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New understanding of miniaturized VOCs monitoring device: PID-type sensors performance evaluations in ambient air

机译:对小型型VOC监测装置的新理解:PID型传感器环境空气中的性能评估

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摘要

With low-cost sensors getting more attention in network monitoring, whether volatile organic compounds (VOCs) sensors are easily serviceable in ambient air monitoring is debatable. Evaluations of performance are necessary to provide a comprehensive understanding of commercially available sensor devices at present. In this paper, 17 photo-ionization detectors (PID) based VOC sensor devices have been evaluated through both laboratory and field tests, sensor were primarily from Alphasense and Baseline. The results exhibited the average level of all participating devices and the influence of the humidity on the results has been discussed in detail. Good linearity (R~2>0.93), repeatability (<10 %), and quick response time (T_(80)<1 min) over the target gases in the laboratory have been revealed. The average of intra-best two devices correlation (R) is 0.68 and correlations (R~2) with reference data are 0.5-0.8 for one third of devices in the field tests. However, the accuracy is not as robust as flame ionization detector (FID). In summary, PID-type VOC sensor devices are capable of providing useful information in some application scenarios. The features of quick response and good accuracy at high concentrations are recognized as pollution indicators. Devices with good consistency, correlation and stability are appropriate for investigating the regional VOCs pollution distribution using network monitoring.
机译:通过低成本的传感器在网络监测中获得更多关注,是否在环境空气监测中易于可维护挥发性有机化合物(VOCS)传感器是可扩张的。表现的评估是提供目前商业上可获得的传感器设备的全面了解。在本文中,通过实验室和现场测试评估了基于37个光电电离检测器(PID)的VOC传感器装置,传感器主要来自αense和基线。结果表现出所有参与装置的平均水平,并详细讨论了湿度对结果的影响。揭示了实验室中目标气体的良好线性(R〜2> 0.93),可重复性(<10%)和快速响应时间(T_(80)<1分钟)。在现场测试中,最佳两种器件相关(R)相关性(R)的平均相关性(R)是0.68的相关性(R〜2)为0.5-0.8。然而,精度与火焰电离检测器(FID)不那么稳健。总之,PID型VOC传感器设备能够在某些应用方案中提供有用的信息。高浓度快速响应和良好准确性的特征被认为是污染指标。具有良好的一致性,相关性和稳定性的装置适用于使用网络监测调查区域VOCS污染分布。

著录项

  • 来源
    《Sensors and Actuators》 |2021年第3期|129285.1-129285.10|共10页
  • 作者单位

    Shanghai Textile Energy Saving and Environmental Protection Center China;

    Shanghai Environmental Monitoring Center China;

    Shanghai Environmental Monitoring Center China;

    Shanghai Textile Energy Saving and Environmental Protection Center China;

    Shanghai Environmental Monitoring Center China;

    Shanghai Environmental Monitoring Center China;

    Shanghai Environmental Monitoring Center China;

    Shanghai Textile Energy Saving and Environmental Protection Center China;

    Shanghai Textile Energy Saving and Environmental Protection Center China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    VOCs; Low-cost sensors; Sensor evaluation; Performance; PID;

    机译:VOCS;低成本传感器;传感器评估;表现;PID;

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