• 제목/요약/키워드: vapors

검색결과 170건 처리시간 0.022초

표면 기능성을 가진 다공성 실리콘의 Fabry-Perot fringe pattern의 변화를 이용한 유기 화합물의 감지 (Detection of Organic Vapors Using Change of Fabry-Perot Fringe Pattern of Surface Functionalized Porous Silicon)

  • 황민우;조성동
    • 통합자연과학논문집
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    • 제3권3호
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    • pp.168-173
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    • 2010
  • Novel porous silicon chip exhibiting dual optical properties, both Frbry-Perot fringe (optical reflectivity) and photoluminescence had been developed and used as chemical sensors. Porous silicon samples were prepared by an electrochemical etch of p-type sillicon wafer (boron-doped, <100> orientation, resistivity 1 - 10 ${\Omega}$). The ething solution was prepared by adding an equal volume of pure ethanol to an aqueous solution of HF (48% by weight). The porous silicon was illuminated with a 300 W tungsten lamp for the duration of etch. Ething was carried out as a two-electrode Kithley 2420 preocedure at an anodic current. The surface of porous silicon was characterized by FT-IR instrument. The porosity of samples was about 80%. Three different types of porous silicon, fresh porous silicon (Si-H termianated), oxidized porous silicon (Si-OH terminated), and surface-derivatized porous silicon (Si-R terminated), were prepared by the thermal oxidation and hydrosilylation. Then the samples were exposed to the wapor of various organics vapors. such as chloroform, hexane, methanol, benzene, isopropanol, and toluene. Both reflectivity and photoluminescence were simultaneously measured under the exposure of organic wapors.

Corrosion of Alumina-Chromia Refractories by Alkali Vapors; II. Experimenal Approach

  • Lee, Kyung-Ho;Jesse . Brown Jr
    • The Korean Journal of Ceramics
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    • 제1권2호
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    • pp.86-90
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    • 1995
  • Theoretical predictions for thermodynamically stable phases which formed when alkali(sodium and potassium) vapors reacted with alumina-chromia refractories under coal gasifying atmosphere were confirmed experimentally using a laboratory-scale coal gasifying reaction system and a commercial alumina-chromia refractory using SEM, XRD, and EDAX. Alkali concentration profiles in the refractory as a function of time were also determined. The results showed that the compounds that formed were $X_2O{\cdot}Al_2O_3, X_2O{\cdot}Cr_2O_3, X_2O{\cdot}5Al_2O_3, X_2O{\cdot}7Al_2O_3, X_2O{\cdot}11Al_2O_3(X=Na^+ \;or\; K^+)$, depending upon the alkali concentration and time of exposure at high temperatures. The presence of sulfur in gasifying atmospheres did not appear to affect the alkali reaction produces. Alkali pentration into the alumina-chromia refractory was deep and the formation of the $Na_2O{\cdot}Al_2O_3/K_2O{\cdot}Al_2O_3$ compunds resulted in the serious deformation of the refractory due to the large volume expansion at the reaction surface. The hot face of the alumina-chromia refractory in service under an alkali environment is prone to failure by alkali attack.

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The ethanol sensors made from α-Fe2O3 decorated with multiwall carbon nanotubes

  • Aroutiounian, Vladimir M.;Arakelyan, Valeri M.;Shahnazaryan, Gohar E.;Aleksanyan, Mikayel S.;Hernadi, Klara;Nemeth, Zoltan;Berki, Peter;Papa, Zsuzsanna;Toth, Zsolt;Forro, Laszlo
    • Advances in nano research
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    • 제3권1호
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    • pp.1-11
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    • 2015
  • Thin film ethanol sensors made from ${\alpha}-Fe_2O_3$ decorated with multiwall carbon nanotubes(MWCNTs) were manufactured by the electron beam deposition method. The morphology of the decorated ${\alpha}-Fe_2O_3$/MWCNTs (25:1 weight ratios) nanocomposite powder was investigated using the scanning electron microscopy and X-ray diffraction techniques. The thickness of thin films has been determined from ellipsometric measurements. The response of manufactured sensors was investigated at different temperatures of the sensor work body and concentration of gas vapors. Good response of prepared sensors to ethanol vapors already at work body temperature of $150^{\circ}C$ was shown.

