• 제목/요약/키워드: internal reaction rate

검색결과 195건 처리시간 0.025초

고농도 염화물을 함유하는 혼합시멘트 계에서 철근부식에 따른 미세구조의 변화와 전기화학적 특성 (Microstructure modification and electrochemical properties of steel corrosion in the blended cement systems containing internal chlorides)

  • 나종윤;이승헌;김창은
    • 한국콘크리트학회:학술대회논문집
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    • 한국콘크리트학회 1999년도 학회창립 10주년 기념 1999년도 가을 학술발표회 논문집
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    • pp.131-134
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    • 1999
  • Microstructure modification and electrochemical properties are investigate to estimate the effects of internal chlorides on the steel corrosion in the blended cement systems. According to the test results, slag cement system showed high chloride binding capacity and low corrosion rate. The impedance data showed three distince arcs from lowest(mHz) frequency to highest (MHz) frequency due to product layer, interfacial reaction and bulk matrix. Through the microstructural investigation, fine steel-matrix interface of slag cement system was observed but rough steel-matrix interface of OPC system was observed. Friedel's salt was thought that the substantial material contributed to the chloride binding of slag cement system.

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열복사에 의한 수직연료면의 점화현상 해석 (Ignition of a Vertically Positioned Fuel Plate by Thermal Radiation)

  • 한조영;백승욱
    • 대한기계학회논문집
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    • 제19권9호
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    • pp.2353-2364
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    • 1995
  • The ignition phenomena of a solid fuel plate of polymethyl-methacrylate(PMMA), which is vertically positioned and exposed to a thermal radiation source, is numerically studied here. A two-dimensional transient model includes such various aspects as thermal decomposition of PMMA, gas phase radiation absorption, gas phase chemical reaction and air entrainment by natural convection. Whereas the previous studies considers the problem approximately in a one-dimensional form by neglecting the natural convection, the present model takes account of the two-dimensional effect of radiation and air entrainment. The inert heating of the solid fuel is also taken into consideration. Radiative heat transfer is incorporated by th Discrete Ordinates Method(DOM) with the absorption coefficient evaluated using gas species concentration. The thermal history of the solid fuel plate shows a good agreement compared with experimental results. Despite of induced natural convective flow that induces heat loss from the fuel surface, the locally absorbed radiant energy, which is converted to the internal energy, is found to play an important role in the onset of gas phase ignition. The ignition is considered to occur when the rate of variation of gas phase reaction rate reaches its maximum value. Once the ignition takes place, the flame propagates downward.

고체산화물 연료전지용 $YSZ/La_0.85S_r0.15MnO_3$계 복합전극의 개발 (Development of $YSZ/La_0.85S_r0.15MnO_3$ Composite Electrodes for Solid Oxide Fuel Cells)

  • 윤성필;현상훈;김승구;남석우;홍성안
    • 한국세라믹학회지
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    • 제36권9호
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    • pp.982-990
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    • 1999
  • YSZ/LSM composite cathode was fabricated by dip-coating of YSZ sol on the internal pore surface of a LSM cathode followed by sintering at low temperature (800-100$0^{\circ}C$) The YSZ coating significantly increased the TPB(Triple Phase Boundary) where the gas the electrode and the electrolyte were in contact with each other. Sinter the formation of resistive materials such as La2Zr2O7 or SrZrO3 was prevented due to the low processing temperature and TPB was increased due to the YSZ film coating the electrode resistance (Rel) was reduced about 100 times compared to non-modified cathode. From the analysis of a.c impedance it was shown that microstructural change of the cathode caused by YSZ film coating affected the oxygen reduction reaction. In the case of non-modified cathode the RDS (rate determining step) was electrode reactions rather than mass transfer or the oxygen gas diffusion in the experimental conditions employed in this study ($600^{\circ}C$-100$0^{\circ}C$ and 0,01-1 atm of Po2) for the YSZ film coated cathode however the RDS involved the oxygen diffusion through micropores of YSZ film at high temperature of 950-100$0^{\circ}C$ and low oxygen partial pressure of 0.01-0.03 atm.

