• Title/Summary/Keyword: FTIR gas analysis

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A study on combustion gas toxicity of polymeric materials using FTIR gas analysis (FTIR 가스분석에 의한 고분자재료의 연소가스독성 평가)

  • Lee, Doo-Hyung;Kong, Young-Kun
    • Journal of the Korean Society of Hazard Mitigation
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    • v.5 no.4 s.19
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    • pp.79-84
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    • 2005
  • When polymeric materials are exposed to fire condition, a lot of heat and toxic gases evolved and cause damage to property and human being. Especially toxic gases are major hazard to life safety. This study FTIR(Fourier Transform Infrared) spectrometer analysis was performaed to etermine the gas analysis and the concentration of gases evolved from PVC, FRP, SMC and Ureathane foam using ASTM E 1678 fire model. And FED toxicity index calculated from FTIR data also presented. By the comparison of animal test adopted in KS F 2271 and FTIR gas analysis method, FTIR gas analysis method can replace current animal toxicity test and produce precise and quantitative combustion gas data.

Analysis of Catalytic Reaction Characteristics of NGV Exhaust Gas by FTIR Spectroscopy (FTIR법에 의한 천연가스자동차 배기의 촉매반응특성 분석)

  • Choi, B.C.;Kim, Y.K.;Lim, M.T.
    • Transactions of the Korean Society of Automotive Engineers
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    • v.6 no.6
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    • pp.218-225
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    • 1998
  • FTIR spectroscopy, useful technology for simultaneous and continuous measurement of the various components of the automotive exhaust gas, is utilized to investigate catalytic reaction charactristics of methane and a few unregulated exhaust emissions of NGV. Major findings are (1) catalytic reaction characteristics of methane measured in unsteady states of varying temperature are similar to those measured in steady states, (2) about 24 % of NO was oxidized to $NO_2$ as soon as they encounter catalysts, (3) study of formaldehyde suffers from difficulties in measurement due to the proximity in wavenumber of formaldehyde and methane, and requires an analyzer of higher resolution and accuracy than used in this study.

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A Study on the Fire Characterization of Foam block using Cone-calorimeter and FTIR (콘칼로리미터와 적외선분광계(FTIR)를 이용한 폼블럭의 연소특성에 대한 실험적 연구)

  • Han, Bong-Hoon;Seo, Dong-Ho;Kwon, Young-Hee;Min, Se-Hong
    • Fire Science and Engineering
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    • v.31 no.6
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    • pp.23-32
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    • 2017
  • Foam block, popularized as the self-interior goods, is susceptible to fire since the main material is the polyethylene flammable synthetic resin. However, it is widely used in homes, offices, and multi-use facilities. In order to understand the fire characteristics of the foam block, two kinds of foam blocks sold in the market (non-fire retardant and fire retardant) were evaluated according to standard of KS F 5660-1 (Reaction to fire test). In addition, the hazard analysis of the gas generated by the combustion of the specimen was performed using the FTIR gas analyzer. The cone calorimeter test showed that the ignition and flame combustion of both two specimens were burned as soon as the radiant heat blocking device was removed, and it was confirmed that the flame could become a rapid propagation factor during the fire. The analysis of the combustion gas through the FTIR gas analyzer showed that both the carbon dioxide and carbon monoxide classified as the common combustion gases and the acrolein, ammonia, and hydrogen cyanide causing serious damage to the human body were detected substantially. This study showed that a foam block product has high ignitionability and generates toxic gases. Hence, it is urgently required to establish the standards used for properly classifying the combustion characteristics of the material on the basis of the use conditions of a foam block product and to prepare the standards on the purpose of use.

Analysis of sampling noise effect of Interferometer on FTIR Spectrometer (FTIR 분광용 간섭계의 샘플링 잡음 영향 분석)

  • Bae, Hyo-Wook;Park, Do-Hyun;Ra, Sung-Woong;Choi, Seung-Ki
    • Journal of the Institute of Electronics Engineers of Korea SD
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    • v.44 no.4
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    • pp.10-17
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    • 2007
  • FTIR(Fourier Transform Infrared) spectrometry is a useful method to obtain infrared spectra of materials in gas phase by registering the interferogram of a target material using an interferometer, and then performing a Fourier transform on the interferogram to obtain the spectrum. In this paper, sampling noise effect on signal processing of the rapid scan interferometer was studied with relation to sampling the interferogram points at the improper location and empirically verified.