Yoon과 Nelson의 흡착모델을 이용한 방독마스크 정화통의 수명예측(I) (Prediction of Service Life of a Respirator Cartridge for Organic Solvent by Using Yoon and Nelson's Adsorption Model)

  • 김기환;원정일
    • 한국산업보건학회지
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    • 제18권1호
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    • pp.20-31
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    • 2008
  • A respirator is useful to protect a worker from the harmful gases and vapors in the workplace, and the evaluation of respirator cartridge service life is important for the worker's health and safety. The performance of cartridge is effected by several factors such as concentration of gas and vapor, humidity, temperature, adsorbents and cartridge packing density. Adsorption model was applied to both sampling tube and respirator cartridge to predict the service life for organic vapors. The variables of the adsorption model were measured from the experiment with the sampling tube, and it was used to predict the service life of respirator cartridge. In the experiment, we used carbon tetrachloride as a organic vapor and activated carbon take out respirator cartridge as activated carbon. As a result, it was possible to predict the service life of respirator cartridge and predicted service life was quite correct. Breakthrough time decreased with increase of CCl4 concentration. In case of sampling tube, adsorbed amount of CCl4 was larger than respirator cartridge due to linear velocity. Also, rate constant of sampling tube was larger than respirator cartridge, because of, effect of flow rate, packing density. In the prediction of service life of respirator cartridge by using sampling tube, the time required for 50% contaminant breakthrough(${\tau}$) is more effective than the rate constant(k').

휘발성유기화합물가스에 대한 폴리아닐린 센서의 감도 향상 (Sensitivity Enhancement of Polyaniline Sensor to Volatile Organic Compounds)

  • 유준부;유비;임정옥;변형기;허증수
    • 한국재료학회지
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    • 제17권8호
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    • pp.433-436
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    • 2007
  • Nano-structured polyaniline have been synthesized by interfacial polymerization method at room temperature. An aqueous solution of aniline in chloroform and another solution of ammonium peroxydisulfate in doping acid were prepared at different times terminated with methanol at room temperature. SEM, UV-vis were used to characterize the polyaniline with regard to their morphology and structure. The diameter and length of polyaniline can be controlled by the reaction time. Nano-structured polyaniline were found to have superior sensitivity for volatile organic compounds(VOCs). As the reaction time to increase from 30minute to 2hours the sensitivity were decreased to VOCs vapors. The sensitivity of Nano-structured polyaniline sensor appeared to VOCs better than the sensitivity of chemical synthesis sensors. The sensitivity of Nano-structured polyaniline sensor improved benzene vapors.

다공성 실리콘을 근거한 실리콘 양자점을 이용한 휘발성 알콜 증기의 감지 (Detection of Volatile Alcohol Vapors Using Silicon Quantum Dots Based on Porous Silicon)

  • 조보민;엄성용;진성훈;최태은;양진석;조성동;손홍래
    • 통합자연과학논문집
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    • 제3권2호
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    • pp.117-121
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    • 2010
  • Silicon quantum dots base on photoluminescent porous silicon were prepared from an electrochemical etching of n-type silicon wafer (boron-dopped<100> orientation, resistivity of 1~10 ${\Omega}-cm$) and used as a alcohol sensor. Silicon quantum dots displayed an emission band at the wavelength of 675 nm with an excitation wavelength of 480 nm. Photoluminescence of silicon quantum dots was quenched in the presence of alcohol vapors such as methanol, ethanol, and isopropanol. Quenching efficiencies of 21.5, 32.5, and 45.8% were obtained for isopropanol, ethanol, and methanol, respectively. A linear relationship was obtained between quenching efficiencies and vapor pressure of analytes used. Quenching photoluminescence was recovered upon introducing of fresh air after the detection of alcohol. This provides easy fabrication of alcohol sensor based on porous silicon.

