Evaluation of direct reading photoionization detector performance under various operational parameters

IF 1.3 Q4 ENVIRONMENTAL SCIENCES Environmental Health Engineering and Management Journal Pub Date : 2021-02-10 DOI:10.34172/EHEM.2021.15
A. Khoshakhlagh, F. Golbabaei, M. Beygzadeh, F. Carrasco-Marín, S. Shahtaheri
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引用次数: 1

Abstract

Background: A hand-held portable direct-reading monitor, including photoionization detector (PID) is renowned for its good sensitivity, considerable dynamic range, and nondestructive vapor detection ability in comparison to the tardy response of the PID in gas chromatography (GC), which its application has been restricted. In this study, the performance of a PID system (MultiRAE Lite) was evaluated as a replacement of GC in the measurement of toluene in a dynamic adsorption system. Methods: The test was done at different relative humidity levels (30%, 50%, and 80%), temperatures (21, 30, 40° C), and toluene concentrations (20, 100, 200, and 400 ppm). Results: The PID achieved 48% of all measurements meeting the comparison criterion. The results showed that the performance of the PID could be altered by the variables. The best performance of the PID was at temperature of 21° C, the relative humidity of 50%, and concentration of 200 ppm with the percentage of readings achieving the criterion of comparison to 58%, 54%, and 52%, respectively. The averages of the PID readings (mean ± SD at 200 ppm= 207.9 ± 8.7) were higher than the reference method measurements averages (mean ± SD at 200 ppm= 203.5 ± 5.8). The regression analysis of the toluene results from the PID and the reference method results indicated that the measurements were significantly correlated (r2 = 0.93). Conclusion: According to the results, the device response is linear. Therefore, the findings are acceptable in adsorption studies. In this way, the measurement of the sample concentration should be performed using the same instrument before and after the reactor in order to calculate the adsorption efficiency.
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不同工作参数下直读光电离探测器性能的评价
背景:包括光电离检测器(PID)在内的手持式便携式直读监测仪以其良好的灵敏度、可观的动态范围和无损蒸汽检测能力而闻名,与气相色谱(GC)中PID的延迟响应相比,其应用受到了限制。在本研究中,评估了PID系统(MultiRAE Lite)在动态吸附系统中代替GC测量甲苯的性能。方法:在不同的相对湿度水平(30%、50%和80%)、温度(21、30、40°C)和甲苯浓度(20、100、200和400ppm)下进行测试。结果:PID达到了所有测量值的48%,符合比较标准。结果表明,PID的性能可以通过变量来改变。PID的最佳性能是在21°C的温度、50%的相对湿度和200ppm的浓度下,达到比较标准的读数百分比分别为58%、54%和52%。PID读数的平均值(200 ppm时的平均值±SD=207.9±8.7)高于参考方法测量的平均值。PID的甲苯结果与参考方法结果的回归分析表明,测量值显著相关(r2=0.93)。结论:根据结果,设备响应是线性的。因此,这些发现在吸附研究中是可以接受的。这样,为了计算吸附效率,应在反应器前后使用相同的仪器进行样品浓度的测量。
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来源期刊
CiteScore
2.40
自引率
37.50%
发文量
17
审稿时长
12 weeks
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