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흰쥐의 구속 stress 에 의한 catecholamine 의 변화 (Variation of Catecholamine Content in Rat Vline under the Immo bilization Stress)

  • 김형석
    • 환경위생공학
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    • 제6권2호
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    • pp.59-68
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    • 1991
  • The word of stress was wsed in the field of physics as a external force from 17th century, but the meaning of this stress had chafed to the internal and exteral demand fort the human body in medical area. All the stumulants which make stress was called as j stressor. When animals get stress blucose excreted from liver to adapt for the emergent state ant some related hormone secrete convert protein and lipid to glucose for the purpose of energy supply to muscle. As a results heart rate, blood pressure, respiration rate are increased and musclse are strengthed. These physiolgical reactions ate controlled by autonomic nerve system under the control of hyothalamus in brain. Autonomic nerve system and endocrinary system are react harmoiously to stress reaction. According to the stress reaction, adrenomedullary system are stimulated, and epinephrine, morepinephrine are exceted. Author experimented the effect of the immobilizational stress to rat by analyzing the variaition of catecholamine secrction, the Na concentration and the effect of the antistresf effect by Panax Ginseng which is a traditional Korean herb medicine. The concentration of the norepinephrine, epinephrin, and dopamin in normal rat are 1 578 ng/ml, 0.365 ng/ml, and 0.731 ng/ml respectively, but in the immobilyzed stress groIn the concentration were increased to 1.915 ng.ml, 0.854 ng/ml, and 2,361 ng/ml which she the high show the higher concentration of catecholamine to stressor.

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무-밸브 공기흡입 펄스데토네이션 엔진의 내부 유동과 성능 (Internal Flow Dynamics and Performance of Valveless Airbreathing Pulse Detonation Engine)

  • ;최정열
    • 한국추진공학회:학술대회논문집
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    • 한국추진공학회 2006년도 제26회 춘계학술대회논문집
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    • pp.367-370
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    • 2006
  • This paper deals with the modeling and simulation of the internal flowfield in a valveless airbreathing pulse detonation engine (PDE) currently under experimental development at the U.S. Naval Postgraduate School. The system involves no valves in the airflow path, and the isolation between the inlet and combustor is achieved through the gasdynamics in an isolator. The analysis accommodates the full conservation equations in axisymmetric coordinates, and takes into account variable properties for ethylene/oxygen/air system. Chemical reaction schemes with a single progress variable are implemented to minimize the computational burden. Detailed flow evolution during a full cycle is explored and propulsive performance is calculated. Effect of initiator mass injection rate is examined and results indicate that the mass injection rate should be carefully selected to avoid the formation of recirculation zones in the initial cold flowfield. Flow evolution results demonstrate a successful detonation transmission from the initiator to the combustor. However, strong pressure disturbance may propagate upstream to the inlet nozzle, suggesting the current configuration could be further refined to provide more efficient isolation between the inlet and combustor.

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마황복용 후 사상체질별 이상반응에 관한 임상연구 : 무작위배정 이중맹검시험 (Adverse Effects of Ephedra According to Sasang Typology in Healthy Adults : A Double-Blind Randomized Controlled Trial)

  • 이태호;형례창;양창섭;김락형;서의석;장인수
    • 대한한방내과학회지
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    • 제30권1호
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    • pp.144-152
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    • 2009
  • Background : Ephedra (Ephedra sinica) has been widely used to treat respiratory disease in traditional medicine of East Asia for over a hundred years. Despite safety concerns raised by some, the use of ephedra in traditional medicine is documented over more than 1,800 years. It is well established that ephedra is one of the central medicines in Korean 'Seseng constitution' medicine. In Sasang constitution medicine, all humans can be divided into one of four types: Soeumin, Soyangin, Taeumin or Taeyangin, and each constitution type has their own typical characteristics. Accordingly, it is hypothesized that the adverse effects of ephedra differ depending on the Sasang constitution classification. Objectives : The aim of this study was to determine adverse effects of ephedra which is classified as a Taeumin herb, and to observe whether the response differs or not. according to Sasang constitution classification. Methods : The study design was a double-blind randomized controlled trial. The subjects were healthy adults 20 - 50 years old who agreed to participate in this study. They were allocated through randomization to either ephedra group (N=55) or placebo group (N=24). where ephedra extract (6 g of dried ephedra) and placebo with similar opaque capsules were given twice for one day. To compare the adverse events of ephedra according to Sasang constitution classification, we analyzed blood pressure (systolic and diastolic), pulse rate, the morning questionnaire, and patient's global assessment scale score for well known adverse events: palpitation, headache, sweating, tiredness, dyspepsia, and dry mouth. Results : After ingestion of ephedra, the pulse rate had a significant increase in all constitution types. The changes of diastolic pressure in Soeumin and the changes of pulse rate in Soeumin, Soyangin and Taeumin had a significant increase in the ephedra over the control group. In the ephedra group, the palpitation and dyspepsia score of the patients' global assessment scale had a significant increase in Soeumin, with palpitation and sweating score increasing in Soyangin. Others observations were insignificant results. Conclusion : The results of this study may confirm that the physical responses or adverse effects of herbs differ for each type of Sasang constitution. Future studies using other herbs will be required to ascertain the herbal drug reaction of Sasang constitutions.

