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이성구,오성천,장재선,Lee, Sung-Gu,Oh, Sung-Cheon,Jang, Jae-Seon 한국식품영양학회 2015 韓國食品營養學會誌 Vol.28 No.3
본 연구에서는 진피의 활용도를 높이기 위한 연구의 일환으로 유기용매별에 따른 생리활성물질의 용출량을 측정하기 위해, 진피와 에탄올 진피 추출물을 대상으로 유기용매인 에틸 아세테이트, 아세톤, 염화 메틸렌, 메탄올을 이용하여 추출한 시료를 대상으로 총 폴리페놀 함량, 전자공여능, glutathione S-transferase(GST)의 활성 저해력을 측정한 결과는 다음과 같다. 1. 총 폴리페놀 함량은 ethyl acetate인 경우 진피는 $928.48{\pm}1.19{\mu}g\;GAE/mL$, 에탄올 추출 진피는 $664.64{\pm}0.74{\mu}g\;GAE/mL$로, acetone인 경우 진피는 $886.03{\pm}0.44{\mu}g\;GAE/mL$, 에탄올 추출 진피는 $702.67{\pm}0.85{\mu}g\;GAE/mL$로, methylene chloride인 경우 진피는 $413.08{\pm}1.39{\mu}g\;GAE/mL$, 에탄올 추출 진피는 $429.64{\pm}0.61{\mu}g\;GAE/mL$로, methanol인 경우 진피는 $12,648.60{\pm}0.56{\mu}g\;GAE/mL$, 에탄올 추출 진피는 $16,108.20{\pm}0.73{\mu}g\;GAE/mL$로 나타나, 진피나 에탄올 추출 진피는 모두 methanol로 추출한 것이 상대적으로 높게 나타났으며, 총 폴리페놀의 함량 차이는 유기용매별 통계적으로 유의한 차이가 나타났다(p<0.05). 2. 전자공여능은 ethyl acetate인 경우 진피는 62.80%, 에탄올 추출 진피는 51.49%로 나타났으며, acetone인 경우 진피는 97.43%, 에탄올 추출 진피는 63.17%로 나타났으며, methylene chloride인 경우 진피는 52.20%, 에탄올 추출 진피는 67.68%로 나타났으며, methanol인 경우 진피는 97.63%, 에탄올 추출 진피는 96.18%로 나타났다. Electron donating ability(EDA)는 유기용매 중 메탄올로 추출하였을 때가 상대적으로 가장 높게 나타났으며, 유기용매별로 통계적으로 유의한 차이가 나타났다(p<0.05). 3. Glutathione S-transferase(GST)에 대한 활성 저해능은 ethyl acetate인 경우 진피는 76.22%, 에탄올 추출 진피는 75.54%로 나타났으며, methylene chloride인 경우 진피는 31.73%, 에탄올 추출 진피는 73.53%로 나타났으며, methanol인 경우 진피는 97.48%, 에탄올 추출 진피는 48.70%로 나타났다. Glutathione S-transferase(GST)에 대한 활성 저해능은 진피인 경우 유기용매 중 메탄올로 추출하였을 때가 가장 높게 나타났고, 에탄올 추출 진피인 경우는 에탄올과 methylene chloride로 추출할 때가 높게 나타났으며, 유기용매별로 통계적으로 유의한 것으로 나타났다(p<0.05). In this study, the total polyphenol content, electron donating ability (EDA) and inhibitory activity of glutathione S-transferase (GST) of freeze-dried Citrus unshiu extracts were examined. The Citrus unshiu extracts was obtained from four solvents such as ethyl acetate, acetone, methyl chloride and methanol, to evaluate its functional properties. Total polyphenol contents were measured in the two different extracts, and the extracts were screened for their potential antioxidant activities using tests such as electron donating ability (EDA), glutathione S-transferase (GST). The total polyphenol contents of Citrus unshiu extracts were $928.48{\pm}1.19{\mu}g\;GAE/mL$ in ethyl acetate (EA), $886.03{\pm}0.44{\mu}g\;RE/mL$ in acetone (AC), $413.08{\pm}1.39{\mu}g\;GAE/mL$ in methylene chloride (MC), $12,648.60{\pm}0.56{\mu}g\;GAE/mL$ in methanol (MeOH), respectively. Also, the total polyphenol contents of EtOH Citrus unshiu extracts were $664.64{\pm}0.74{\mu}g\;GAE/mL$ in EA, $702.67{\pm}0.85{\mu}g\;RE/mL$ in AC, $429.64{\pm}0.61{\mu}g\;GAE/mL$ in MC, $16,108{\pm}0.73{\mu}g\;GAE/mL$ in MeOH, respectively. The total polyphenol contents were significantly difference (p<0.05) between the solvents. The electron donating ability of Citrus unshiu extracts were $62.80{\pm}0.36%$ in EA, $97.43{\pm}0.51%$ in AC, $52.20{\pm}0.30%$ in MC, $97.63{\pm}0.46%$ in MeOH, respectively. Also, the electron donating ability of EtOH Citrus unshiu extracts were $51.49{\pm}0.26%$ in EA, $63.17{\pm}0.31%$ in AC, $67.68{\pm}0.55%$ in MC, $96.18{\pm}0.41%$ in MA, respectively. The electron donating