• 제목/요약/키워드: Mixed Gases

검색결과 229건 처리시간 0.026초

고능률 GMAW의 용접성에 미치는 보호가스의 영향 (Effect of Shielding Gases on the Weldability of High Efficient GMAW Process)

  • 한기형;한종만;이민우;이은배;한용섭
    • Journal of Welding and Joining
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    • 제13권1호
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    • pp.127-137
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    • 1995
  • The possibility of new GMAW process using economic shielding gases including CO$_{2}$ gas was investigated on the effect of shielding gas on weldabilty. In the optimum welding condition using 600A power source, FCAW process showed low depositions rate, 114 g/min at 300A, but new GMAW using other mixed shielding gases exhibited high deposition rate, 208-224 g/min at 450A. TIME gas, Ar+CO$_{2}$ gas and Ar+CO$_{2}$+O$_{2}$ gas as a shielding gas were able to be used to the very high welding current(450A), moreover TIME gas and Ar+CO$_{2}$ gas showed the highest arc stability among shielding gases studied in this experiments. The weld penetration was performed by axial spray transfer mode of weld droplet. On the basis of workability, weldability and economic point of view, Ar mixture (80%Ar+20%CO$_{2}$) gas was recommended as a shielding gas for the development and application of new GMAW process. This shielding gas showed the low spatter, good weld quality, stable arc and low cost at the region of high welding current.

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ac-PDP의 전압전달특성에 미치는 방전가스의 영향 (The effects of discharge gases in the voltage transfer curve of ac-PDP)

  • 손진부;이성현;김동현;김영대;조정수;박정후
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 E
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    • pp.2233-2235
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    • 1999
  • The ac plasma display panel(PDP) is a flat light-emitting gas discharge device. Discharge gases directly take effects to the discharge phenomena of ac PDP. Therefore it is necessary to understand the characteristics of the discharge gases. In this paper, we have studied the effects of discharge gases by voltage transfer curves which show the discharge characteristics of ac PDP and the change of the effective wall capacitance during a discharge which depends on lateral spreading of charge distribution and the strength of discharge. As gas pressure increases, memory margins increases. and the firing voltage of a mixed gas is lower than that of a single gas such as He gas. The minimum sustain voltage and the maximum sustain voltage or firing voltage increases with decrease in the frequency. The effective wall capacitance increases as the discharge strength that is, the gap voltage between discharge electrodes increases.

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기체 분리막의 투과 특성 예측 모델식 개발 (Predictive Thermodynamic Model for Gas Permeability of Gas Separation Membrane)

  • 김종환;홍성규;박상진
    • Korean Chemical Engineering Research
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    • 제45권6호
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    • pp.619-626
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    • 2007
  • 막을 이용한 분리 공정은 상(phase) 변화가 없고 낮은 에너지 소비, 장치의 간소화, 큰 선택성, 가공의 용이성, 낮은투자 및 운용비용 등 여러 가지 장점으로 인하여 다른 방법들에 비해 분리가 간단하다는 장점 때문에 여러 분야에서 광범위하게 응용되고 있다. 여러 가지 기체 분리 방법 중 막을 이용한 기체 분리는 막 층 내에서의 기체 분자의 투과성의 차이를 이용하여 기체 분리를 할 수 있다. 이러한 기체 투과 특성을 예측하기 위해서 본 연구에서는 PDMS, ${\gamma}-radiated$ PDMS, PTFE, PTFE-X 기체 분리막을 선택하였다. 네 가지 분리막의 기체 투과 실험의 결과를 이용하여 열역학적으로 고찰, 분석 후 실험데이터의 reduction 및 regression을 통하여 온도, 압력등의 외부 조건과 기체 분자의 열역학적 특성값에 따른 기체 투과특성 예측식을 개발하였다. 이렇게 개발된 예측식으로 구한 값과 실험데이터를 비교하여 객관적 신뢰성을 확인하였다. 이로 인하여 분리막이 분리 조건과 각각의 기체의 열역학적 특성값($\sigma$, $\varepsilon/k$)으로 기체 투과특성을 알 수 있으므로 예측식을 여러 분야에서 활용할 수 있다 하겠다.

