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Performance Degradation of Dead-end Type PEMFC by Startup and Shutdown Cycles (시동/정지 반복에 의한 데드엔드형 고분자전해질 연료전지의 성능 감소)

  • Jeong, Jaehyeun;Jeong, Jaejin;Song, Myunghyun;Chung, Hoibum;Na, Ilchai;Lee, Ho;Park, Kwonpil
    • Korean Chemical Engineering Research
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    • v.51 no.5
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    • pp.540-544
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    • 2013
  • During start up and shut down of a proton exchange membrane fuel cells (PEMFC), the performance and lifetime of PEMFC were reduced. In this study, effect of startup and shutdown were investigated in dead-end type PEMFC using oxygen as a cathode gas with polarization curve, impedance spectroscopy (EIS), scanning electron microscopy (SEM) and transmission electron microscopy (TEM). Dummy load which eliminates residual hydrogen and oxygen during startup and shutdown operation should be applied to mitigated the degradation of PEMFC performance. At 50% relative humidity (RH) under the repetitive on/off cycling, the cell performance decayed faster than at 100% RH because of corrosion of the cathode carbon support. Water suppling into cell reduced the degradation rate of dead-end type PEMFC during start up and shut down cycling at 50% RH.

Cytotoxicity of newly developed pozzolan cement and other root-end filling materials on human periodontal ligament cell

  • Song, Minju;Yoon, Tae-Sun;Kim, Sue-Youn;Kim, Euiseong
    • Restorative Dentistry and Endodontics
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    • v.39 no.1
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    • pp.39-44
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    • 2014
  • Objectives: The purpose of this study was to evaluate in vitro cytotoxicity of the pozzolan cement and other root-end filling materials using human periodontal ligament cell. Materials and Methods: Endocem (Maruchi), white ProRoot MTA (Dentsply), white Angelus MTA (Angelus), and Super EBA (Bosworth Co.) were tested after set completely in an incubator at $37^{\circ}C$ for 7 days, Endocem was tested in two ways: 1) immediately after mixing (fresh specimens) and 2) after setting completely like other experimental materials. The methods for assessment included light microscopic examination, cell counting and WST-1 assay on human periodontal ligament cell. Results: In the results of microscopic examination and cell counting, Super EBA showed significantly lower viable cell than any other groups (p < 0.05). As the results of WST-1 assay, compared with untreated control group, there was no significant cell viability of the Endocem group. However, the fresh mixed Endocem group had significantly less cell viability. The cells exposed to ProRoot MTA and Angelus MTA showed the highest viability, whereas the cells exposed to Super EBA displayed the lowest viability (p < 0.05). Conclusions: The cytotoxicity of the pozzolan cement (Endocem) was comparable with ProRoot MTA and Angelus MTA. Considering the difficult manipulation and long setting time of ProRoot MTA and Angelus MTA, Endocem can be used as the alternative of retrofilling material.

Soluble expression, purification and the role of C-terminal glycine residues in scorpion toxin BmK AGP-SYPU2

  • Zhang, Rong;Cui, Yong;Zhang, Xi;Yang, Zhuo;Zhao, Yongshan;Song, Yong-Bo;Wu, Chunfu;Zhang, Jinghai
    • BMB Reports
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    • v.43 no.12
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    • pp.801-806
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    • 2010
  • The existence of glycine residues in long-chain scorpion toxins has been well documented. However, their role as analgesics has not been evaluated. To address this issue, we investigated the functional role of glycines in the C-terminal end of Chinese-scorpion toxin from Buthus martensii Karsch (BmK AGP-SYPU2) using site-directed mutagenesis and analgesic activity assays. Recombinant BmK AGP-SYPU2 and its mutants were efficiently expressed in E. coli and purified to homogeneity using immobilized metal ion affinity chromatography (IMAC) and cation exchange chromatography. The mouse-twisting test was used to detect the analgesic activity of BmK AGP-SYPU2 and its mutants. As a result, we identified glycines at the C-terminal end that, when altered, significantly affected analgesic activity. Also, Mut6566 was significantly decreased compared to BmK AGP-SYPU2. These data indicate that the glycines at the C-terminal end are important for the analgesic activity of BmK AGP-SYPU2.

