• Title/Summary/Keyword: Hopcalite

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A Comparative Evaluation of Sampling Methods for Airbone Mercury Concentration (공기중 수은 농도의 측정방법에 대한 비교평가연구)

  • Park, Ju Young;Kim, Kwang Jong;Paik, Nam Won
    • Journal of Korean Society of Occupational and Environmental Hygiene
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    • v.5 no.2
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    • pp.184-192
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    • 1995
  • This study was performed to evaluate methods for determination of airbone mercury in industrial environments. Three methods, such as Hopcalite method, passive monitoring method and Jerome method were evaluated at two (2) fluorescent lamp manufacturing Plants in Korea during a period from May 24 to May 31, 1994 and the result are as follows: 1. The average were concentrations of airbone mercury were $26{\mu}g/m^3$ by Hopcalite method, $25{\mu}g/m^3$ by passive monitoring method, and $38{\mu}g/m^3$ by the Jerome method, respectively, which were below the permissible exposure limit of $50{\mu}g/m^3$ established by both the Korean Ministry of Labor and ACGIH. However, 12 out of 49 cases(24.4%) in plant A and 2 out of 31 cases(6.5%) in plant B were in excess of the standard. 2. The relationship between the results by Hopcalite method and the passive monitoring method was significant(r=0.892). 3. The variation among three results by eath of three methods were different by process. The highest variation was determined at quality control process("process b") which invoved in large variation of concentrations. 4. When short term high concentrations were produced, the Hopcalite method was more efficient then the passive method.

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일산화탄소 제거를 위한 정화통용 첨착금속화합물 촉매의 특성

  • 박재만;김덕기;신채호;신창섭
    • Proceedings of the Korean Institute of Industrial Safety Conference
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    • 2002.11a
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    • pp.301-304
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    • 2002
  • 화재대피용 방독마스크의 주요한 기능은 상온에서의 일산화탄소 제거이며, 가장 효과적인 방법은 촉매에 의한 것이다. 일산화탄소 제거를 위한 호흡용 보호구의 정화통 충진재로써 범용으로 쓰이는 촉매는 Hopcalite로 Cu와 Mn이 혼합된 산화물 촉매이다. 그러나 이들 촉매는 상온에서 CO의 제거효율이 낮아 많은 양을 충진해야 하는 어려움이있다.(중략)

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CO oxidation Reaction over copper metal oxide catalysts (구리복합산화물 촉매상에서 일산화탄소의 산화반응)

  • Lee, Hak Beum;Koh, Hyoung Lim
    • Journal of the Korean Applied Science and Technology
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    • v.33 no.1
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    • pp.129-135
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    • 2016
  • CO oxidation was performed with Cu-Mn and Cu-Zn co-precipitated catalysts as differential precipitant, metal ratio and calcination temperature. The effects of differential metal mole ratio and calcination temperature in mixed metal oxide catalyst were investigated with CO oxidation reaction. Physiochemical properties were studied by XRD, $N_2$ sorption and SEM. 2Cu-1Mn with $Na_2CO_3$ catalyst calcined at $270^{\circ}C$ has a large surface area $43m^2/g$ and the best activity for CO oxidation. $Cu_{0.5}Mn_{2.5}O_4$ in XRD peak shows the lower activity than others. The catalytic activity over the catalyst calcined $270^{\circ}C$ displayed the highest conversion, and it was better activity comparing with Pt catalysts CO conversion.