• 제목/요약/키워드: Portable Photoionization Detector

검색결과 5건 처리시간 0.021초

휴대용 광이온화 검출기의 정확도, 정밀도 및 기기간 차이에 대한 실험실 평가 (Laboratory Evaluation of the Accuracy, Precision, and Inter-instrumental Variance of a Portable Photoionization Detector)

  • 최동민;최영은;윤충식;이광원;이윤근;이익모;박정임
    • 한국산업보건학회지
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    • 제22권3호
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    • pp.200-208
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    • 2012
  • Objectives: This study investigated the performance of three separate units of a portable photoionization detector (PID, ppb-RAE 3000) for measuring volatile organic compounds (VOCs) in a laboratory. Methods: A laboratory evaluation of the accuracy, precision, and inter-instrumental variance of three separate units of a portable PID (ppb-RAE 3000) was performed. The evaluation was based on the preparation of a test air sample of known toluene or ethylacetate concentration in a Tedlar$^{(R)}$ bag. The test air sample was monitored and data were logged consecutively by the three PIDs. A certified gas of 50 ppm toluene was also monitored during the test to ensure the reliability of the generated test air sample. Four different concentrations ranging from 0.1 to 2 TLV were used and a series of five measurements for each concentration level was performed. The accuracy was evaluated using National Institute for Occupational Safety and Health (NIOSH) criteria. Results: The results from the oldest ppb-RAE3000 unit among the three test units generally fell outside the NIOSH recommended accuracy criteria of ${\pm}25%$, whereas the other two units produced results which were acceptable at, or greater than, 25 ppm of toluene, or 0.5 TLV. These units also met the NIOSH criteria for some ethylacetate measurements but the results were not consistent. Conclusions: Considering the inconsistent performance of these ppb-RAE 3000 units, this device may not be appropriate for use as an alternative to the standard measurement methods. However, it can serve good survey instruments to identify exposure sources or concentration profiles. For all applications, the ppb-RAE 3000 should be used with frequent calibration checks, additional validation using a reference material, and careful maintenance.

휴대용 기체 크로마토그래피 / 광이온화 검출기 시스템의 개발 (Development of Portable Gas Chromatography / Photoionization Detector System)

  • 김만구;심지희;이동수;이용근
    • 대한화학회지
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    • 제38권2호
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    • pp.151-159
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    • 1994
  • 기체시료 채취기와 짧은 모세관 컬럼(내경 0.32 mm, 길이 3 m), 광이온화 검출기 및 진공펌프로 구성되어, 컬럼의 출구 압력이 대기압보다 낮은 압력에서 조작되는 휴대용 기체 크로마토그래피 시스템을 개발하였다. 컬럼의 규격은 Golay식을 이용한 계산 결과를 기초로 선택하였으며, 조작압력비(컬럼입구와 출구압력비)는 1.03~1.2의 범위가 적절하였고, 이 조건에서 0.87∼4.63 ml/min의 걸럼유량을 얻을 수 있었다. 구경이 다른 3개의 튜브로 구성된 기체시료 채취기는 자동으로 기체시료를 직접 컬럼에 빠른 속도로 반복하여 도입할 수 있으며, 좋은 재현성을 나타내었다. 컬럼출구 압력이 대기압 이하에서 조작되며 짧은 모세관 컬럼을 사용하는 기체 크로마토그래피는 최적 컬럼유량이 일반적인 크로마토그래피보다 커 신속한 분석이 가능하여, 40초 이내에 m-xylene 과 o-xylene의 바탕선 분리가 가능하였다. 시스템의 분리능력에 영향을 주는 인자는 시료 채취시간, 컬럼의 길이와 내경 및 조작압력비였고, 벤젠 유도체들을 사용하여 이들의 영향을 검토하였다.

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Soil-Gas의 분석을 이용한 휘발성 유기화합물 오염도 신속측정 (Rapid Measurement of VOC Using an Analysis of Soil-Gas)

  • 김희경;조성용;황경엽
    • 한국토양환경학회지
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    • 제3권1호
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    • pp.3-9
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    • 1998
  • 본 연구는 휘발성 유기 화합물로 오염된 가솔린 지역에서 soil-gas의 분석결과로부터 오염도를 유추하는 기법에 대하여 서술 하였다. Soil-gas의 채취방법으로는 펌프를 이용한 1)grab sampling법과 흡착제 trap을 사용한 2)passive sampling법이 있다. Grab sampling법은 특정시간에 특정장소에서의 오염도를 보여주며, 반면에 passive sampling법은 특정위치에서 시간에 따른 오염도의 변화를 보여 준다. Soil-gas의 분석은 1)PID나 FID와 같은 작은 검지기에 의해서 총괄 탄화수소량을 측정할수도 있고 2)기체농도에 따라서 색깔이 변하는 지시약이 채워진 기체검지기 튜브를 사용할수도 있으며 3)여러가지 화합물을 한 번에 분석할수 있는 이동형 GC를 사용할수도 있다. Soil-gas를 이용한 측정법은 매우 값싸며 세밀한 정밀조사를 하기 위한 전단계에서 사용할 수 있는 유용한 방법으로 추천할만하다 하겠다.