Screening of Herbal Medicines from China and Vietnam with Inhibitory Activity on Advanced Glycation End Products (AGEs) Formation (VIII) (중국.베트남 약용식물의 최종당화산물 생성저해활성 검색(VIII))

  • Choi, So-Jin;Song, Yoo Jin;Kim, Young Sook;Kim, Joo Hwan;Hang, Sun;Tran, The Bach;Kim, Jin Sook
    • Korean Journal of Pharmacognosy
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    • v.43 no.4
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    • pp.338-344
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    • 2012
  • Advanced glycation end products (AGEs) have been postulated to play a central role in the development of diabetic complications. A variety of different agents that inhibit AGEs have been under investigation. In this study, 62 herbal medicines from China and Vietnam have been investigated with an in vitro evaluation system using AGEs formation inhibitory activity. Of these, 5 herbal medicines ($IC_{50}$ < $5{\mu}g/ml$) were found to have significant AGEs formation inhibitory activity. Particularly, herbal medicines Albizia odoratissima (twigs and leaves), Rhododendron spinuliferum (twigs and leaves), Dioscorea cirrhosa (stems and leaves), Illicium verum (stems and leaves) and Aglaia perviridis (stems and leaves), showed more potent inhibitory activity (approximately 16-26 fold) than the positive control aminoguanidine ($IC_{50}=76.47{\mu}g/ml$).

Characteristics Analysis of Linear Induction Motor Considering Airgap variation for Railway Transit (공극변화를 고려한 철도차량용 선형 유도전동기 특성 연구)

  • Lee, Byung-Song;Lee, Hyung-Woo;Park, Chan-Bae;Han, Kyung-Hee;Kwon, Sam-Young;Park, Hyun-June
    • Proceedings of the KSR Conference
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    • 2007.11a
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    • pp.1610-1615
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    • 2007
  • This paper presents a characteristics of linear induction motor considering airgap variation for railway transit in order to achieve high performance of the vehicle. The operating principle of a LIM(Linear induction motor) is identical to a rotary induction motor. Space-time variant magnetic fields are generated by the primary part across the airgap and induce the electro-motive force(EMF) in the secondary part, a conducting sheet. This EMF generates the eddy currents, which interact with the airgap flux and so produce the thrust force known as Loren's force. Even though the operating principal is exactly same as a rotary motor, the linear motor has a finite length of the primary or secondary parts and it causes static and dynamic end-effect which is the discontinuous airgap flux phenomenon. This end-effect causes the deterioration of the system performance, especially in high-speed operation. Another problem is that construction tolerance restricts the minimum airgap in order to prevent a collision between the primary part and the secondary reaction plate. More over, as the airgap length is getting smaller, the attraction force between the primary part and secondary parts is getting larger dramatically and the attraction force would be another friction against propulsion. Therefore, it is necessary to figure out the characteristics of linear induction motor considering airgap variation in order to achieve high performance of the vehicle. The dynamic model of LIM taking into account end-effects is derived. Then the modified mechanical load equation considering the effect of the attraction and thrust force according to the airgap variation is analyzed. The simulation results are presented to show the effect of the LIM according to the airgap variation.