A Study on the Combustion Characteristics of Organic Insulation Materials According to the Gas Toxicity Evaluation Method (가스유해성 평가방법에 따른 유기단열재의 연소특성에 관한 연구)

  • Shim, Ji-Hun;Lee, Jae-Geol;Han, Kyoung-Ho;Kim, Ju-Wan;Song, Seok-Hun;Jo, Hyung-Won;Yoon, Do-Young
    • Korean Chemical Engineering Research
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    • v.60 no.4
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    • pp.519-524
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    • 2022
  • Domestic building finishing materials are being evaluated according to KS F 2271 standards according to the notification of the Ministry of Land, Infrastructure and Transport, and this test is evaluated using laboratory animals. In this study, experiments were conducted on highly combustible organic insulation materials such as EPS, urethane, and phenolic foam. The purpose of this study was to analyze the cause of the behavioral suspension of the experimental mice by measuring the average behavioral suspension time of the mice caused by the harmful gas generated when these three types of insulation materials were burned. FTIR analysis and smoke density experiment were performed as a cause analysis method for the behavioral suspension of mice, and the experimental results were analyzed by dividing the causes of behavioral suspension into suffocation by particulate matter and toxic inhalation by gaseous substances. As a result of the test, urethane was evaluated as the most harmful insulation material, and as a result of FTIR analysis and smoke density test as a cause analysis for the gas toxicity test results, it is judged that the behavioral stop of the rats by suffocation is higher than the effect of toxic inhalation. This study is a basic study on the cause analysis of harmful gases, and it will be necessary to prepare the toxicity basis and analyze various materials and gases.

Thermogravimetric and Fourier Transform Infrared Analysis of Switchgrass Pyrolysis (스위치그라스 열분해에 대한 TGA-FTIR 분석)

  • Lee, Seong-Beom;Fasina, Oladiran O.
    • Journal of Biosystems Engineering
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    • v.34 no.1
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    • pp.44-49
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    • 2009
  • This study was conducted to investigate the pyrolysis characteristics of switchgrass using TGA-FTIR instrument. Switchgrass is a high yielding perennial grass that has been designated as a potential energy crop, because of its high energy value. Ground switchgrass were pyrolysed at different heating rates of 10, 20, 30, and $40^{\circ}C/min$ in a TGA-FTIR instrument. The thermal decomposition characteristics of switchgrass were analyzed, and the gases volatilized during the experiment were identified. The thermal decomposition of switchgrass started at approximately $220^{\circ}C$, followed by a major loss of weight, where the main volatilization occurred, and the thermal decomposition was essentially completed by $430^{\circ}C$. The pyrolysis process was found to compose of four stages; moisture evaporation, hemicellulose decomposition, cellulose decomposition, and lignin degradation. The peak temperatures for hemicellulose decomposition ($306^{\circ}C$ to $327^{\circ}C$) and cellulose decomposition ($351^{\circ}C$ to $369^{\circ}C$) were increased with greater heating rates. FTIR analysis showed that the following gases were released during the pyrolysis of switchgrass; $CO_2$, CO, $CH_4$, $NH_3$, COS, $C_{2}H_{4}$, and some acetic acid. The most gas species were released at low temperature from 310 to $380^{\circ}C$, which was corresponding well with the observation of thermal decomposition.

Development of a New Spectrum Analysis Method of OP-FTIR for Measuring $O_3$ and VOCs in the Ambient (대기 중 오존과 VOCs 측정을 위한 OP-FTIR의 새로운 스펙트럼 분석 방법 개발)

  • 홍대웅;조석연
    • Proceedings of the Korea Air Pollution Research Association Conference
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    • 2003.11a
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    • pp.227-228
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    • 2003
  • 대기 오염에 관한 연구가 진행되면서 광화학반응에 기여도가 높고, 인체에 직, 간접적으로 영향을 미치는 Volatile organic carbons(이하 VOCs)를 측정하는데 많은 연구가 진행되어져 오고 있다. Gas chromatography와 같은 sampling method에 의한 농도 측정 방법은 정확한 농도를 측정 할 수 있다는 장점은 있지만, 대기 중 광화학반응 기작을 연구하는데 있어서 오존과 VOCs를 포함한 화학종들의 공간적, 시간적인 농도 변화를 분석하는데 한계를 가지고 있다. (중략)

