• 제목/요약/키워드: Thermal radiation and chemical reaction

검색결과 32건 처리시간 0.027초

나노튜브/화학연료의 동축 구조에서 생성되는 열동력 파도를 이용한 전기 에너지 생성 (Thermopower Wave in Core-Shell Structures of Carbon Nanotube Chemical Fuels)

  • 최원준;마이클 스트라노
    • 대한기계학회논문집B
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    • 제37권6호
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    • pp.615-620
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    • 2013
  • 이전 연구에서 우리는 나노구조와 화학연료의 동축 구조를 제작하여 이를 점화시켰을 때, 축방향으로 매우 빠르게 화학 반응이 전파되며, 이와 동시에 높은 비출력을 가지는 화학-전기 에너지를 생성할 수 있음을 증명하였으며, 이러한 현상을 열동력 파도로 명명하였다. 본 연구에서는 열동력 파도와 관련된 여러가지 물리적인 현상을 심도있게 다루려 한다. 나노구조의 다른 배열 상태에 따라 반응 전파속도, 에너지 생성 정도가 어떻게 달라지는지, 그리고 이와 동시에 발생하는 전기 신호와는 어떤 연관 관계가 있는 지를 연구하였다. 또한 이론적으로 온도 변화에 따라 달라지는 나노튜브와 화학연료의 성질, 대류와 복사에 의한 영향을 고려했을 때 열동력 파도의 전파 양상이 어떻게 달라지는 지를 규명하였다.

방사선 중합에 의한 폴리프로필렌 정밀여과막의 제조 및 친수화 거동에 관한 연구 (A Study on the Preparation and Hydrophilization of Polypropylene Microfiltration Membrane by Radiation-Induced Graft Polymerization)

  • 황택성;이선아;황의환
    • 폴리머
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    • 제24권5호
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    • pp.621-628
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    • 2000
  • 폴리프로필렌 다공성 분리막은 산, 알칼리에 대한 내화학성이 좋고, 기계적 성질이 우수하며 높은 열적 안정성을 가지고 있으나, 막의 소수성 때문에 일부 영역에만 사용이 제한되고 있다. 따라서 본 연구에서는 소수성 막의 성능을 향상시키기 위해서 방사선 조사에 의한 그라프트 중합법을 사용하여, 친수성 작용기 (-COOH, -OH)를 갖는 acrylic acid (AAc)와 2-hydroxyethyl methacrylate (MEMA)를 도입하였다. 이때 반응시간, 반응온도, 조사량, 간의 첨가 효과, 팽윤현상에 의한 그라프트율의 변화를 조사하였다. 분리막의 기공크기를 분석하는 방법으로 행한 가스투과 실험에서 단량체의 종류와 관계없이 그라프트가 증가함에 따라 가스 투과속도가 감소함을 보였고, 오일 에멀젼 투과실험에서 미개질 폴리프로필렌 막의 오염현상은 크게 발생하였으나, 그라프트 중합 후, 높은 투과속도를 유지하여 막의 친수화 효과가 큰 것으로 나타났다.

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화염용융법에 의한 구상 알루미나 제조에 미치는 초기 알루미나 원료의 화학조성과 입도의 영향 (Effects of Chemical Composition and Particle Size of Starting Aluminum Source on the Spheroidization in the Flame Fusion Process)

  • 엄선희;피재환;이종근;황광택;조우석;김경자
    • 한국분말재료학회지
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    • 제16권6호
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    • pp.431-437
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    • 2009
  • Various inorganic fillers improve the thermal conductivity and physical properties of organic products. Alumina has been used a representative filler in the heat radiation sheet for the heat radiation of electric device. The high filling rate of alumina increases the thermal conductivity and properties of products. We successfully developed the spherical alumina by flame fusion process using the oxygen burner with LPG fuel. In the high temperature flame (2500$\sim$3000$^{\circ}C$) of oxygen burner, sprayed powders were melting and then rotated by carrier gas. This surface melting and rotation process made spherical alumina. Especially effects of chemical composition and particle size of stating materials on the melting behavior of starting materials in the flame and spheroidization ratio were investigated. As a result, spheroidization ratio of boehmite and aluminum hydroxide with endothermic reaction of dehydration process was lower than that of the sintered alumina without dehydration reaction.

접시형 고온 태양열 화학 반응기의 열전달 및 수소생산 성능 분석 (Performance Analysis of Heat Transfer Characteristic and Hydrogen Product for Dish Type Solar Chemical Reactor)

  • 양승복;고만석;오상준;서태범
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2009년도 하계학술발표대회 논문집
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    • pp.774-779
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    • 2009
  • The purpose of this research is to develop the high performance of solar chemical reactor for producing hydrogen by methane reforming reaction with steam. Two shape of chemical reactor is suggested: first type is filled with porous material and second type is spiral type. These reactors is installed on the dish-type thermal system of Inha University, Inha Dish-1. Performance analysis of these two reactors is conducted from getting methane conversion.