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당근 삼투압 건조시 물질 이동과 갈색화 반응에 미치는 효과 (Mass Transfer during Osmotic Dehydration of Carrots and Its Effect on Browning Reaction)

  • 김명환
    • 한국식품과학회지
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    • 제21권2호
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    • pp.307-312
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    • 1989
  • 삼투압 건조중 설탕용액의 농도와 온도 및 침지시간에 따른 내부물질 이동을 당근 내부의 수분손실, 설탕흡수, 몰랄농도 및 속도 매개변수로써 조사하였다. 또한, 삼투압 건조와 데치기가 3% 수분(wet basis)까지 진공건조시 각 공정의 갈색화 반응에 미치는 효과를 평가하였다. 용액 농도와 온도가 증가함에 따라 수분손실, 설탕흡수, 몰랄농도 및 속도 매개변수가 증가하였다. 수분손실과 설탕흡수는 초기 4분간 침지과정에서 빠르게 이루어진 후 증가현상이 둔화되었다. 용액에 따른 설탕 흡수율과 몰랄농도율 변화는 고농도 $(60^{\circ}\;Brix)$보다 저농도$(20^{\circ}\;Brix)$에서 현저하였다. 속도 매개변수, K는 설탕용액의 온도요인 보다 농도에 더 영향이 컸으며, 설탕용액$(60^{\circ}\;Brix,\;80^{\circ}C)$에서 20분간 침지후 55.7%의 수분손실이 되었다. 3% 수분(wet basis)로 진공건조시 갈색화 반응에 대한 삼투압 건조와 데치기의 효과는 현저하였다. 대조구 (O.D.=1.59)와 비교하여 최소 갈색화 반응은 전처리 공정으로써 설탕용액$(40^{\circ}\;Brix,\;80^{\circ}C)$에서 16분간 삼투압 건조 후 진공건조시 O.D.=0.09이었으며, $80^{\circ}C$에서 12분간 브랜칭 후 진공건조시 O.D.=0.31 이었다.

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Fenton 반응과 OCV Holding에 의한 PEMFC 고분자 전해질 막의 열화비교 (Comparison of Membrane Degradation of PEMFC by Fenton Reaction and OCV Holding)

  • 오소형;곽아현;이대웅;이무석;이동훈;박권필
    • Korean Chemical Engineering Research
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    • 제57권6호
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    • pp.768-773
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    • 2019
  • 고분자전해질연료전지(PEMFC)의 고분자막의 전기화학적 내구성을 평가하는 펜톤(Fenton)반응과 개회로전위 유지(OCV Holding)방법에 의한 고분자 막의 열화 결과를 비교하였다. 펜톤 반응은 셀 밖에서 OCV Holding 방법보다 더 짧은 시간에 고분자막의 화학적인 내구를 평가할 수 있는 방법이다. 펜톤 반응은 과산화수소 30%, 철이온 80 ppm, $80^{\circ}C$에서 24시간 실시하였다. OCV Holding은 $90^{\circ}C$, 상대습도 30%, OCV에서 168시간 시간 구동하였다. 펜톤 반응에 의해서는 고분자막의 내부에서 열화가 많이 발생하는 현상을 보였다. 반면에 OCV Holding에서는 표면과 내부 전체적인 열화에 의해 막 두께가 얇아졌다. 펜톤 반응에 의해 불소유출속도는 OCV Holding에 비해 10배 이상 높았다. 수소투과속도는 펜톤 반응 24시간에 약 30% 증가하였다. OCV Holding에서는 24시간에 수소투과도가 감소하였고 이후 증가하는 경향을 보였다. 전체적으로 펜톤 반응과 OCV Holding에 의한 고분자막 열화는 차이가 있었다.

