• 제목/요약/키워드: Hydrogen ambient

검색결과 165건 처리시간 0.024초

실리콘 나노결정 박막에서 수소 패시베이션 효과 (Effect of hydrogen on the photoluminescence of Silicon nanocrystalline thin films)

  • 전경아;김종훈;김건희;이상렬
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2004년도 하계학술대회 논문집 Vol.5 No.2
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    • pp.1033-1036
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    • 2004
  • Si nanocrystallites thin films on p-type (100) Si substrate have been fabricated by pulsed laser deposition using a Nd:YAG laser. After deposition, samples were annealed at the temperatures of 400 to $800^{\circ}C$. Hydrogen passivation was then performed in the forming gas (95% $N_2$ + 5% $H_2$) for 1 hr. Strong violet-indigo photoluminescence has been observed at room temperature from nitrogen ambient-annealed Si nanocrystallites. The variation of photoluminescence (PL) Properties of Si nanocrystallites thin films has been investigated depending on annealing temperatures with hydrogen passivation. From the results of PL, Fourier transform infrared (FTIR), and high-resolution transmission electron microscopy (HRTEM) measurements, it is observed that the origin of violet-indigo PL from the nanocrystalline silicon in the silicon oxide film is related to the quantum size effect of Si nanocrystallites and oxygen vacancies in the SiOx(x : 1.6-1.8) matrix affects the emission intensity.

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난류강도가 수소 동축분류 난류 확산화염의 NOx 생성에 미치는 영향 (The Effect of Turbulence Intensity on the NOx Formation of Hydrogen Coaxial Jet Turbulent Diffusion Flames)

  • 한지웅;정영식;이창언
    • 대한기계학회논문집B
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    • 제25권2호
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    • pp.147-155
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    • 2001
  • Experimental investigations were conducted for two hydrogen-nitrogen coaxial jet diffusion flames. A flame was a conventional coaxial jet diffusion flame and the other was a coaxial jet diffusion flame of which ambient air-jet turbulence was intensified. In this study, firstly two kinds of NOx measuring system were campared by using different convertors, secondly the NOx formation characteristics were investigated in order to examine the effect of turbulence intensity. In this study it is known that stainless convertor has some problem in the converting process from NO$_2$to NO in fuel rich region but molybdenum convertor can detect the amount of NOx correctly. The increase of turbulence intensity reduces the thermal NOx less than a half in our experiment and this effect is conspicuous near the nozzle. The conversion rate from NO to NO$_2$and the portion of NO$_2$among NOx are increased with turbulence intensity. These NOx measurements will help to understand the influences of turbulence intensity on NOx formation.

Hydrogen Sensing of Graphene-based Chemoresistive Gas Sensor Enabled by Surface Decoration

  • Eom, Tae Hoon;Kim, Taehoon;Jang, Ho Won
    • 센서학회지
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    • 제29권6호
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    • pp.382-387
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    • 2020
  • Hydrogen (H2) is considered as a new clean energy resource for replacing petroleum because it produces only H2O after the combustion process. However, owing to its explosive nature, it is extremely important to detect H2 gas in the ambient atmosphere. This has triggered the development of H2 gas sensors. 2-dimensional (2D) graphene has emerged as one of the most promising candidates for chemical sensors in various industries. In particular, graphene exhibits outstanding potential in chemoresistive gas sensors for the detection of diverse harmful gases and the control of indoor air quality. Graphene-based chemoresistive gas sensors have attracted tremendous attention owing to their promising properties such as room temperature operation, effective gas adsorption, and high flexibility and transparency. Pristine graphene exhibits good sensitivity to NO2 gas at room temperature and relatively low sensitivity to H2 gas. Thus, research to control the selectivity of graphene gas sensors and improve the sensitivity to H2 gas has been performed. Noble metal decoration and metal oxide decoration on the surface of graphene are the most favored approaches for effectively controlling the selectivity of graphene gas sensors. Herein, we introduce several strategies that enhance the sensitivity of graphene gas sensors to H2 gas.

분사조건에 따른 가솔린 직접분사용 다공 분사기에서의 LPG 분무특성 (LPG Spray Characteristics in a Multi-hole Injector for Gasoline Direct Injection)

  • 정진영;오희창;배충식
    • 한국분무공학회지
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    • 제19권1호
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    • pp.1-8
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    • 2014
  • Liquefied petroleum gas (LPG) is regarded as an alternative fuel for spark ignition engine due to similar or even higher octane number. In addition, LPG has better fuel characteristics including high vaporization characteristic and low carbon/hydrogen ratio leading to a reduction in carbon dioxide emission. Recently, development of LPG direct injection system started to improve performance of vehicles fuelled with LPG. However, spray characteristics of LPG were not well understood, which is should be known to develop injector for LPG direct injection engines. In this study, effects of operation condition including ambient pressure, temperature, and injection pressure on spray properties of n-butane were evaluated and compared to gasoline in a multi-hole injector. As general characteristics of both fuels, spray penetration becomes smaller with an increase of ambient pressure as well as a reduction in the injection pressure. However, it is found that evaporation of n-butane was faster compared to gasoline under all experimental condition. As a result, spray penetration of n-butane was shorter than that of gasoline. This result was due to higher vapor pressure and lower boiling point of n-butane. On the other hand, spray angle of both fuels do not vary much except under high ambient temperature conditions. Furthermore, spray shape of n-butane spray becomes completely different from that of gasoline at high ambient temperature conditions due to flash boiling of n-butane.