고차단성 자동차 부품용 고무소재 (Elastomeric High Barrier Materials for Vehicle)

  • 김진국
    • Elastomers and Composites
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    • 제46권1호
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    • pp.2-9
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    • 2011
  • 가스와 증기에 대한 투과성(Permeability to gases and Vapors)은 고무 제품을 타이어 튜브나 다이아후램(diaphragm)과 같은 제품으로 사용하고자 할 때 아주 중요한 특성이다. 모든 고무는 가스와 증기에 대하여 투과성이 있다. 그러나 그 투과 속도는 고무 재질에 따라 아주 다르다. 일반적으로 실리콘 고무의 투과성이 제일 크고, 그 다음으로 NR, EPDM, SBR, CR, NBR, FPM, ECO, IIR 순이다. 이러한 투과성은 같은 원료고무를 사용해도 사용 배합약품의 종류에 따라 크게 다를 수도 있다. 고무와 기체와의 메커니즘은 발포고무에 매우 중요하게 되어 이에 대한 연구$^{1-7}$는 많이 이루어졌으나 고무의 차단성에 대한 연구는 그리 많지 않다. 고무소재의 투과성 또는 차단성 기능을 주기위하여 나노복합탄성체$^8$의 기술 동향 및 코팅에 의한 기능성 향상$^{9-13}$을 하거나 열가소성탄성체 본문에서 적용하는 기술이 있는데 자동차에 사용되는 액체 및 기체 차단용 고무부품에 대하여 몇가지 소개하여 본다.

Hexamethyldisiioxane의 플라즈마 중합에 의하여 제조된 복합막을 통한 공기중의 휘발성 유기물질의 분리에 관한 연구 (Separation of VOCs from Air through Composite Membranes Prepared by Plasma Polymerization of Hexamethyldisiioxane)

  • 류동현;오세중;손우익;구자경
    • 한국막학회:학술대회논문집
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    • 한국막학회 1998년도 추계 총회 및 학술발표회
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    • pp.63-65
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    • 1998
  • 1. Introduction : Atmospheric discharge of VOC-contaminated streams in chemical plants and air streams from chemical processes poses a serious environmental problem and entails large financial losses. Such emissions may be reduced by i) adsorption process, ii) absorption process and iii) incineration process. These processes only forbids the air pollutions. Throughout the recent decade, another technique-membrane process has emerged. The separation and recovery of organic vapors by membrane process may have great economic potential. Most of the published research works on the separation of organic vapors from air were performed using silicon rubber membranes. However, it is very difficult to fabricate very thin membranes with less than 1 $u m thickness. Plasma polymerization could be a good technique to generate a thin polymer film. The objective of this work is to find out the optimum condition of plasma polymerization for producing VOC separation membrane. For the objective, composite membranes are prepared through plasma polymerization of hexamethyldisiloxane onto porous substrates under different conditions. The membrane is then subjected to the permeation of permanent gases and VOCs to find the correlations between the physical properties of the penetrant and permeability and selectivity.

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혼합 유기용제 포집시 습도가 활성탄관의 파과에 미치는 영향 (Effect of Relative Humidity on the Breakthrough of Charcoal Tubes during Mixed Organic Vapor Sampling)