분류층 석탄반응로에서 유동분포가 연소성능에 미치는 영향 (Effect of Flow Distribution on the Combustion Efficiency In an Entrained-Bed Coal Reactor)

  • 조한창;신현동
    • 대한기계학회논문집B
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    • 제23권8호
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    • pp.1022-1030
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    • 1999
  • A numerical study was carried out to analyze the effect of flow distribution of stirred part and plug flow part on combustion efficiency at the coal gasification process in an entrained bed coal reactor. The model of computation was based on gas phase eulerian balance equations of mass and momentum. The solid phase was described by lagrangian equations of motion. The $k-{\varepsilon}$ model was used to calculate the turbulence flow and eddy dissipation model was used to describe the gas phase reaction rate. The radiation was solved using a Monte-Carlo method. One-step parallel two reaction model was employed for the devolatilization process of a high volatile bituminous Kideco coal. The computations agreed well with the experiments, but the flame front was closer to the burner than the measured one. The flow distribution of a stirred part and a plug flow part in a reactor was a function of the magnitude of recirculation zone resulted from the swirl. The combustion efficiency was enhanced with decreasing stirred part and the maximum value was found around S=1.2, having the minimum stirred part. The combustion efficiency resulted from not only the flow distribution but also the particle residence time through the hot reaction zone of the stirred part, in particular for the weak swirl without IRZ(internal recirculation zone) and the long lifted flame.

알칼리 활성화된 고로슬래그 페이스트의 물리화학적 특성 및 이산화탄소 흡수능 평가 (Physicochemical Characteristics and Carbon Dioxide Absorption Capacities of Alkali-activated Blast-furnace Slag Paste)

  • 안해영;박철우;박희문;송지현
    • 한국도로학회논문집
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    • 제17권2호
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    • pp.99-105
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    • 2015
  • PURPOSES: In this study, alkali-activated blast-furnace slag (AABFS) was investigated to determine its capacity to absorb carbon dioxide and to demonstrate the feasibility of its use as an alternative to ordinary Portland cement (OPC). In addition, this study was performed to evaluate the influence of the alkali-activator concentration on the absorption capacity and physicochemical characteristics. METHODS: To determine the characteristics of the AABFS as a function of the activator concentration, blast-furnace slag was activated by using calcium hydroxide at mass ratios ranging from 6 to 24%. The AABFS pastes were used to evaluate the carbon dioxide absorption capacity and rate, while the OPC paste was tested under the same conditions for comparison. The changes in the surface morphology and chemical composition before and after the carbon dioxide absorption were analyzed by using SEM and XRF. RESULTS: At an activator concentration of 24%, the AABFS absorbed approximately 42g of carbon dioxide per mass of paste. Meanwhile, the amount of carbon dioxide absorbed onto the OPC was minimal at the same activator concentration, indicating that the AABFS actively absorbed carbon dioxide as a result of the carbonation reaction on its surface. However, the carbon dioxide absorption capacity and rate decreased as the activator concentration increased, because a high concentration of the activator promoted a hydration reaction and formed a dense internal structure, which was confirmed by SEM analysis. The results of the XRF analyses showed that the CaO ratio increased after the carbon dioxide absorption. CONCLUSIONS : The experimental results confirmed that the AABFS was capable of absorbing large amounts of carbon dioxide, suggesting that it can be used as a dry absorbent for carbon capture and sequestration and as a feasible alternative to OPC. In the formation of AABFS, the activator concentration affected the hydration reaction and changed the surface and internal structure, resulting in changes to the carbon dioxide absorption capacity and rate. Accordingly, the activator ratio should be carefully selected to enhance not only the carbon capture capacity but also the physicochemical characteristics of the geopolymer.