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Effects of heat and gamma radiation on the degradation behaviour of fluoroelastomer in a simulated severe accident environment

  • Inyoung Song ;Taehyun Lee ;Kyungha Ryu ;Yong Jin Kim ;Myung Sung Kim ;Jong Won Park;Ji Hyun Kim
    • Nuclear Engineering and Technology
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    • 제54권12호
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    • pp.4514-4521
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    • 2022
  • In this study, the effects of heat and radiation on the degradation behaviour of fluoroelastomer under simulated normal operation and a severe accident environment were investigated using sequential testing of gamma irradiation and thermal degradation. Tensile properties and Shore A hardness were measured, and thermogravimetric analysis was used to evaluate the degradation behaviour of fluoroelastomer. Fourier transform infrared spectroscopy and X-ray photoelectron spectroscopy were used to characterize the structural changes of the fluoroelastomer. Heat and radiation generated in nuclear power plant break and deform the chemical bonds, and fluoroelastomer exposed to these environments have decreased C-H and functional groups that contain oxygen and double bonds such as C-O, C=O and C=C were generated. These functional groups were formed by auto oxidation by reacting free radicals generated from the cleaved bond with oxygen in the atmosphere. In this auto oxidation reaction, crosslinks were generated where bonded to each other, and the mobility of molecules was decreased, and as a result, the fluoroelastomer was hardened. This hardening behaviour occurred more significantly in the severe accident environment than in the normal operation condition, and it was found that thermal stability decreased with the generation of unstable structures by crosslinking.

제트 확산화염의 연소특성과 매연생성에 관한 연구 (Combustion Characteristics and Soot Formation in a Jet Diffusion Flame)

  • 이교우;백승욱
    • 대한기계학회논문집
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    • 제18권10호
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    • pp.2712-2723
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    • 1994
  • Numerical simulation of an axisymmetric ethylene-air jet diffusion flame has been carried out in order to investigate flame dynamics and soot formation. The model solves the time-dependent Navier-Stokes equations and includes models for soot formation, chemical reaction, molecular diffusion, thermal conduction, and radiation. Numerically FCT(Flux Corrected Transport) and DOM(Discrete Ordinate Method) methos are used for convection and radiation trasport respectively. Simulation was conducted for a 5 cm/sec fuel jet flowing into a coflowing air stream. The maximum flame temperature was found to be approximately 2100 K, and was located at an axial position of approximately 5 cm from the base of the flame. The maximum soot volume fraction was about $7{\times}10^{-7}$, and was located within the high temperature region where the fuel mole fraction ranges from 0.01 to 0.1. The buoyancy-driven low-frequency(12~13 Hz) structures convected along the outer region of the flame were captured. In case without radiation trasport, the maximum temperature was higher by 150 K than in case with radiation. Also the maximum soot volume fraction reached about $8{\times}10^{-6}$. As the the hydrocarbon fuel forms many soot particles, the radiation transport becomes to play a more important role.

Effect of microwave irradiation on lipase-catalyzed reactions in ionic liquids

  • An, Gwangmin;Kim, Young Min;Koo, Yoon-Mo;Ha, Sung Ho
    • 분석과학
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    • 제30권3호
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    • pp.138-145
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    • 2017
  • Microwave-assisted organic synthesis has gained a remarkable interest over the past years because of its advantages - (i) rapid energy transfer and superheating, (ii) higher yield and rapid reaction, (iii) cleaner reactions. Ionic liquids are well known for their unique properties such as negligible vapor pressure and high thermal stability. With these properties, ionic liquids have gained increasing attention as green, multi-use reaction media. Recently, ionic liquids have been applied as reaction media for biocatalysis. Lipase-catalyzed reactions in ionic liquids provide high activity and yield compared to conventional organic solvents or solvent free system. Since polar molecules are generally good absorbent to microwave radiation, ionic liquids were investigated as reaction media to improve activity and productivity. In this study, therefore, the effect of microwave irradiation in ionic liquids was investigated on lipase catalyzed reactions such as benzyl acetate synthesis and caffeic acid phenethyl ester synthesis. Comparing to conventional heating, microwave heating showed almost the same final conversion but increased initial reaction rate (3.03 mM/min) compared to 2.11 mM/min in conventional heating at $50^{\circ}C$.

