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首页> 外文期刊>Atmospheric Pollution Research >Assessment of a passive sampling method and two on-line gas chromatographs for the measurement of benzene, toluene, ethylbenzene and xylenes in ambient air at a highway site
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Assessment of a passive sampling method and two on-line gas chromatographs for the measurement of benzene, toluene, ethylbenzene and xylenes in ambient air at a highway site

机译:在高速公路部位在环境空气中测量苯,甲苯,乙苯和二甲苯的无源取样方法和两个在线气相色谱仪

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摘要

Accurate, continuous long-term measurements of aromatic volatile organic compounds with known health impacts are needed for comprehensive assessments of air quality in the vicinity of industrial and vehicular emission sources. Historically, evacuated canister sampling and on-line gas chromatography (GC) have been the most popular approaches applied by government institutions in North America to measure benzene, toluene, ethylbenzene and xylenes (BTEX) in ambient air. Canister sampling is labour-intensive and typically does not provide the continuous data needed for epidemiological studies, while on-line GCs are costly and require shelter and power. In this work, the accuracy and suitability of three techniques for generating long-term ambient BTEX datasets are assessed. The first is a passive sampling method involving sorbent-packed thermal desorption tubes, the second is an on-line miniature gas chromatograph (miniGC) coupled with a photoionization detector (PID) and the third is a more traditional on-line gas chromatograph coupled with a flame ionization detector (GC-FID). These three techniques were deployed at an air quality monitoring station located adjacent to a busy highway for six weeks in summer 2018 to compare method performance and accuracy. Ambient mean concentrations of BTEX determined from the three methods for the entire study period were found to agree within 7% for benzene and within 30% for the other species. Interestingly, a temperature dependent positive bias previously identified for 14-day passive tube sampling for ethylbenzene and xylenes under cold wintertime conditions was found to be negligible under summertime conditions.
机译:准确,芳香挥发性有机化合物的连续长期测量具有已知的健康影响,可以在工业和车辆排放源附近进行全面评估空气质量。从历史上看,疏散的罐抽样和在线气相色谱(GC)是北美政府机构应用最受欢迎的方法,以测量环境空气中的苯,甲苯,乙苯和二甲苯(BTEX)。罐抽样是劳动密集型的,通常不提供流行病学研究所需的连续数据,而在线GCS成本高,需要庇护和权力。在这项工作中,评估了用于生成长期环境BTEX数据集的三种技术的准确性和适用性。首先是涉及吸附剂填充热解吸管的被动采样方法,第二是与光相探测器(PID)耦合的在线微型气相色谱仪(MINIGC),第三个是更传统的在线气相色谱仪和耦合火焰电离检测器(GC-FID)。这三种技术在2018年夏季坐在繁忙的高速公路附近的空气质量监测站部署,以比较方法性能和准确性。发现从整个研究期的三种方法确定的BTEX的环境平均浓度在苯的7%内达到同意,而其他物种的30%以内。有趣的是,在夏季条件下发现,在冷冬季条件下鉴定为乙苯和二甲苯的14天无源管取样的温度依赖性阳性偏差。

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