• 제목/요약/키워드: Triple effect

검색결과 355건 처리시간 0.037초

소음인(少陰人) 보중익기탕(補中益氣湯)과 보중익기탕(補中益氣湯)에 대한 사상의학적(四象醫學的) 비교(比較) 연구(硏究) (A Comparative Study on Soumin Bojungyikgitang and Bojungyikgitang in the View of Constitution Medicine)

  • 김일환;김경요
    • 사상체질의학회지
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    • 제8권2호
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    • pp.69-94
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    • 1996
  • The main purpose of this work is comparing the difference between Soumin Bojungyikgitang of constitutional medicine and Li Dongyuan's Bojungyikgitang Bojungyikgitang, the prescription originated from the Pi-Wei theory(脾胃論) of Li Dongyuan who was a medical man in the Jin Yuan dynasty, had been used widely for many kinds of disease caused by the singking of the qi of middle energizer due to the weakness of the spleen and stomach. But in the singking of the qi of middle energizer due to the weakness of the spleen and stomach. But in the end of Choseon dynasty Li Je Ma, the creator of the constitutional medicine, modified the Bojungyikgitang and applied to Soumin's disease. In this paper, the difference between the two prescription were investigated from the viewpoint of chinese herb pharmacology and purpose of prescription. Additionally the problems which could be brought out by applying Bojungyikgitang to the Soyangin and the Taeumin were studied. And the conclusion could be summarized as follows: 1. The prescription of the Li Dongyuan's Bojungyikgitang is based on the deficiency of vital energy due to internal damage and the Soumin Bojungyikgitang is useful to only a certain stage of progressing disease on the basis of Shanghanlun(傷寒論). 2. In the Li Dongyuan's Bojungyikgitang, Cimicifugae Rhizoma and Bupleuri Radix were used for emphasizing the ascending action and have the antipyretic action and the effect of elavating of yangqi as they are bitter in taste and cold in nature. 3. In the Soumin Bojungyikgitang, Pogostemonis Herba and Perillae Folium have the ascending-descending action and strengthen the stomach with the effect of mild sweating by pungent taste and warm nature. 4. The effect of elavating of yangqi in the Li Dongyuan's Bojungyikgitang offers the pathway where vital qi go up by eleminating the pathogenic fire with the action of Cimicifugae Rhizoma and Bupleuri Radix in the triple energizer and yangming muscular striae. On the other hand, the Soumin Bojungyikgitang depends on the effect of reinforcing qi and elavating yangqi by Astrgalli Radix entirely and supply vital qi by reinforcing yangqi with Ginseng Rsdix. 5. The exahausion of yin(亡陰證) in the Soyangin exterior syndrome and cold limbs(寒厥證) in Taeumin exterior syndrome are similar to the indication of Li Dongyuan's Bojungyikgitang. As the causes of the disease are fundamentally different in the view of constitutional medicine, the diseases could be aggravated by applying Li's Bojungyikgitang. These results suggest that Li Dongyuan's Bojungyikgitang is proper to the exterior syndrome of Soumin and Soumin Bojungyikgitang seems to be appropriate to the Soumin's disease.

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A Thermodynamic Investigation into the Stabilization of Poly(dA).[poly(dT)]2 Triple Helical DNA by Various Divalent Metal Ions

  • Choi, Byung-Hoon;Yeo, Ga-Young;Jung, Jin-Ah;Lee, Bae-Wook;Han, Sung-Wook;Cho, Tae-Sub
    • Bulletin of the Korean Chemical Society
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    • 제30권11호
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    • pp.2691-2696
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    • 2009
  • Effects of representative group II and transition metal ions on the stability of the $poly(dA){\cdot}[poly(dT)]_2$ triplex were investigated by the van’t Hoff plot constructed from a thermal melting curve. The transition, $poly(dA){\cdot}[poly(dT)]_2\;{\rightarrow}\;poly(dA){\cdot}poly(dT)\;+\;poly(dT)$, was non-spontaneous with a positive Gibb’s free energy, endothermic (${\Delta}H^{\circ}$ > 0), and had a favorable entropy change (${\Delta}S^{\circ}$ > 0), as seen from the negative slope and positive y-intercept in the van’t Hoff plot. Therefore, the transition is driven by entropy change. The $Mg^{2+}$ ion was the most effective at stabilization of the triplex, with the effect decreasing in the order of $Mg^{2+}\;>\;Ca^{2+}\;>\;Sr^{2+}\;>\;Ba^{2+}$. A similar stabilization effect was found for the duplex to single strand transition: $poly(dA){\cdot}poly(dT)\;+\;poly(dT)\;→\;poly(dA)\;+\;2poly(dT)$, with a larger positive free energy. The transition metal ions, namely $Ni_{2+},\;Cu_{2+},\;and\;Zn_{2+}$, did not exhibit any effect on triplex stabilization, while showing little effect on duplex stabilization. The different effects on triplex stabilization between group II metal ions and the transition metal ions may be attributed to their difference in binding to DNA; transition metals are known to coordinate with DNA components, including phosphate groups, while group II metal ions conceivably bind DNA via electrostatic interactions. The $Cd_{2+}$ ion was an exception, effectively stabilizing the triplex and melting temperature of the third strand dissociation was higher than that observed in the presence of $Mg_{2+}$, even though it is in the same group with $Zn_{2+}$. The detailed behavior of the $Cd_{2+}$ ion is currently under investigation.