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The Effect of Substrate Bias Voltage during the Formation of BN film by R. F. Sputtering Method (RF 스퍼터링법에 의한 BN박막 증착시 기판 바이어스전압의 영향에 관한 연구)

  • 이은국;김도훈
    • Journal of the Korean institute of surface engineering
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    • v.29 no.2
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    • pp.93-99
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    • 1996
  • In this work BN thin films were deposited on Si substrate by R. F. sputtering method at $200^{\circ}C$ and in Ar + $N_2$ mixed gas atmosphere. In order to investigate the effect of ion bombardment on substrate for c-BN bonding, substrate bias voltage was applied. The optimum substrate bias voltage for c-BN bonding was determined by FTIR analysis on specimens which were deposited with various bias voltages. Then BN thin film was deposited with this optimum condition and its phase, morphology, chemical composition, and refractive index were compared with those of BN film which was deposited without bias voltage. FTIR results showed that BN films deposited with substrate bias voltage were composed of mixed phases of c-BN and h-BN, while those deposited without bias voltage were h-BN only. When pure Ar gas was used for sputtering gas, BN films were delaminated easily from substrate in air, while when 10% $N_2$ gas was added to the sputtering gas, although c-BN specific infrared peak was reduced, delamination did not occur. GXRD and TEM results showed that BN films were amorphous phases regardless of substrate bias voltage, and AES results showed that the chemical compositions of B/N were about 1.7~1.8. The refractive index of BN film deposited with bias voltage was higher than that without bias voltage. The reason is believed to be the existence of c-BN bonding in BN film and the higher density of film that deposited with the substrate bias voltage.

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The Study on Characteristics of a-C:H Films Deposited by ECR Plasma (전자회전공명 플라즈마를 이용한 a-C:H 박막의 특성 연구)

  • 김인수;장익훈;손영호
    • Proceedings of the Korea Society for Industrial Systems Conference
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    • 2001.05a
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    • pp.224-231
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    • 2001
  • Hydrogenated amorphous carbon films were deposited by ERC-PECVD with deposition conditions, such as ECR power, gas composition of methane and hydrogen, deposition time, and substrate bias voltage. The characteristics of the film were analyzed using the AES, ERDA, FTIR. Raman spectroscopy and micro hardness tester. From the results of AES and ERDA, the elements in the deposited film were confirmed as carbon and hydrogen atoms. FTIR spectroscopy analysis shows that the atomic bonding structure of a-C:H film consisted of sp³and sp²bonding, most of which is composed of sp³bonding. The structure of the a-C:H films changed from CH₃bonding to CH₂or CH bonding as deposition time increased. We also found that the amount of dehydrogenation in a-C:H films was increased as the bias voltage increased. Raman scattering analysis shows that integrated intensity ratio (I/sub D//I/sub G/) of the D and G peak was increased as the substrate bias voltage increased, and films hardness was increased.

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The Experimental Study for the Smoke Optical Density and Toxic Gases of Sandwich Panel Insulations(Single Chamber Method) (샌드위치패널 단열재의 연기농도 및 연소독성가스에 대한 실험적 연구(연소챔버법))

  • Park, Soo-Young;Lee, Woo-Seok;Yeo, Han-Seung;Im, Hong-Soon
    • Fire Science and Engineering
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    • v.20 no.4 s.64
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    • pp.26-32
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    • 2006
  • Nowadays in Korea, KS F 2271 has been using for the test of fire safety performance of sandwich panels. Smoke toxicity test is the test for the toxicity evaluation of smoke and hazardous gas, caused by combustion of building materials and finishing materials. Smoke toxicity can be evaluated by the mean incapacitation time of mice; however this method is not a quantitative way. This test result can be influenced by the health status of mice and test condition. Specific optical density can be quantitatively measured by ISO 5659-2 single chamber method and toxic gases can be quantitatively measured by FTIR analysis. In this study, specific optical density of sandwich panel insulations, which are widely used in Korea, were tested using the ISO 5659-2 single chamber test method and compared with each test. Also, in the second test of three tests for each specimen, FTIR analysis was performed and quantitative test results(HCl, $NO_2$, etc) were compared with each test result.