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총휘발성유기화합물 측정 직독식장비 정확도 향상을 위한 현장보정계수 활용 연구 (Preliminary Study on Effect of the Field Correlation Factor for Increasing of the Accuracy in a Direct Reading Instruments on Photoionization Detector for Total Volatile Organic Compounds)

  • 김성호;이광용;김수진;박해동
    • 한국산업보건학회지
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    • 제34권1호
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    • pp.67-76
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    • 2024
  • Objectives: Direct reading instruments (DRIs) are widely used by industrial hygienists and other experts for preliminary survey and identifying source locations in many industrial fields. Photoionization detectors (PIDs), which are a form of hand-held portable DRIs, have been used for a variety of airborne vaporized chemicals, especially evaporated hydrocarbon solvents. The benefits of PIDs are high sensitivity between each chemical, competitive price, and portability. With the goal of increasing the accuracy of logged PID concentrations, previous studies have performed tests for the assessment of single chemical compounds, not mixtures. The purpose of this preliminary study was to measure mixtures with a PID and charcoal tube at the same time and compare the accuracy between them. Methods: A chamber test was implemented with different mixtures of hydrocarbon chemicals (acetone, isopropyl alcohol, toluene, m-xylene) and levels in the range of 14 to 864 ppm. Three PIDs and charcoal tubes were connected to the chamber and measured the chemical mixtures simultaneously. A comparison of accuracy and the PID group of concentrations with manufacture correction factor (M_CF) and field correction factor (F_CF) applied was performed. Results: The accuracy of the PID concentrations data-logged from the PID did not meet the accuracy criteria except for the mixture level B and C logged from PID No. 2, which was 18% of all tests for meeting accuracy criteria. The mean and standard deviation (SD) of concentration (ppm) of the charcoal tube followed by each mixtures' level were 10.37±0.26, 155.33±5.28, 300.80±11.65, and 774.93±22.65, respectively. When applying F_CF into the PID concentrations, the accuracy increased by nearly 82%. However, in the case of M_CF, none met the accuracy criterion. Between the PID there were differences of logged concentrations. Conclusions: In this preliminary study, the concentration of a logged PID with F_CF applied was a better way to increase accuracy compared to applying M_CF. We suggest that additional research is necessary to consider environmental factors such as temperature and humidity.

직독식 측정기 PID와 능동식 시료채취기에 의한 GC-FID 정량분석법의 VOCs 농도 비교 연구 (Comparative Analysis between Direct-reading Meter of PID and GC-FID using the Active Type Air Sampler for VOCs Measurement)

  • 여진희;최광민
    • 한국산업보건학회지
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    • 제26권3호
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    • pp.301-306
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    • 2016
  • Objectives: Direct-reading instrument(Photoionization detectors, PID) and quantitative analysis using active type air sampling (Gas chromatography-flame ionization detector, GC-FID) were tested to evaluate their ability to detect volatile organic compounds(VOCs) in a semiconductor manufacturing plant. Methods: The organic compounds used were acetone and ethanol which are normally used as cleaning solutions in the semiconductor manufacturing. The evaluation was based on the preparation of test solutions of known acetone and ethanol concentration in a chamber($600{\times}600{\times}1150mm$). Samples were prepared that would be equivalent to 5~100 ppm for acetone and 10~ 200 ppm ethanol. GC-FID and PID were evaluated simultaneously. Quantitative analysis was performed after sampling and the direct-reading instrument was checked using real-time data logging. Results: Positive correlations between PID and GC-FID were found for acetone and ethanol at 0.04~2.4% for acetone(TLV: 500 ppm) and 0.1~8.3% for ethanol(TLV: 1000 ppm). When the sampling time was 15 min, concentration of test solution was the most similar between measurement methods. However, the longer the sampling time, the less similar the results. PID and GC-FID had similar exposure patterns. Conclusions: The results indicate that PID and GC-FID have similar exposure pattern and positive correlation for detection of acetone and ethanol. Therefore, PID can be used for exposure monitoring for VOCs in the semiconductor manufacturing industry. This study has significance in that it validates measuring occupational exposure using a portable device.