Reaction to Popular Pressure or a Political Tool? Different Interpretations of China's Policy Regarding Koizumi's Visits to the Yasukuni Shrine

  • Zakowski, Karol
    • Journal of Contemporary Eastern Asia
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    • 제11권2호
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    • pp.47-60
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    • 2012
  • Sino-Japanese relations suffered a great setback during the premiership of Koizumi $Jun'ichir{\bar{o}}$ (2001-2006). Although many factors, such as dispute over the resources of the East China Sea or Japan's anxiety about China's growing military expenditures, are accountable for this situation, it was Koizumi's visits to the Yasukuni Shrine that became a symbol of the controversies between the two countries. The Yasukuni issue triggered a real eruption of profound anti-Japanese feelings among the Chinese people. While commentators in China accused Koizumi of glorifying militarism and whitewashing the atrocities committed by Japanese soldiers during the Second World War, the Japanese public started perceiving China's "exaggerated" reaction as a convenient diplomatic tool used by China to apply pressure on Japan in other bilateral disputes. On the one hand, spontaneous protests against Koizumi's visits to the Yasukuni Shrine constituted a great constraint in China's diplomacy towards Japan, but on the other, they also became an ideal pretext for adopting a tougher stance in Chinese foreign policy. In this paper, I examine different points of view on the Yasukuni issue. After describing the Japanese background of the visits to the controversial shrine, I analyze various interpretations of China's reaction to the problem. Although emotions dominated discourse on the Yasukuni issue both in Japan and China, some pragmatic attempts to use this problem can still be seen. Besides being a side-effect of Koizumi's strong personality, the Yasukuni issue could be used either as a tool of factional struggle in the Chinese Communist Party (CCP) or as an instrument of Chinese foreign policy towards Japan.

목초액 처리가 인삼 잎 조직 및 지하부 생육에 미치는 영향 (The Effect of Pyroligneous Acid on Leaf Tissue and Root Growth of Ginseng(Panax Ginseng C. A. Meyer))

  • 성봉재;한승호;김선익;김현호;조진웅
    • 한국작물학회지
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    • 제59권1호
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    • pp.97-100
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    • 2014
  • 목초액을 친환경 인삼재배에 이용하기 위하여 전엽기 이후인 6월 중순부터 지상부에 엽면시비로 살포하여 3년생 인삼 잎의 형태적특성과 수량에 미치는 영향을 조사하였다. 목초액을 처리하면 처리농도에 관계없이 해면조직의 배열이 3층에서 4층으로 증가하였다. 또한 인삼 잎의 상표피와 하표피의 두께가 두꺼워지고, 엽육세포도 두꺼워지는 효과를 보였으며 지하부의 생육에도 영향을 미쳐 무처리에 비해 뿌리의 생육이 증진되었으며 인삼 뿌리의 수량도 증가하였다. 따라서 목초액의 혼합사용은 인삼의 생육을 촉진시키고, 병해를 극복하여 인삼을 친환경재배 할 수 있는 대안이 될 것이다.

Institutional Arrangement and Policy Context Underlying Sustainability Actions in the U.S.: Lessons for Asian Regions

  • Hwang, Joungyoon;Song, Minsun;Cho, Seong
    • Journal of Contemporary Eastern Asia
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    • 제19권1호
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    • pp.59-83
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    • 2020
  • This paper examines the actions and the factors driving those actions to reduce energy consumption and enhance energy efficiency taken by United States cities. While not much empirical evidence is available on why governments pursue practical sustainability actions, we attempt to shed more light on this important topic by empirically identifying factors that contribute to concrete actions toward sustainability policies. We adopt political market theory as a basic theoretical framework with policy-making applied to city energy consumption. Using the 2010 ICMA (local government sustainability policies and program) data, this study expands the focus of analyses to evaluate the effect of the form of government on energy consumption and energy efficiency by using multiple regression analysis. The findings show that at the city level, the mayor-council form of government are negatively associated with governments' efforts to reduce energy consumption. However, cities with at-large elections and municipal ownership are more likely to adopt sustainability actions. We also find that a large-scale economy has significant effects on the effort to reduce city energy consumption and improve energy efficiency. This shows that environmental policies are directly connected to locally relevant affairs, including housing, energy use, green transportation, and water. Thus, local level administrators could take an executive role to protect the environment, encourage the development of alternative energy, and reduce the use of fossil fuel and coal energy. These efforts can lead to important environmental ramifications and relevant actions by municipal governments.