ability were significantly difference (p<0.05) between the solvents. The inhibitory activity of glutathione S-transferase in Citrus unshiu extracts were $76.22{\pm}0.65%$ in EA, $31.73{\pm}0.48%$ in MC, $97.48{\pm}0.56%$ in MeOH, respectively. Also, inhibitory activity of glutathione S-transferase in EtOH Citrus unshiu extracts were $75.54{\pm}0.55%$ in EA, $73.53{\pm}0.38%$ in MC, $48.70{\pm}0.46%$ in MeOH, respectively. The inhibitory activity of glutathione S-transferase were significantly difference (p<0.05) between the solvents. These results indicated that the Citrus unshiu extracts is a high-valued food ingredient and the extraction with methanol will be useful as a nutritional source with natural antioxidant activities. Considering high consumer demand beneficial health effects, Citrus unshiu extracts can be utilized to develop functional food health- promoting and natural antioxidant agents.
이성구(Sung Gu Lee),원성홍(Sung Hong Won),김태형(Tae Heoung Kim),이형우(Hyung Woo Lee),권삼영(Samyoung Kwon),이주(Ju Lee) 대한전기학회 2006 대한전기학회 학술대회 논문집 Vol.2006 No.7
This paper provides the design of propulsion system for the catenary-pantograph run tester. Permanent magnet linear synchronous motor design suitable for an high-speed ground transportation system which need a big acceleration force. The propulsion system of the catenary-pantograph run tester need high speed and big acceleration.
매입형 영구자석 전동기에서 발생하는 3차원 회전자 누설자속에 관한 연구
이성구(Sung Gu Lee),조윤현(Yun-Hyun Cho) 한국자기학회 2021 韓國磁氣學會誌 Vol.31 No.3
In the rotor of the interior permanent magnet synchronous motor (IPMSM), leakage flux that cannot link the coil of the stator among the magnetic flux generated by the permanent magnet (PM). Among the rotor leakage flux generated in the IPMSM, the 2D component passing through the rib can be considered through the 2D finite element analysis (FEA). However, in the rotor leakage flux of an IPMSM, there is a component of a 3D path that cannot be considered by a 2D FEA. This 3D rotor leakage magnetic flux is generated between the rotor core regions separated by PMs, and its path is 3D through air, which is a non-magnetic substance located at the upper and lower ends of the rotor core in the axial direction. In this study, a 3D FEA model with an axial air dummy is proposed to analyze the cause of 3D leakage magnetic flux in a IPMSM and to accurately consider it. Also, how the calculation result of the 3D leakage magnetic flux according to the height of the axial air dummy is affected was analyzed. Finally, the effect of 3D rotor leakage magnetic flux on no-load back electromotive force and cogging torque was confirmed through comparison of 2D FEA and 3D FEA of IPMSM with specific specifications.
SRM의 DC linke 전압리플을 고려한 단일 펄스 구동 방식의 특성 해석
李聖九(Sung-Gu Lee),鄭大成(Dae-Sung Jung),李柱(Ju Lee) 대한전기학회 2008 전기학회논문지 Vol.57 No.11
This paper deals the characteristic analysis of Switched Reluctance Motor(SRM) driven by single-pulse mode considering dc link voltage ripple. Two dimensional time-stepped Finite Element Method(FEM) is used to analyze the characteristic of SRM driven by single-pulse mode with dc link voltage ripple. The analysis results is verified by experimental test.