• 제목/요약/키워드: Autoignition temperatures (AITs)

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가연성 이성분계의 최소자연발화온도 거동(MAITB) (Minimum Autoignition Temperature Behavior(MAITB) of the Flammable Binary Systems)

  • 하동명;이성진
    • 한국안전학회지
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    • 제23권6호
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    • pp.70-75
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    • 2008
  • The values of the AIT(Autoignition temperature) for fire and explosion protection are normally the lowest reported. The minimum autoignition temperature behavior(MAITB) of flammable liquid mixtures is exhibited when the AIT of mixture is below the AIT of the individual components. The MAITB is an interesting experimental features, which can be significant from the perspective of industrial safety. In this study, the AITs of m-xylene+n-butyric acid and ethylbenzene+n-butanol systems were measured using ASTM E659-78 apparatus. The AITs of m-xylene, n-butyric acid, ethylbenzene and n-butanol which constituted two binary systems were $587^{\circ}C$, $510^{\circ}C$, $475^{\circ}C$ and $340^{\circ}C$ respectively. The m-xylene+n-butyric acid system is exhibited MAITB at 0.3 mole fraction of m-xylene, and its minimum autoignition temperature was $460^{\circ}C$.

톨루엔과 2-부탄올 계의 최소자연발화온도의 측정 및 예측 (Prediction and Measurement of Autoignition Temperature of Toluene and 2-Butanol System)

  • 하동명
    • 한국안전학회지
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    • 제30권4호
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    • pp.73-78
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    • 2015
  • The autoignition temperatures(AIT) of solvent mixture is important index for the safe handling of flammable liquids which constitute the solvent mixtures. Therefore, the AITs of common pure chemical substances are widely reported, but very limited data are available for mixtures. This study, the toluene and 2-butnaol system which used mixture solution solvent was measured the AIT and ignition delay time by using ASTM E659 apparatus. The AITs of toluene and 2-butanol constituted binary system were $547^{\circ}C$ and $400^{\circ}C$, respectively. The experimental AIT of toluene and 2-butanol were a good agreement with the calculated AIT by the proposed equations with a few average absolute deviation(A.A.D.).

Trichlorosliane 및 Dichlorosilane-Trichlorosliane 혼합물의 자연발화 특성 (Characteristics of Auto-ignition for Trichlorosliane and Dichlorosilane-Trichlorosliane Mixtures)

  • 하동명
    • 한국가스학회지
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    • 제14권4호
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    • pp.24-30
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    • 2010
  • 최소자연발화온도(AIT, autoignition temperature)의 정확한 정보는 산업화재를 예방하고 제어하는데 중요하다. 본 연구에서는 ASTM E659-78 장치를 이용하여 트리클로로실란 순수물질 그리고 디클로로실란(DCS)과 트리클로로실란(TCS) 혼합물의 AIT를 측정하였다. 트리클로로실란의 AIT는 $225^{\circ}C$로 측정되었으며, TCS(90wt%)-DCS(10wt%) 혼합물은 $250^{\circ}C$, TCS(70wt%)-DCS(30wt%) 혼합물은 각각 $236^{\circ}C$에서 발화가 발생하였다.

노말도데칸의 인화점과 최소발화온도 측정에 의한 연소위험성 고찰 (The Investigation of Combustible Hazard by Measurement of Flash Point and Autoignition Temperature of n-Dodecane)

  • 하동명
    • 한국화재소방학회논문지
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    • 제25권2호
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    • pp.120-125
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    • 2011
  • 노말도데칸의 안전한 취급을 위해서 25에서 폭발한계를 고찰하였고, 하부인화점과 발화지연시간에 의한 발화온도를 측정하였다. 공정의 안전을 위해서 노말도데칸의 폭발하한계는 0.60Vol.%, 상한계는 4.7Vol.%를 추천하였고, 하부인화점은 밀폐계에서 $77^{\circ}C$$80^{\circ}C$와 개방식에서 $84{\sim}87^{\circ}C$로 측정되었다. ASTM E659-78 장치를 사용하여 자연발화온도와 발화지연시간을 측정하였고, 최소자연발화온도는 $222^{\circ}C$ 측정되었다.

노말노난올의 연소특성치 측정에 의한 위험성 평가 (Risk Assessment by Means of Measurement of Combustible Characteristics for n-Nonanol)

  • 하동명
    • 한국화재소방학회논문지
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    • 제26권2호
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    • pp.84-89
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    • 2012
  • 노말노난올의 안전한 취급을 위해, 폭발한계는 문헌을 통해 고찰하였고, 인화점과 발화지연시간에 의한 발화온도를 측정하였다. 그 결과, 노말노난올의 폭발하한계는 0.80 Vol.%, 상한계는 6.1 Vol.%를 추천하였고, 하부인화점은 밀폐계에서 $94{\sim}97^{\circ}C$와 개방식에서 $103{\sim}104^{\circ}C$로 측정되었다. ASTM E659-78 장치를 사용하여 자연발화온도와 발화지연시간을 측정하였고, 노말노난올의 최소자연발화온도는 $270^{\circ}C$로 측정되었다.

