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직물의 β-cyclodextrin 가공에 따른 휘발성 유기성분의 흡착과 제거
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  • 직물의 β-cyclodextrin 가공에 따른 휘발성 유기성분의 흡착과 제거
저자명
정혜원,황나원,김주연,신승엽,Chung. Haewon,Hwang. Nawon,Kim. Joo-Yeon,Shin. Seung-Yeop
간행물명
한국의류학회지
권/호정보
2013년|37권 1호|pp.113-123 (11 pages)
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한국의류학회
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정기간행물|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

Clothes that retain and emanate body odor feel uncomfortable and unclean; subsequently, the adsorption, desorption and removal amounts of malodorous compounds from fabrics with different polarities were examined. 1-Octen-3-one, octanal and isovaleric acid, which are important malodor compounds from the body, were used as volatile organic compounds (VOC). Samples were prepared with unfinished and ${eta}$-CD finished cotton, nylon and PET fabrics. The amounts of VOCs retained on the fabrics were measured using headspace GC-MS; in addition, the odor intensity of the samples were evaluated by 10 trained panelists. The amounts adsorbed were estimated by weight gain; however, moisture was found to have a larger effect on the increase in weight than VOCs. The polarity of the VOCs decreased in the order of isovaleric acid, octanal and 1-octen-3-one. Despite the exceptionally large amounts of octanal adsorbed on the nylon sample, the amounts of malodorous compounds adsorbed on fabrics increased with the decreasing VOC molecular weight. The unfinished PET sample adsorbed more VOCs than the unfinished-fabric samples. The odor intensity was mostly weaker in the ${eta}$-CD finished fabrics than in the unfinished fabrics. The odor intensity of the ${eta}$-CD finished fabrics was lower than unfinished fabrics. The amount of VOCs that remained on the soiled fabric samples after storing in air for 24 hrs decreased with the increasing VOC vapor pressure. Most VOCs were removed by washing; however, more VOCs were left on the ${eta}$-CD finished fabrics than unfinished fabrics. The intensity of the odor from the unfinished PET and ${eta}$-CD finished fabrics was stronger and weaker, respectively, than that of other fabrics, even when the same amounts of VOCs remained.