메탄-공기 예혼합 선회화염에서 수소첨가와 선회강도 영향에 관한 연구 (A Study on the Effects of Hydrogen Addition and Swirl Intensity in CH4-Air Premixed Swriling Flames)

  • 김한석;조주형;김민국;황정재;이원준
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.593-600
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    • 2019
  • The combustion characteristics of methane/hydrogen pre-mixed flame have been investigated with swirl stabilized flame in a laboratory-scale pre-mixed combustor with constant heat load of 5.81 kW. Hydrogen/methane fuel and air were mixed in a pre-mixer and introduced to the combustor through a burner nozzle with different degrees of swirl angle. The effects of hydrogen addition and swirl intensity on the combustion characteristics of pre-mixed methane flames were examined using particle image velocimetry (PIV), micro-thermocouples, various optical interference filters and gas analyzers to provide information about flow velocity, temperature distributions, and species concentrations of the reaction field. The results show that higher swirl intensity creates more recirculation flow, which reduces the temperature of the reaction zone and, consequently, reduces the thermal NO production. The distributions of flame radicals (OH, CH, C2) are dependent more on the swirl intensity than the percentage of hydrogen added to methane fuel. The NO concentration at the upper part of the reaction zone is increased with an increase in hydrogen content in the fuel mixture because higher combustibility of hydrogen assists to promote faster chemical reaction, enabling more expansion of the gases at the upper part of the reaction zone, which reduces the recirculation flow. The CO concentration in the reaction zone is reduced with an increase in hydrogen content because the amount of C content is relatively decreased.

코크스오븐가스 기반 천연가스, 바이오가스가 혼합된 연료의 가압 수증기 개질 반응에 관한 연구 (Study on the Pressurized Steam Reforming of Natural Gas and Biogas Mixed Cokes Oven Gas)

  • 전형준;한광우;배중면
    • 한국수소및신에너지학회논문집
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    • 제30권2호
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    • pp.111-118
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    • 2019
  • Greenhouse gas emissions have a profound effect on global warming. Various environmental regulations have been introduced to reduce the emissions. The largest amount of greenhouse gases, including carbon dioxide, is produced in the steel industry. To decrease carbon dioxide emission, hydrogen-based iron oxide reduction, which can replace carbon-based reduction has received a great attention. Iron production generates various by-product gases, such as cokes oven gas (COG), blast furnace gas (BFG), and Linz-Donawitz gas (LDG). In particular, COG, due to its high concentrations of hydrogen and methane, can be reformed to become a major source of hydrogen for reducing iron oxide. Nevertheless, continuous COG cannot be supplied under actual operation condition of steel industry. To solve this problem, this study proposed to use two alternative COG-based fuel mixtures; one with natural gas and the other with biogas. Reforming study on two types of mixed gas were carried out to evaluate catalyst performance under a variety of operating conditions. In addition, methane conversion and product composition were investigated both theoretically and experimentally.

천연 망간 광석 탈황제의 재생 반응 특성 연구 (A Study of Regeneration Reaction for Desulfurization Sorbents using Natural Manganese Ore)

  • 윤여일;윤용승;김성현
    • 에너지공학
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    • 제11권3호
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    • pp.247-253
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    • 2002
  • 석탄가스화 복합발전(IGCC)의 가스 정제 부분에 사용 가능한 비아연계 탈황제중 경제성이 우수하며 탈황성능이 우수한 천연망간광석을 탈황제의 활성성분으로 선정하였다. 본 연구에서는 이미 탈황반응이 끝난 망간계 탈황제의 재생반응특성을 열중량 분석기와 고정층 반응기로 350~55$0^{\circ}C$의 중저온 영역에서 실험하였다. 망간계 탈황제를 4%의 산소로 재생할 경우 85$0^{\circ}C$이상에서 재생 반응이 sulfation 생성반응보다 우세하게 되며, 90$0^{\circ}C$ 이상에서 완전재생 반응이 이루어진다. 중저온 영역에서는 망간의 열역학적 특성으로 인하여 sulfation 반응이 우세하게 되므로 망간산화물이 아닌 MnSO$_4$생성반응이 주물질인 반응이 일어나게 된다. 이를 개선하기 위하여 재생 가스의 조성에 암모니아와 수분을 첨가하여 황화합물이 생성되는 부반응을 억제함으로써 기존 연구와 차별성을 두었으며 XRD와 반복 황화 재생 반응에 의한 반응성 변화를 살펴봄으로써 이에 대한 검증을 해보았다.

초저온 냉각 트랩을 결합한 비활성기체 동위원소 희석 질량분석 시스템의 제작 (Development of a Noble Gas Isotope Dilution Mass Spectrometric System Combined with a Cryogenic Cold Trap)