다양한 환경에서 감마선으로 조사된 불소고분자 필름들의 구조 및 열적/물성 변화 (Changes in the Chemical Structure and the Thermal/Physical Properties of Fluoropolymer Films Induced by Gamma Irradiation under Various Environments)

  • 최지선;손준용;신준화
    • 폴리머
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    • 제38권4호
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    • pp.457-463
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    • 2014
  • 본 연구에서는 다양한 환경에서 방사선 조사된 불소고분자 필름(PTFE, FEP, PFA, PVDF 및 ETFE)들의 화학 구조 및 물성 변화를 관찰하였다. 방사선은 $Co^{60}$ 감마선을 사용하였으며, 공기 분위기와 질소 분위기 및 진공 상태에서 조사하였다. 방사선 조사된 불소고분자 필름의 FTIR 분석을 통하여 방사선에 의해 생성된 라디칼이 공기 중 산소와 반응하여 산화반응이 진행되었음을 확인하였다. 또한 DSC를 이용하여 방사선 조사에 의해 변화되는 불소고 분자의 용융열 및 결정화도를 관찰하여 고분자 구조에 따른 절단 및 가교반응을 확인하였다. 인장 강도 실험을 통하여 방사선 조사 환경에 따른 불소고분자의 물성 변화를 관찰한 결과 공기 분위기에서 조사된 불소고분자 필름들의 기계적 물성이 현저히 떨어지는 것을 관찰하였다.

Microwave Radiation을 이용하여 제조된 고분자 함침 콘크리트의 물리적 특성 (Physical Properties of Polymer Impregnated Concrete Prepared using Microwave Radiation)

  • 구두현;박정순;박헌영;허명준;이원묵
    • 공업화학
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    • 제19권3호
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    • pp.345-350
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    • 2008
  • 고분자함침콘크리트(PIC)는 물리화학적 물성뿐만 아니라 기계적 강도가 우수한 재료로서 성형된 일반 콘크리트를 변조하여 제조한다. PIC 제조공정은 성형된 공시체의 건조, 단량체의 함침, 중합공정으로 구성된다. PIC 제조공정 중 고분자 중합공정은 지금까지 주로 열 및 수중중합방법을 사용하여 콘크리트 내부의 온도구배가 크고 라디칼 생성이 억제되어 불균일한 중합을 초래하였다. 본 연구에서는 마이크로파를 이용한 중합 반응기를 제작하여 스티렌/메틸메타아크릴레이트(MMA) 1 : 1의 혼합물을 단량체로 사용한 PIC 제조의 중합공정에 사용하였다. 그 결과 열중합보다 매우 균일한 PIC를 제조할 수 있었으며, 30% 이상 중합도가 증가하였고, 공시체보다 기계적 압축강도는 600% ($800{\sim}1200kg_f/cm^2$)까지 증가하였으며, 내산성은 20% 이상 증가하였다. 또한 개시제는 1% 이하로 사용할 수 있었고 중합의 최적 조건은 400 W, 2450 MHz의 radiation 조사로 최적 온도는 $120^{\circ}C$였다.

Theoretical fabrication of Williamson nanoliquid over a stretchable surface

  • Sharif, Humaira;Hussain, Muzamal;Khadimallah, Mohamed Amine;Ayed, Hamdi;Taj, Muhammad;Bhutto, Javed Khan;Mahmoud, S.R.;Iqbal, Zafer;Ahmad, Shabbir;Tounsi, Abdelouahed
    • Advances in concrete construction
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    • 제14권2호
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    • pp.103-113
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    • 2022
  • On the basis of fabrication, the utilization of nano material in numerous industrial and technological system, obtained the utmost significance in current decade. Therefore, the current investigation presents a theoretical disposition regarding the flow of electric conducting Williamson nanoliquid over a stretchable surface in the presence of the motile microorganism. The impact of thermal radiation and magnetic parameter are incorporated in the energy equation. The concentration field is modified by adding the influence of chemical reaction. Moreover, the splendid features of nanofluid are displayed by utilizing the thermophoresis and Brownian motion aspects. Compatible similarity transformation is imposed on the equations governing the problem to derive the dimensionless ordinary differential equations. The Homotopy analysis method has been implemented to find the analytic solution of the obtained differential equations. The implications of specific parameters on profiles of velocity, temperature, concentration and motile microorganism density are investigated graphically. Moreover, coefficient of skin friction, Nusselt number, Sherwood number and density of motile number are clarified in tabular forms. It is revealed that thermal radiation, thermophoresis and Brownian motion parameters are very effective for improvement of heat transfer. The reported investigation can be used in improving the heat transfer appliances and systems of solar energy.