오토크레졸의 MSDS 연소특성치의 적정성 연구 (A Study on the Appropriateness of the Combustible Properties of MSDS for o-Cresol)

  • 하동명
    • 한국안전학회지
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    • 제30권2호
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    • pp.21-26
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    • 2015
  • For the safe handling of o-cresol, this study was investigated the explosion limits of o-cresol in the reference data. The flash points and AITs(auto-ignition temperatures) by ignition delay time were experimented. The lower flash points of o-cresol by using closed-cup tester were experimented in $77^{\circ}C$ and $80^{\circ}C$. The lower flash points of o-cresol by using open cup tester were experimented in $86^{\circ}C$ and $87^{\circ}C$. This study measured relationship between the AITs and the ignition delay times by using ASTM E659 tester for o-cresol. The AIT of o-cresol was experimented as $495^{\circ}C$. The lower explosion limit(LEL) by the measured the lower flash point for o-cresol was calculated as 1.27 Vol%.

노말헥산의 연소특성치의 측정 및 고찰 (The Measurement and Investigation of Combustible Properties for n-Hexane)

  • 하동명
    • 한국안전학회지
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    • 제26권2호
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    • pp.36-41
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    • 2011
  • For the safe handling of n-hexane, the explosion limit at $25^{\circ}C$, the temperature dependence of the explosion limits and the lower flash point were investigated. And AITs(auto-ignition temperatures) by ignition delay time for n-hexane were experimented. By using the literatures data, the lower and upper explosion limits of n-hexane recommended 1.0 Vol% and 8.0 Vol%, respectively. In this study, the lower flash points of n-hexane recommended $-23^{\circ}C$. This study measured relationship between the AITs and the ignition delay times by using ASTM E659-78 apparatus for n-hexane, and the experimental AIT of n-hexane was $240^{\circ}C$. The new equations for predicting the temperature dependence of the explosion limits of n-hexane is proposed. The values calculated by the proposed equations were a good agreement with the literature data.

노말트리데칸의 연소특성치의 적정성 고찰 (The Investigation of Compatibility of Combustible Characteristics for n-Tridecane)

  • 하동명
    • 한국안전학회지
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    • 제27권3호
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    • pp.83-88
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    • 2012
  • For the safe handling of n-tridecane, the lower flash points and AITs(auto-ignition temperatures) by ignition delay time were experimented. Also lower explosion limits by the lower flash points were calculated. The lower flash points of n-tridecane by using closed-cup tester were experimented $92^{\circ}C$ and $96^{\circ}C$. The lower flash points and fire point of n-tridecane by using open cup tester were experimented 100 oC and 103 oC, respectively. This study measured relationship between the AITs and the ignition delay times by using ASTM E659 apparatus for n-tridecane. The experimental AIT of n-tridecane was 223 oC. The calculated lower explosion limit by using measured lower flash point 92 oC for n-tridecane was 0.6 Vol.%.

MSDS 적정성을 위한 아세틱안하이드리드의 연소특성치 측정 (The Measurement of Combustible Properties of Acetic Anhydride for the Compatibility of MSDS)

  • 하동명
    • 한국안전학회지
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    • 제29권4호
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    • pp.85-90
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    • 2014
  • For the safe handling of acetic anhydride, this study was investigated the explosion limits of acetic anhydride in the reference data. And the lower flash points, upper flash points, and AITs(auto-ignition temperatures) by ignition delay time were experimented. The lower and upper explosion limits of acetic anhydride by the investigation of the literatures recommended 2.9 Vol% and 10.3 Vol.%, respectively. The lower flash point of acetic anhydride by using Setaflash closed-cup tester was experimented $49^{\circ}C$. The lower flash point acetic anhydride by using Tag and Cleveland open cup tester were experimented $55^{\circ}C$and $62^{\circ}C$, respectively. Also, this study measured relationship between the AITs and the ignition delay times by using ASTM E659 tester for acetic anhydride. The experimental AIT of acetic anhydride was $350^{\circ}C$.

이소프로필 알코올의 화재 및 폭발 특성치의 측정 및 고찰 (The Measurement and Investigation of Fire and Explosion Characteristics of Isopropyl Alcohol)

  • 하동명
    • 한국가스학회지
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    • 제16권3호
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    • pp.8-15
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    • 2012
  • 이소프로필 알코올의 안전한 취급을 위해 $25^{\circ}C$에서 폭발한계를 고찰하였고, 실험장치를 이용하여 하부인화점, 상부인화점, 연소점 그리고 발화지연시간에 의한 발화온도를 측정하였다. 그 결과, 공정의 안전을 위한 이소프로필 알코올의 폭발 하한계는 2.0 vol%이고, 상한계는 12.0 vol%로 문헌을 통해 판단되었다. 하부인화점은 밀폐계에서 $12{\sim}14^{\circ}C$와 개방식에서 $18{\sim}19^{\circ}C$이었고, 상부인화점은 $38^{\circ}C$로 측정되었다. ASTM E659 장치를 사용하여 측정된 최소자연발화온도는 $463^{\circ}C$이었다.