Maximizing TPBs through Ni-self-exsolution on GDC based composite anode in solid oxide fuel cells

  • 탄제완;이대희;김보경;김주선;문주호
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.402.1-402.1
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    • 2016
  • The performance of solid oxide fuel cells (SOFCs) is directly related to the electrocatalytic activity of composite electrodes in which triple phase boundaries (TPBs) of metallic catalyst, oxygen ion conducting support, and gas should be three-dimensionally maximized. The distribution morphology of catalytic nanoparticle dispersed on external surfaces is of key importance for maximized TPBs. Herein in situ grown nickel nanoparticle onto the surface of fluorite oxide is demonstrated employing gadolium-nickel co-doped ceria ($Gd0.2-xNixCe0.8O2-{\delta}$, GNDC) by reductive annealing. GNDC powders were synthesized via a Pechini-type sol-gel process while maximum doping ratio of Ni into the cerium oxide was defined by X-ray diffraction. Subsequently, NiO-GNDC composite were screen printed on the both sides of yttrium-stabilized zirconia (YSZ) pellet to fabricate the symmetrical half cells. Electrochemical impedance spectroscopy (EIS) showed that the polarization resistance was decreased when it was compared to conventional Ni-GDC anode and this effect became greater at lower temperature. Ex situ microstructural analysis using scanning electron microscopy after the reductive annealing exhibited the exsolution of Ni nanoparticles on the fluorite phases. The influence of Ni contents in GNDC on polarization characteristics of anodes were examined by EIS under H2/H2O atmosphere. Finally, the addition of optimized GNDC into the anode functional layer (AFL) dramatically enhanced cell performance of anode-supported coin cells.

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Tunable doping sites and the impacts in photocatalysis of W-N codoped anatase TiO2

  • 최희채;신동빈;여병철;송태섭;한상수;박노정;김승철
    • 한국진공학회:학술대회논문집
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    • 한국진공학회 2016년도 제50회 동계 정기학술대회 초록집
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    • pp.246-246
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    • 2016
  • Tungsten-nitrogen (W-N) co-doping has been known to enhance the photocatalytic activity of anatase titania nanoparticles by utilizing visible light. The doping effects are, however, largely dependent on calcination or annealing conditions, and thus, the massive production of quality-controlled photocatalysts still remains a challenge. Using density functional theory (DFT) thermodynamics and time-dependent DFT (TDDFT) computations, we investigate the atomic structures of N doping and W-N co-doping in anatase titania, as well as the effect of the thermal processing conditions. We find that W and N dopants predominantly constitute two complex structures: an N interstitial site near a Ti vacancy in the triple charge state and the simultaneous substitutions of Ti by W and the nearest O by N. The latter case induces highly localized shallow in-gap levels near the conduction band minimum (CBM) and the valence band maximum (VBM), whereas the defect complex yielded deep levels (1.9 eV above the VBM). Electronic structures suggest that substitutions of Ti by W and the nearest O by N improves the photocatalytic activity of anatase by band gap narrowing, while defective structure degrades the activity by an in-gap state-assisted electron-hole recombination, which explains the experimentally observed deep level-related photon absorption. Through the real-time propagation of TDDFT (rtp-TDDFT), we demonstrate that the presence of defective structure attracts excited electrons from the conduction band to a localized in-gap state within a much shorter time than the flat band lifetime of titania. Based on these results, we suggest that calcination under N-rich and O-poor conditions is desirable to eliminate the deep-level states to improve photocatalysis.