  • 양혁승;김현욱
    • 한국산업보건학회지
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    • 제6권1호
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    • pp.125-137
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    • 1996
  • This study was designed to investigate effects of relative humidity on the breakthrough of charcoal tubes at a fixed vapor concentration and sampling time during mixed organic vapor sampling. A vapor generator was used to generate three different concentrations of mixed organic vapor and a stainless steel chamber was fabricated and utilized to maintain three different percentages of relative humidity while maintaining a constant temperature. The results were as follows; 1. At high relative humidity, breakthrough of mixed organic vapor occurred quickly at low vapor concentration than at high vapor concentration because of the reduced adsorption volume of charcoal tube due to humidity. 2. Breakthrough by competitive adsorption of vapors onto charcoal tube was observed at first from n-hexane having the lowest boiling point and highest vapor pressure among the three organic vapors investigated, followed by TCE. No breakthrough was observed from toluene under all experimental conditions. 3. For n-hexane, breakthrough was observed after 2 hours of sampling and breakthrough rates were increased as relative humidity increased. For TCE, breakthrough was found after 3 hours of sampling and breakthrough rates by sampling time were increased as vapor concentration increased. 4. The adsorbed amount of mixed organic vapor at breakthrough was shown to have statistically significant correlations with sampling time, relative humidity, and vapor concentration in descending order of correlation. Relative humidity and sampling time for n-hexane and sampling time and concentration for TCE were both statistically significantly correlated. 5. Relative humidity was found to affect the amount of breakthrough of mixed organic vapor and n-hexane. Among three percentages of relative humidity investigated, the amount of breakthrough at 85 % relative humidity was significantly larger than those of at lower percentages of relative humidity. No statistically significant difference was found between 25 % and 55 % relative humidity. 6. The results of multiple regression analysis between breakthrough and relative humidity, vapor concentrations showed that the coefficient of determination of mixed organic vapor was 0.263 and those of n-hexane and TCE were 0.275 and 0.189, respectively. 7. Flow rates of sampling pumps used were found to be affected by relative humidity present. At 25 %, 55 %, and 85 % relative humidity, the relative errors of sampling pump were 1.4 %, 13.4 %, and 18.6 %, respectively. In conclusion, the results of this study showed that high relative humidity could reduce the adsorption volume of charcoal tubes and subsequently increase breakthrough rates. Therefore, to prevent breakthrough when sampling mixed organic vapors, it is suggested that either sampling volume be reduced on the flow rate be lowered so as to minimize breakthrough of the most volatile organic vapor in the mixture. In addition, since the flow rates of a sampling pump can be adversely affected by high relative humidity, it is recommended to use a constant flow mode pump when sampling in the highly humid environment.

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센서 응답의 Time-Profile 을 이용한 전자 후각 (E-Nose) 시스템의 Vapor 인식 성능 향상 (Improved Vapor Recognition in Electronic Nose (E-Nose) System by Using the Time-Profile of Sensor Array Response)

  • Yoon Seok, Yang
    • 대한의용생체공학회:의공학회지
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    • 제25권5호
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    • pp.329-334
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    • 2004
  • 전자후각(I-nose)시스템은, 전통적으로 음식물이나 플라스틱 제재의 생산에서 자동화된 품질관리 시스템에 사용되어 왔으나, 최근 호흡가스 등을 통해 당뇨, 호흡 및 소화기 질환과 감염 등을 검사하는 진단영역으로 그 응용분야를 확대하고 있다 이러한 질병과 연관이 없는 휘발성 유기화합물(volatile organic compound, YOC) 에 대하여 I-nose 의 센서어래이는 센서 물질과 휘발성 화합물 사이의 반응으로 인해 고유한 반응을 보이며, 신호의 profile 에 그 흔적을 남긴다. 본 연구에서는 센서어래이의 반응 신호를 profile 형태로 유지 및 분석함으로써 I-nose 의 가스시료 인식 성능을 보다 향상시킬 수 있는 방법을 제안하였다. 신호의 profile 에는 패턴인식을 위한 기존의 개별적인 특성(feature) 보다 많은 정보가 들어 있으며, 이를 가스의 구분에 효과적으로 이용하기 위해 디지털 영상처리에서 사용되는 패턴 매칭을 응용한time-profile방법을 새롭게 제안하였다. 제안된 방법의 검증을 위해, 반도체 공정에 의해 제작된 16채널의 초소형 가스센서 어래이를 사용해 측정된 8종류의 각기 다른 가스시료들에 대하여, 동종 및 이종 가스간의 매칭의 정도를 산출하였다. 기존의 방법과 비교한 결과 동종과 이종 가스간의 뚜렷한 구별이 가능하여 이를 패턴인식에 사용하면 E-nose의 가스 인식 성능을 향상시킬 것으로 전망된다.