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Thrust Force Characteristics Analysis of Linear Induction Motor Considering Airgap variation for Railway Transit (공극변화를 고려한 철도차량용 선형 유도전동기 특성 연구)

  • Lee, Byung-Song
    • Proceedings of the KSR Conference
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    • 2008.06a
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    • pp.1903-1908
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    • 2008
  • This paper presents a characteristics of linear induction motor considering airgap variation for railway transit in order to achieve high performance of the vehicle. The operating principle of a LIM(Linear induction motor) is identical to a rotary induction motor. Space-time variant magnetic fields are generated by the primary part across the airgap and induce the electro-motive force(EMF) in the secondary part, a conducting sheet. This EMF generates the eddy currents, which interact with the airgap flux and so produce the thrust force known as Loren's force. Even though the operating principal is exactly same as a rotary motor, the linear motor has a finite length of the primary or secondary parts and it causes static and dynamic end-effect which is the discontinuous airgap flux phenomenon. This end-effect causes the deterioration of the system performance, especially in high-speed operation. Another problem is that construction tolerance restricts the minimum airgap in order to prevent a collision between the primary part and the secondary reaction plate. More over, as the airgap length is getting smaller, the attraction force between the primary part and secondary parts is getting larger dramatically and the attraction force would be another friction against propulsion. Therefore, it is necessary to figure out the characteristics of linear induction motor considering airgap variation in order to achieve high performance of the vehicle. The dynamic model of LIM taking into account end-effects is derived. Then the modified mechanical load equation considering the effect of the attraction and thrust force according to the airgap variation is analyzed. The simulation results are presented to show the effect of the LIM according to the airgap variation.

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Screening of Korean Herbal Medicines with Inhibitory Activity on Advanced Glycation End Products Formation (XI) (한국약용식물의 최종당화산물 생성저해활성 검색 (XI))

  • Choi, So Jin;Kim, Young Sook;Song, Yoo Jin;Kim, Joo Hwan;Kim, Jin Sook
    • Korean Journal of Pharmacognosy
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    • v.44 no.4
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    • pp.372-378
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    • 2013
  • In this study, the inhibitory effect on advanced glycation end products (AGEs) formation of 43 Korean herbal medicines has been evaluated. Among them, 16 Korean herbal medicines were showed to have significant effect ($IC_{50}$; <50 ${\mu}g/ml$) compared to positive reference, aminoguandine ($IC_{50}$: $76.47{\pm}4.81{\mu}g/ml$). Especially, five herbal medicines, Rubus coreanus (leaves, $IC_{50}$: $4.49{\pm}0.03{\mu}g/ml$), Rubus coreanus (twigs, $IC_{50}$: $3.80{\pm}0.34{\mu}g/ml$), Ampleopsis brevipedunculata (stems, $IC_{50}$: $7.43{\pm}0.09{\mu}g/ml$), Lindera erythrocarpa (leave, $IC_{50}$: $8.14{\pm}0.20{\mu}g/ml$), and Lindera erythrocarpa (stems, $IC_{50}$: $3.69{\pm}0.14{\mu}g/ml$) showed more potent inhibitory activity (approximately 9-20 fold) than the positive control aminoguanidine.

A comparison on the heat load of HTS current leads with respect to uniform and non-uniform cross-sectional areas

  • Han, Seunghak;Nam, Seokho;Lee, Jeyull;Song, Seunghyun;Jeon, Haeryong;Baek, Geonwoo;Kang, Hyoungku;Ko, Tae Kuk
    • Progress in Superconductivity and Cryogenics
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    • v.19 no.3
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    • pp.44-48
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    • 2017
  • Current lead is a device that connects the power supply and superconducting magnets. High temperature superconductor (HTS) has lower thermal conductivity and higher current density than normal metal. For these reasons, the heat load can be reduced by replacing the normal metal of the current lead with the HTS. Conventional HTS current lead has same cross-sectional area in the axial direction. However, this is over-designed at the cold-end (4.2 K) in terms of current. The heat load can be reduced by reducing this part because the heat load is proportional to the cross-sectional area. Therefore, in this paper, heat load was calculated from the heat diffusion equation of HTS current leads with uniform and non-uniform cross-sectional areas. The cross-sectional area of the warm-end (65K) is designed considering burnout time when cooling system failure occurs. In cold-end, Joule heat and heat load due to current conduction occurs at the same time, so the cross-sectional area where the sum of the two heat is minimum is obtained. As a result of simulation, current leads for KSTAR TF coils with uniform and non-uniform cross-sectional areas were designed, and it was confirmed that the non-uniform cross-sectional areas could further reduce the heat load.