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Types and Yields of Carbon Nanotubes Synthesized Depending on Catalyst Pretreatment

  • 고재성;이내성
    • 한국재료학회:학술대회논문집
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    • 한국재료학회 2011년도 추계학술발표대회
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    • pp.17.2-17.2
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    • 2011
  • Double-walled carbon nanotubes (DWCNTs) were grown with vertical alignment on a Si wafer by using catalytic thermal chemical vapor deposition. This study investigated the effect of pre-annealing time of catalyst on the types of CNTs grown on the substrate. The catalyst layer is usually evolved into discretely distributed nanoparticles during the annealing and initial growth of CNTs. The 0.5-nm-thick Fe served as a catalyst, underneath which Al was coated as a catalyst support as well as a diffusion barrier on the Si substrate. Both the catalyst and support layers were coated by using thermal evaporation. CNTs were synthesized for 10 min by flowing 60 sccm of Ar and 60 sccm of H2 as a carrier gas and 20 sccm of C2H2 as a feedstock at 95 torr and $750^{\circ}C$. In this study, the catalyst and support layers were subject to annealing for 0~420 sec. As-grown CNTs were characterized by using field emission scanning electron microscopy, high resolution transmission electron microscopy, Raman spectroscopy, and atomic force microscopy. The annealing for 90~300 sec caused the growth of DWCNTs as high as ~670 ${\mu}m$ for 10 min while below 90 sec and over 420 sec 300~830 ${\mu}m$-thick triple and multiwalled CNTs occurred, respectively. Several radial breathing mode (RBM) peaks in the Raman spectra were observed at the Raman shifts of 112~191 cm-1, implying the presence of DWCNTs, TWCNTs, MWCNTs with the tube diameters 3.4, 4.0, 6.5 nm, respectively. The maximum ratio of DWCNTs was observed to be ~85% at the annealing time of 180 sec. The Raman spectra of the as-grown DWCNTs showed low G/D peak intensity ratios, indicating their low defect concentrations. As increasing the annealing time, the catalyst layer seemed to be granulated, and then grown to particles with larger sizes but fewer numbers by Ostwald ripening.

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역사적 건축물의 에너지 효율 향상을 위한 계획기법 -서양의 연구동향 및 사례를 중심으로- (Technical Measures for Improving Energy Efficiency in Historic Buildings -Focused on Researches and Case Studies of the West-)

  • 김태영
    • 한국농촌건축학회논문집
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    • 제20권1호
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    • pp.69-76
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    • 2018
  • This study is to research technical measures for improving energy efficiency in the conservation and reuse of historic buildings focused on the recent research trends and case studies of the west. These measures are broadly classified into three types, the passive measures for saving energy and increasing comfort, the most cost-effective energy saving strategies, and the renewable energy sources. Firstly, the passive measures are divided into the elements and systems. The passive elements are awnings and overhanging eaves, porches, shutters, storm windows and doors, and shade trees. There are also the natural ventilation systems such as the historic transoms, roofs and attics to improve airflow and cross ventilation to either distribute, or exhaust heat. Secondly, the most cost-effective energy efficiency strategies are the interior insulation, airtightness and moisture protection, and the thermal quality improvement of windows. The energy efficiency solutions of modern buildings are the capillary-active interior insulation, the airtightness and moisture protection of interior walls and openings, and the integration of the original historic window into the triple glazing. Beyond the three actions, the additional strategies are the heat recovery ventilation, and the illumination system. Thirdly, there are photovoltaic(PV) and solar thermal energy, wind energy, hydropower, biomass, and geothermal energy in the renewable energy sources. These energy systems work effectively but it is vital to consider its visual effect on the external appearance of the building.

Surface Discharge Characteristics Study on the Laminated Solid Insulator in Quasi-Uniform Electric Field with Dry Air

  • Min, Gyeong-Jun;Bae, Sungwoo;Kang, Byoung-Chil;Park, Won-Zoo
    • Journal of Electrical Engineering and Technology
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    • 제10권2호
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    • pp.603-609
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    • 2015
  • Dry air is an excellent alternative to $SF_6$ gas and is used as an insulation gas in Eco-friendly Gas Insulated Switchgears (EGISs), which has gained popularity in industry. Solid insulators in EGIS play an important role in electrical insulation. On the other hand, surface discharge can occur easily when solid insulators are used. This paper explored the surface discharge characteristics on the structure of three-layered laminated solid insulators to elevate the flashover voltage. A laminated solid insulator was inserted after the quasi-uniform electric field was formed in the test chamber. Dry air was then injected to set the internal pressure to 1 ~ 6 atm, and the AC voltage was applied. When identical solid insulators were stacked, the surface discharge characteristics were similar to those of a single solid insulator. On the other hand, the flashover voltage rose when the middle part was thicker and had lower permittivity than the top and bottom parts in the laminated solid insulator. Based on experimental results, when stacking a solid insulator in three layers, the middle part of the solid insulator should be at least four times as thick as the top and bottom parts and have lower permittivity than the others. In addition, the flashover voltage increased with increasing gas pressure on the surface of the laminated solid insulator due to the gas effect. This study may allow insulation design engineers to have useful information when using dry air for the insulation gas where the surface discharge can occur.