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Electrochemical ozone sensors: A miniaturised alternative for ozone measurements in laboratory experiments and air-quality monitoring

机译:电化学臭氧传感器:在实验室实验和空气质量监测中用于臭氧测量的微型替代产品

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摘要

Ozone (O_3) measurements are a critical component of air quality management and many atmospheric chemistry laboratory experiments. Conventional ozone monitoring devices based on UV absorption are relatively cumbersome and expensive, and have a relative high power consumption that limits their use to fixed sites. In this study electrochemical O_3 sensors (OXB421, Alphasense) were used in a miniaturised O_3 measurement device combined with Labjack and Labview data acquisition (DAQ). The device required a power supply of 5 V direct current (VDC) with a total power consumption of approximately 5 W. Total weight was less than 0.5 kg, low enough for portable in situ field deployment. The electrochemical O_3 sensors produced a voltage signal positively proportional to O_3 concentrations over the range of 5ppb-10ppm. There was excellent agreement between the performances of two O_3 sensors with a good linear coefficient (R~2 = 0.9995). The influences of relative humidity (RH) and gas sample flow rate on sensor calibrations and sensitivities have been investigated separately. Coincident calibration curves indicate that sensor performances were almost identical even at different RHs and flow rates after a re-zeroing process to offset the sensor baseline drifts. Rapid RH changes (~20%/min) generate significant and instant changes in sensor signal, and the sensors consistently take up to 40 min to recover their original values after such a rapid RH change. In contrast, slow RH changes (~0.1%/min) had little effect on sensor response. To test the performance of the miniaturised 03 device for real-world applications, the O_3 sensors were employed for (i) laboratory experiments to measure O_3 loss by seawater uptake and (ii) air quality monitoring over an 18-day period. It was found that ozone uptake by seawater was linear to the volume of linoleic acid on a sea surface microlayer and the calculated uptake coefficients based on sensor measurements were close to those from previous studies. For the 18-day period of air quality monitoring the corrected data from the O_3 sensor was in a good agreement with those obtained by reference UV O_3 analyser with an r~2 of 0.83 (n = 8502). The novelty of this study is that the electrochemical O3 sensor was comprehensively investigated in O_3 measurements in both laboratory and ambient air quality monitoring and it can to be a miniaturised alternative for conventional O_3 monitoring devices due to its low cost, low power-consumption, portable and simple-conduction properties.
机译:臭氧(O_3)测量是空气质量管理和许多大气化学实验室实验的重要组成部分。基于紫外线吸收的常规臭氧监测装置相对笨重且昂贵,并且具有相对较高的功耗,从而限制了其在固定场所的使用。在这项研究中,将电化学O_3传感器(OXB421,Alphasense)用于与Labjack和Labview数据采集(DAQ)相结合的小型O_3测量设备中。该设备需要5 V直流(VDC)的电源,总功耗约为5W。总重量小于0.5 kg,足够轻巧,适合便携式现场部署。电化学O_3传感器在5ppb-10ppm的范围内产生与O_3浓度成正比的电压信号。两个具有良好线性系数(R〜2 = 0.9995)的O_3传感器的性能之间有着极好的一致性。相对湿度(RH)和气体样品流速对传感器校准和灵敏度的影响已分别进行了研究。一致的校准曲线表明,即使在不同的相对湿度和流速下,经过重新调零过程以抵消传感器基线漂移后,传感器的性能也几乎相同。相对湿度的快速变化(〜20%/ min)会立即引起传感器信号的显着变化,并且在如此快速的相对湿度变化后,传感器始终需要40分钟才能恢复其原始值。相反,缓慢的RH变化(〜0.1%/ min)对传感器响应影响很小。为了测试小型化03设备在实际应用中的性能,O_3传感器用于(i)实验室实验以测量由于海水摄入而导致的O_3损失,以及(ii)在18天的时间内进行空气质量监测。发现海水对臭氧的吸收与海面微层上亚油酸的体积成线性关系,并且基于传感器测量值计算出的吸收系数与之前的研究相近。在为期18天的空气质量监测中,来自O_3传感器的校正数据与参考UV O_3分析仪获得的校正数据非常吻合,r〜2为0.83(n = 8502)。这项研究的新颖之处在于,电化学O3传感器已在实验室和环境空气质量监测的O_3测量中进行了全面研究,并且由于其低成本,低功耗,便携式的特点,可以成为常规O_3监测设备的小型替代品。和简单的传导特性。

著录项

  • 来源
    《Sensors and Actuators》 |2017年第3期|829-837|共9页
  • 作者单位

    Wolfson Atmospheric Chemistry Laboratories. Department of Chemistry, University of York, York YO10 5DD, UK,Key Laboratory for Aerosol-Cioud-Precipitation of China Meteorological Administration, Nanjing University of information Science and Technology, Nanjing, 210044, China;

    Wolfson Atmospheric Chemistry Laboratories. Department of Chemistry, University of York, York YO10 5DD, UK,National Centre for Atmospheric Science, University of York, York, YO10 5DD, UK;

    Wolfson Atmospheric Chemistry Laboratories. Department of Chemistry, University of York, York YO10 5DD, UK,National Centre for Atmospheric Science, University of York, York, YO10 5DD, UK;

    Wolfson Atmospheric Chemistry Laboratories. Department of Chemistry, University of York, York YO10 5DD, UK;

    Wolfson Atmospheric Chemistry Laboratories. Department of Chemistry, University of York, York YO10 5DD, UK;

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

    Ozone sensor; LabVlEW; Relative humility; Ozone uptake; Air quality monitoring;

    机译:臭氧传感器LabViEW;相对湿度;臭氧吸收;空气质量监测;

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