Technology Commercialization Model of Public R&D Based on Living Labs (리빙랩을 활용한 공공연구개발의 사업화 모델 도출)

  • Song, Wichin;Jeong, Seohwa;Han, Kyu-young;Seong, Jieun;Kim, Jongseon
    • Journal of Korea Technology Innovation Society
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    • v.20 no.2
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    • pp.458-486
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    • 2017
  • This article suggests Living Lab approach as a technology commercialization model of public research and development (R&D) projects. Living Lab is a model for end-users, private companies, research institutes, and public organizations to develop technology in a living space which works as a laboratory. Unlike the dominant technology commercialization model which focuses on private enterprises, a new living lab model discusses end-user centered commercialization. Based on general living lab model, three types of technology commercialization model are suggested. The 'Demand exploring type living lab' and the 'Problem solving type living lab' are project-based living lab. The other type of living lab is 'Living lab platform'. The projectbased living lab can be utilized as modules when promoting R&D projects. On the other hand, the living lab platform is infrastructure to provide living labs services to companies, public institutes and municipalities.

Effect of Gongjindan-gamibang on the Pharmacokinetics Profiles of Sorafenib in Male SD Rats (2) - Single Oral Combination Treatment of Sorafenib 50mg/kg with Gongjindan-gamibang 100 mg/kg, 3.5hr-intervals with 7-day Repeated Treatment -

  • Lee, Chang Hyeong;Kim, Seung Mo;Kang, Su Jin;Park, Soo Jin;Song, Chang Hyun;Han, Chang Hyun;Lee, Young Joon;Ku, Sae Kwang
    • Journal of Society of Preventive Korean Medicine
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    • v.19 no.1
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    • pp.145-159
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    • 2015
  • Objective : In the previous study, co-administration of Gongjindan-gamibang (GJD) with sorafenib increased oral bioavailability of sorafenib through augment the absorption, therefore, the effects of GJD co-administration on the pharmacokinetics of sorafenib were observed after single and 7-day repeated oral co-administration with 3.5 hr-intervals in the present study. Method : After 50 mg/kg of sorafenib treatment, GJD 100 mg/kg was administered with 3.5 hr-intervals. The plasma were collected at 30 min before administration, 30 min, 1, 2, 3, 4, 6, 8 and 24 hrs after end of first and last 7th sorafenib treatment, and plasma concentrations of sorafenib were analyzed using LC-MS/MS methods. PK parameters of sorafenib ($T_{max}$, $C_{max}$, AUC, $t_{1/2}$ and $MRT_{inf}$) were analysis as compared with sorafenib single administered rats. Results : GJD markedly inhibited the absorption of sorafenib, from 1 hr to 24 hrs after end of first 3.5 hr-interval co-administration, the $C_{max}$ (-43.27%), $AUC_{0-t}$ (-56.29%) and $AUC_{0-inf}$ (-66.70%) of sorafenib in co-administered rats were dramatically decreased as compared with sorafenib single treated rats. However, GJD significantly increased the absorption of sorafenib, from 4 hr to 8 hrs after end of last 7th 3.5 hr-interval co-administration, the $AUC_{0-t}$ (34.08%) and $AUC_{0-inf}$ (37.31%) of sorafenib in co-administered rats were dramatically increased as compared with sorafenib single treated rats. Conclusion : Although GJD decreased the oral bioavailability of sorafenib through inhibition of gastrointestinal absorptions after end of first 3.5 hr-interval co-administration, it is observed that GJD increases the oral bioavailability of sorafenib as facilitated the absorption after end of last 7th repeated co-administration. Hence, the co-administration of GJD and sorafenib should be avoided in the combination therapy of sorafenib with GJD on anticancer therapy.