상온 상압 조건에서 전기화학적 질소환원반응을 통한 암모니아 생산 연구 동향 (Electrochemical Nitrogen Reduction Reaction to Ammonia Production at Ambient Condition)

  • 이동규;심욱
    • 전기화학회지
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    • 제22권1호
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    • pp.1-12
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    • 2019
  • 암모니아 생산은 이전부터 비료, 식량과 관련되어 많은 연구가 이루어져 왔는데, 최근 신재생 에너지에 대한 관심이 커짐에 따라 암모니아 또한 에너지로서 내연기관이나 연료전지로 활용이 기대되어 더 많은 연구가 활발히 이루어 지고 있다. 하지만 암모니아를 생성하기 위해서 하버-보쉬법을 사용하는데, 150-300기압과 $350-550^{\circ}C$ 이상의 높은 압력과 온도가 필요하므로 지구 에너지의 1-2%를 사용할 만큼 암모니아 생산에 많은 에너지가 소모되며, 주로 화석연료가 사용된다. 위와 같은 반응에 사용되는 에너지를 줄임으로 이산화탄소 배출량을 줄여 환경문제에도 대응할 수 있기 때문에 반응온도 및 압력을 줄이는 노력이 필요하다. 본 총설에서는 암모니아를 생산하기 위한 방법 중 특히 상온, 상압에서의 전기화학적 질소환원반응 결과들을 소개한다. 실험 결과뿐만 아니라 밀도범함수 계산을 통하여 전기화학적 질소환원반응 메커니즘 연구가 많이 되었으며, 더 많이 전기화학반응에 참여할 수 있도록 하는, 나노 와이어, 다공성 전극과 같은 나노구조화 전극설계에 대한 다양한 연구 결과들 또한 제시한다.

직접메탄올 연료전지의 운전 조건이 성능에 미치는 영향 (Effects of the Operating Conditions on the Performance of Direct Methanol Fuel Cells)

  • 한창화;김남훈;이중희
    • 한국수소및신에너지학회논문집
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    • 제22권3호
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    • pp.292-298
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    • 2011
  • This study examines the effects of the ambient temperature (AT), methanol feeding temperature (MFT), methanol concentration (MC) and methanol flow rate (MFR) on the performance and cell temperature (CT) of a 5-stacked direct methanol fuel cell (DMFC). The AT, MFT, MC, and MFR are varied from $-10^{\circ}C$ to $+40^{\circ}C$, $50^{\circ}C$ to $90^{\circ}C$, 0.5M to 3.0M and 11.7 mL $min^{-1}$ to 46.8 mL $min^{-1}$, respectively. The performance of the DMFC under various operating conditions is analyzed from the I-V polarization curve, and the methanol crossover is estimated by gas chromatography (GC). The performance of the DMFC improves significantly with increasing AT. The open circuit voltage (OCV) decreases with increasing MC due to the enhanced likelihood of methanol crossover. The cell performance is improved significantly when the MFR is increased from 11.7 mL $min^{-1}$ to 28.08 mL $min^{-1}$. The change in cell performance is marginal with further increases in MFR. The CT increases significantly with increasing AT. The effect of the MFT and MFR is moderate, and the effect of MC is marginal on the CT of the DMFC.

폐타이어 열분해에 의한 카본블랙을 이용한 황화수소와 암모니아 제거를 위한 흡착제 개발 (Development of Adsorbents for Removal of Hydrogen Sulfide and Ammonia Using Carbon Black from Pyrolysis of Waste Tires)

  • 서양곤;김창준;김대혁
    • 청정기술
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    • 제21권2호
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    • pp.108-116
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    • 2015
  • 황화수소와 암모니아는 많은 하수처리장과 산업 플랜트로부터의 배출가스에서 발견되어질 수 있는 가장 흔한 악취성분이다. 이들 유해물질들은 인간에게 건강 문제를 일으키고 촉매에 악영향을 미치기 때문에 생활환경과 산업 현장에서의 제거는 매우 중요하다. 본 연구에서는 황화수소와 암모니아에 대한 우수한 흡착능력을 가지는 흡착제를 개발하기 위하여 폐타이어의 열분해 생성물인 카본블랙을 이용하였다. 카본블랙, 금속산화물과 산 또는 염기를 혼합하여 펠렛형 흡착제를 제조하였고, 상온상압에서 고정층 흡착탑의 파과곡선을 이용하여 황화수소와 암모니아에 대한 흡착성능을 평가하였다. 카본블랙, 산화철(III)과 수산화나트륨 혼합물로 제조된 흡착제가 황화수소에 대한 가장 우수한 작업능력을 나타내었다. 암모니아에 대해서는 카본블랙, 산화구리(II), 염산의 혼합물로 제조된 흡착제가 우수한 작업능력을 보였다.

