.15 no.2
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    • pp.165-179
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    • 2015
  • Archives have historical and academic values. That is why the study of preservation conditions and the environment for the effective management of various records progress. However, materials such as paper and adhesives will inevitably cause biological damages. These damages spread into the inner side of archives, which would make it impossible to recover. For example, archival records from Malaysia and Oman are easily exposed to biological damage because of these countries' hot and humid climate. As such, once records are damaged, disinfection operations are customary in these areas. Methyl bromide (MeBr) and ethylene oxide (EtO) were used in the disinfection process as they showed good insecticidal effect. However their antibacterial effect are negligible. As such, the need for an environmental-friendly fumigator was evident. An environmental-friendly fumigator is designed to improve storage stability. Such equipment is expected to contribute to prevention of damages to cultural heritages through its use of vaporization technology, maintenance of a disinfection space (chamber), and self-generation of nitrogen.

Identification of Pigment Separated from Cockle Shell (새조개 연체부위의 색소 동정)

  • 배태진;강동수;최옥수
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.25 no.6
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    • pp.1074-1079
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    • 1996
  • Physicochemical characteristics of pigment separated from cockle shell were studied. Pigment on the cockle shell was peeled with distilled water, and soaked in 4% TCA solution for 30 minutes and filtered. Filtrate was washed 3 times with distilled water and Iyophilized. Dried pigment was dissolved with 2N NaOH solution and preparative TLC with 2N NaOH : acetone(1 : 1). UV/vis spectrum of pigment separated from cockle shell and melanin as standard was same one peak at UV area and λ$_{max}$was 226nm. Dissolved property of pigment was same as that of melanin. Pigment was not ommochrome but like melanin, because it was insoluble in formic acid, whitening in $H_2O_2, $ and pattern of UV-spectrum was same as melanin. Pigment separated from cockle shell was stable at high temperatures. In thermal treatment at $70^{\circ}C, $ $80^{\circ}C, $ $90^{\circ}C$ and $100^{\circ}C$ for 8 hours, retention ratio of pigment separated from cockle shell were 95.0%, 93.3%, 90.8% and 87.6%, respectively.

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ESCA를 이용한 노화된 종이의 표면 변화 특성 관찰

  • 양봉숙;김형진;조병묵;오정수
    • Proceedings of the Korea Technical Association of the Pulp and Paper Industry Conference
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    • 2000.11a
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    • pp.139-139
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    • 2000
  • 종이는 제조 후 시간의 경과에 따라 노화가 야기되기 시작하며 이에 수반되는 현상으로서 종이의 기계적 강도 손실 및 종이의 색 변화를 들 수 있다. 종이의 노화 현상은 주로 빛, 열, 대기 오염물질, 미생물, 곤충 및 화학약품 등의 외부 인자들에 의해 종이 내에서의 가수 분해 또는 산화작용을 발생시키며 이는 종이의 폭넓은 이용올 제한하는 중요한 원인이 되고 있다. 종이의 노화기작은 주로 산 가수분해 및 산화작용 그리고 가교결합 둥으로 해석되고 있다. 이는 종이의 주 구성요소인 셀룰로오스의 수산기가 반웅하여 카르보닐기를 형성하면 서 저분자화 되거나 산소에 의해 산화되면서 저분자화 되어 종이의 강도적 손실이 일어난다 고 보고되고 있으며 종이의 황색화(Yellowing) 현상은 주원인이 종이에 잔존하고 있는 리그 년이 빛과 열에 의해 반응하여 산화됨으로써 야기된다고 설명되고 있다. 즉, 열이나 자외선 및 가시광션의 조사로 인한 셀룰로오스 및 기타 종이 구성물의 산화에 의해 종이가 퇴색되 거나 강도가 저하되는 현상이 일어나게 된다. 특히 이러한 노화 거동은 상온의 경우에서는 펄프와 종이의 황색화가 천천히 일어나지만 옹도가 점차 올라갈수록 그 속도는 빨라진다. 종이가 노화되면서 일어나는 산화반용은 주로 대기 중의 산소와 접촉하기 쉬운 표변에서부 터 발생하기 쉽다. 열처리를 통해 표면에서의 산화 작용은 촉진되고 종이의 구성원소의 결 합에 화학적 변화가 야기된다. 이를 분석하기 위해서 모든 원소가 독특한 결합에너지를 가 지고 있다는 것에 착안 시료 표면에 특정 x-선 및 전자빔을 입사하여 방출하는 광전자의 에너지를 측정함으로써 시료 표면의 조성 및 화학적인 결합상태를 알 수 있는 ESCA ( (Electron Spectroscopy for Chemical Analysis)를 이용하였다 .. ESCA는 주로 표면 원소의 규 명 및 정량분석과 화학결합 상태의 정성, 정량 분석, 깊이에 따른 원소의 농도 분포 분석, 고분자화합물의 특성 조사, 표면 원소의 화학결합에 따른 전자상태 연구 둥에 활용되 고 있 다. 즉, 종이가 노화되면서 원소들 사이에 변화되는 결합을 이러한 에너지 분석에 의해 원소 정성분석 또는 정량분석을 하고자 하였으며, 이를 분석하여 열처리 시 종이 표면에서 일어 나는 변화를 구명하고자 하였다. 이에 따라 본 연구에서는 종이의 노화를 가속화시키는 빛, 대기오염물질, 및 기타 다른 인 자들은 배제하고 열 만을 가해 노화의 진행속도를 높인 후, 노화 진행 시 종이 표변에 일어 나는 산화작용 및 가수분해를 표면 분석 장치인 ESCA를 이용하여 종이의 주 구성원소인 탄소와 산소가 열처리 시 변하는 에너지를 측정하였다. 또한 카르복실기 정량과 종이의 pH 측정 및 X -ray Diffractometer를 이용하여 결정화도를 측정하였다. 본 연구의 결과, 시간의 경과에 따라서 탄소의 결합에너지는 분포가 C-H에서 COO-, 또는 C=O로 달라짐으로써 종 이가 산화되고 있다는 것을 알 수 있었다. 또한 이 결합에너지 분포의 변화가 펄프의 종류 에 따라서 다르게 이동함으로써 제조된 시트의 표면 산화반응이 서로 다르게 일어나고 있음 을 알 수 있었으며, 이는 사용한 펄프의 화학 조성분의 차이에 기인한 것이라 사료된다.

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