首页> 外文学位 >Pilot Study of the Effectiveness of Low-Cost Gas-Phase Sensors for Monitoring Indoor and Outdoor Air Quality in Beijing, China.
【24h】

Pilot Study of the Effectiveness of Low-Cost Gas-Phase Sensors for Monitoring Indoor and Outdoor Air Quality in Beijing, China.

机译:低成本气相传感器在监测室内和室外空气质量中的有效性的初步研究在中国北京。

获取原文
获取原文并翻译 | 示例

摘要

Ground-level ozone values have been reported to be at unhealthy levels in many populated regions of China. An efficient and effective way for people to combat its harmful effects is seriously needed. However, there are only sparse measurements of ozone being made across China and more measurement sites are needed to understand health relevant concentrations both temporally and spatially. This is due in part to the fact that current monitoring approaches are costly and bulky. Ambient sensors with low cost, small size, and fast response time could potentially fill the current need. Our purpose in this study is to evaluate low cost, portable, and real-time sensors we hope to use in future studies. This study tested the effectiveness of the sensors in monitoring indoor and outdoor air quality, in particular ozone, in Beijing, China.;Seventeen sensors, which were to monitor indoor, outdoor, and personal ozone exposure in 7 homes, were collocated at Peking University (PKU) before and after running in selected residential homes. Pairwise comparisons were conducted using collocated sensor data with data from a standing reference sensor which was maintained by PKU to have best-fit regressions. Based on the best-fit regression when compiling both pre- and post- collocation periods, cleaned sensor data was calibrated and compared with reference data with R2 ranging from 0.63 to 0.97. Overall, the sensors are able to measure O 3 within +/-17 ppb. Average error of sensors after calibration is about -1 ppb. The geographical conditions and surroundings caused significant differences to the ambient ozone concentrations from sensors located across Beijing. Second, the sensors successfully showed that indoor ozone concentrations were likely to be lower when air filtration was on compared to the concentrations when filters were off. Moreover, the results confirmed higher levels of ozone outdoor concentrations compared to indoor. After calibration, average indoor O3 concentration ranged -2 ppb to 23 ppb, while outdoor O 3 concentration was from 19 ppb to 47 ppb. The only personal sensor that worked well measured the average personal exposure as about 33 ppb. The peak of ozone outdoor concentration was usually 100 ppb higher than indoor concentration.;Several factors were considered that could affect the accuracy of the sensors including temperature (degree C), relative humidity (RH%), and concentrations of other chemicals in the ambient environment such as Nitrogen Oxides (NO 2, NO). However, the impacts of those factors on the performance of sensors were not significant after calibration with little or no correlation between errors and those factors. Therefore, the calibrations based on the simple linear regressions between the sensors and the reference when collocated were valid on the data during the whole sampling period.
机译:据报道,在中国许多人口稠密地区,地面臭氧值处于不健康的水平。迫切需要一种有效而有效的方法来对抗人们的有害影响。但是,在中国,臭氧的测量稀疏,需要更多的测量地点才能在时间和空间上了解与健康相关的浓度。部分原因是当前的监视方法既昂贵又笨重。低成本,小尺寸和快速响应时间的环境传感器可以潜在地满足当前的需求。我们在这项研究中的目的是评估我们希望在未来的研究中使用的低成本,便携式和实时传感器。这项研究在中国北京测试了传感器在监测室内和室外空气质量(特别是臭氧)方面的有效性。;北京大学共配置了17个传感器,用于监测7个家庭的室内,室外和个人臭氧暴露情况(PKU)在选定的住宅中运行之前和之后。使用并置的传感器数据与来自固定参考传感器的数据进行成对比较,该传感器由PKU维护以具有最佳拟合回归。基于同时拟合前后的最佳拟合回归,对清洗后的传感器数据进行校准,并与参考数据进行比较,R2的范围为0.63至0.97。总体而言,这些传感器能够测量+/- 17 ppb之内的O 3。校准后传感器的平均误差约为-1 ppb。地理条件和周围环境导致北京各地传感器的周围臭氧浓度产生显着差异。其次,传感器成功显示,与关闭过滤器后的空气浓度相比,打开空气过滤器时的室内臭氧浓度可能更低。此外,结果证实室外臭氧浓度高于室内臭氧浓度。校准后,室内平均O3浓度范围为-2 ppb至23 ppb,而室外O 3浓度为19 ppb至47 ppb。唯一运行良好的个人传感器测得的平均个人暴露水平约为33 ppb。臭氧室外浓度的峰值通常比室内浓度高100 ppb .;已考虑到可能影响传感器精度的几个因素,包括温度(°C),相对湿度(RH%)和环境中其他化学物质的浓度环境,例如氮氧化物(NO 2,NO)。但是,这些因素对传感器性能的影响在校准后并不显着,误差与那些因素之间几乎没有关联。因此,在整个采样期间,基于并置时传感器和参考之间的简单线性回归的校准对数据有效。

著录项

  • 作者

    Liu, Meichen.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Environmental engineering.
  • 学位 M.S.
  • 年度 2017
  • 页码 79 p.
  • 总页数 79
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号