단롤주조법에 의한 Ti-Nb-Cr 합금의 제조와 수소화 특성 평가 (Evaluation of Hydrogenation Properties on Ti-Nb-Cr Alloys by Single-Roll Melt Spinning)

  • 김경일;홍태환
    • 대한금속재료학회지
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    • 제47권7호
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    • pp.433-439
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    • 2009
  • Ti and Ti based hydrogen storage alloys have been thought to be the third generation of alloys with a high hydrogen capacity, which makes it difficult to handle because of high reactivity. In order to solve the problem, the activation of a wide range of hysteresis of hydriding/dehydriding and without degradation of hydrogen capacity due to the hydriding/dehydriding cycle have to be improved in order to be aplied. Ti-Cr alloys have a high capacity about 0.8 wt.% in an ambient atmosphere. When the Ti-Cr alloys are added to Nb and Ta elements, they formed a laves phase in the alloy system. The Nb element was expected to make easy diffuse hydrogen in the Ti-Cr storage alloy, which was a catalytic element. In this study, the Ti-Nb-Cr ternary alloy was prepared by melt spinning. As-received specimens were characterized using XRD (X-ray Diffraction), SEM (Scanning Electron Microscopy) with EDX (Energy Dispersive X-ray) and TG/DSC (Thermo Gravimetric Analysis/Differential Scanning Calorimetry). In order to examine hydrogenation behavior, the PCI (Pressure-Composition-Isotherm) was performed at 293, 323, 373 and 423 K.

산소공공 농도에 따른 MZO 투명전도성 박막의 구조적 및 전기적 특성 (Effect of the Concentration of Oxygen Vacancies on the Structural and Electrical Characteristics of MZO Thin Films)

  • 이종현;이규만
    • 반도체디스플레이기술학회지
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    • 제22권1호
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    • pp.18-22
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    • 2023
  • We have investigated the effect of the concentration of oxygen vacancies on the characteristics of Mo-doped ZnO (MZO) thin films for the TCO (transparent conducting oxide). For this purpose, MZO thin films were deposited by RF magnetron sputtering at different substrate temperature from room temperature to 300℃. The electrical resistivity of the MZO films decreases with increasing substrate temperature up to 100℃ and then gradually increases at higher temperatures. To investigate the influences of the ambient gases, the flow rate of oxygen and hydrogen in argon was varied from 0.1 sccm to 0.5 sccm. The MZO thin films were preferentially oriented to the (002) direction, regardless of the ambient gases used. The electrical resistivity of the MZO thin films increased with increasing O2 flow rates, whereas the electrical resistivity decreased sharply under an Ar+H2 atmosphere and was nearly the same, regardless of the H2 flow rate used. As the oxygen vacancy concentration increases, the resistivity intended to decrease. In conclusion, Oxygen vacancy affects the MZO thin film's electrical characteristics. All the films showed an average transmittance of over 80% in the visible range.

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스퍼터링을 이용한 바나듐 합금 박막화에 관한 연구 (Characterization of the Vanadium Alloy Thin Films Coated by Sputtering)

  • 윤용호;정지훈
    • Korean Chemical Engineering Research
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    • 제54권5호
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    • pp.598-605
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    • 2016
  • V-Cr-Y 합금은 높은 투과도와 선택도를 가진 수소 분리막 재료이다. V-Cr-Y 분리막의 투과속도를 증가시키기 위하여 sputtering을 이용한 V-Cr-Y 박막을 제조하고 그 특성을 연구하였다. V-Cr-Y 성분이 각각 89.8%, 10.0%, 0.2%인 타겟을 이용하여 실리콘웨이퍼 위에 박막을 증착시켰으며, EDS 분석을 통해 박막조성이 타겟조성과 일치함을 확인하였다. 스퍼터링 온도와 출력이 증가할수록 박막의 성장속도와 결정크기가 증가하였으며, 압력이 감소할수록 결정구조가 보다 미세하고 치밀해졌다. 최적 스퍼터링 조건은 교류 고주파(RF), 2mTorr, 300W, 상온이었으며, 이 조건으로 제조한 박막을 열처리 하여 수소분리에 적합한 박막을 얻을 수 있었다.