  • 홍봉재;신동엽;박기홍;함도식
    • 한국해양학회지:바다
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    • 제27권3호
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    • pp.144-157
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    • 2022
  • 비활성기체는 화학적, 생물학적 반응을 하지 않는 보존적인 특성을 가지고 있어 해양에서 수온과 염분 변화, 기체 주입, 해수의 혼합과 빙하 융해수의 분포와 같은 물리적인 변화의 추적자로 활용되고 있다. Ne, Ar과 Kr을 정밀하게 분석하기 위해 사중극자 질량 분석기, 고진공 전처리 라인, 초저온 냉각 트랩과 동위원소 표준기체로 구성된 분석 시스템을 제작했다. 고진공 라인은 시료의 용존 기체를 추출하여 동위원소 표준기체와 혼합하는 시료추출부, 합금 물질을 이용하여 반응성 기체를 제거하고 초저온 냉각 트랩으로 비활성기체를 기화점에 따라 분별 증류하는 기체 준비부, 비활성기체를 원소별로 측정하는 기체 측정부로 구성하였다. 기체준비부에 결합한 초저온 냉각 트랩은 질량분석기 내 Ar와 CO2의 부분압을 현저히 낮추어 Ne 동위원소 분석의 오차를 감소시켰다. 동위원소 표준기체는 22Ne, 36Ar과 86Kr를 혼합하여 제작하였고, 혼합 표준 기체의 원소별 양은 대기를 반복 측정하여 역동위원소 희석법으로 결정했다. 대기 평형수 반복 분석의 상대 오차는 Ne, Ar과 Kr에 대해 각각 0.7%, 0.7%, 0.4%이었다. 반복 측정한 대기 평형수의 농도와 포화 농도의 차이로 확인한 분석시스템의 정확도는 Ne, Ar, Kr에 대해 각각 0.5%, 1.0%, 1.7%이었다.

Enhancing Gas Response Characteristics of Mixed Metal Oxide Gas Sensors

  • Balamurugan, Chandran;Song, Sun-Ju;Kim, Ho-Sung
    • 한국세라믹학회지
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    • 제55권1호
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    • pp.1-20
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    • 2018
  • Semiconducting nanomaterials have attracted considerable interest in recent years due to their high sensitivity, selectivity, and fast response time. In addition, for portable applications, they have low power consumption, lightweight, simple in operation, a low maintenance cost. Furthermore, it is easy to manufacture microelectronic sensor structures with metallic oxide sensitive thin layers. The use of semiconducting metal oxides to develop highly sensitive chemiresistive sensing systems remains an important scientific challenge in the field of gas sensing. According to the sensing mechanisms of gas sensors, the overall sensor conductance is determined by surface reactions and the charge transfer processes between the adsorbed species and the sensing material. The primary goal of the present study is to explore the possibility of using semiconducting mixed metal oxide nanostructure as a potential sensor material for selective gases.

H$_2$의 연소한계에 미치는 F$_2$와 CIF$_3$의 영향 (The Effects of CIF$_3$and F$_2$on the Flammability Limit of H$_2$)

  • 이상곤
    • 한국안전학회지
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    • 제9권3호
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    • pp.53-59
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    • 1994
  • Hydrogen(H$_2$) is used in the semiconductor industries, and some oxidizing gases such as fluoride(F$_2$) and chlorine trifluoride(CIF$_3$) are also used. As F$_2$and CIF$_3$are highly oxidizing gases, it were supposed to react vigorously with H$_2$. In this study, the flammability limit of F$_2$/$H_2$/Ar and CIF$_3$/$H_2$/Ar mixtures were investigated experimentally. As a result, it was found that the diluted F$_2$gas could be spontaneously ignited as compared to CIF$_3$mixture gas while being mixed with the diluted H$_2$gas. However, CIF$_3$diluted gas was not able to ignite spontaneously except for an electric spark. And the combustion characteristics and reaction kinetics were shown at the different diluted gases by the flammability diagram analyses between the F$_2$/$H_2$/Ar and CIF$_3$/$H_2$/Ar.

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Effects of a Non-absorbable Gas on the Absorption Process in a Vertical Tube Absorber

  • Hur, ki-Joon;Jeong, Eun-Soo;Jeong, Si-Young
    • International Journal of Air-Conditioning and Refrigeration
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    • 제7권
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    • pp.69-78
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    • 1999
  • Effects of a non-absorbable gas on the absorption process in a vertical tube absorber has been investigated numerically. The water vapor mixed with air is absorbed into LiBr/water solution film. The flow is assumed to be laminar and fully developed in both liquid and gas phases. The diffusion and energy equations were solved in both phases to give the temperature and concentrations, from which heat and mass fluxes were determined. The local absorption rate has been shown to decrease as the mass fraction of air in the water vapor increases. The vapor pressure of water at the liquid-vapor is interface reduced significantly since the non-absorbable gas accumulates near the interface. The effects of non-absorbable gases on absorption rate become larger as the mass flow rate of the vapor decreases. For a small amount of non-absorbable gases, the total absorption rate of water vapor increases as the mass flow rate of the vapor decreases. The total absorption rate increases as the mass flow rate of the vapor increases for large concentrations of non-absorbable gases at the inlet of an absorber.

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