Research Center for Environmental Changes, Academia Sinica, Taipei, Taiwan; Department of Atmospheric Sciences, National Taiwan University, Taipei, Taiwan; Institute of Environmental Health, National Taiwan University, Taipei, Taiwan.
Research Center for Environmental Changes, Academia Sinica, Taipei, Taiwan.
Sci Total Environ. 2020 May 10;716:137145. doi: 10.1016/j.scitotenv.2020.137145. Epub 2020 Feb 5.
This study evaluated a newly developed sensing device, AS-LUNG-O, against a research-grade GRIMM in laboratory and ambient conditions and used AS-LUNG-O to assess PM spatiotemporal variations at street levels of an Asian mountain community, which represented residents' exposure (at the interface of atmosphere and human bodies leading to potential health impacts). In laboratory, R of 1-min AS-LUNG-O and GRIMM was 0.95 ± 0.04 (n = 64,179 for 40 sets). After conversion with individual correction equations, their correlation in ambient tests was 0.93 ± 0.05, with absolute % difference of only 10 ± 9%. Ten AS-LUNG-O sets were installed at street sites with another one at 10 m above ground on July 1-28 and December 2-31, 2017 in Nantou, Taiwan. Important source contributions to PM were quantified with regression analysis. Temporal variation expressed as the daily max/mean of 5-min PM reached 13.7 in July and 12.2 in December. Spatial variation expressed as the percent coefficients of variance (%CV) across ten community locations was 22% ± 20% (max: 199%) in July and 19 ± 18% (max: 206%) in December. Incremental contribution from the stop-and-go traffic, market, temple, and fried-chicken vendor to PM at 3-5 m away were 4.38, 3.90, 2.72, and 1.80 μg/m, respectively. Significant spatiotemporal variations and community source contributions revealed the importance of assessing neighborhood air quality for public health protection. For long-term air quality monitoring, the percentage of available power and signals of G-sensor provided indicative information of maintenance required. Advantages of low cost (USD 650), small size, light weight, solar power supply, backup data storage, waterproof housing, multiple-sensor flexibility, and high precision and accuracy (after correction) enable AS-LUNG-O to be widely applied in environmental studies.
本研究评估了一种新开发的感测设备 AS-LUNG-O 在实验室和环境条件下对研究级 Grimm 仪器的性能,并使用 AS-LUNG-O 来评估亚洲山区社区街道水平上的 PM 时空变化,这代表了居民的暴露情况(在大气和人体之间的界面上,可能会对健康产生影响)。在实验室中,1 分钟 AS-LUNG-O 和 Grimm 的 R 值为 0.95±0.04(n=64179 个 40 组数据)。经过个体校正方程转换后,它们在环境测试中的相关性为 0.93±0.05,绝对差异仅为 10±9%。2017 年 7 月 1 日至 28 日和 12 月 2 日至 31 日,在台湾南投的街道站点安装了 10 个 AS-LUNG-O 设备,另一个安装在距地面 10 米的地方。使用回归分析量化了对 PM 有重要贡献的来源。以 5 分钟 PM 的日最大值/平均值表示的时间变化达到了 7 月的 13.7 和 12 月的 12.2。以十个社区位置之间的百分变异系数(%CV)表示的空间变化分别为 7 月的 22%±20%(最大值:199%)和 12 月的 19%±18%(最大值:206%)。在 3-5 米远处,停停走走的交通、市场、寺庙和炸鸡摊贩对 PM 的增量贡献分别为 4.38、3.90、2.72 和 1.80μg/m。显著的时空变化和社区来源贡献揭示了评估邻里空气质量以保护公众健康的重要性。对于长期空气质量监测,可用功率百分比和 G 传感器信号提供了需要维护的指示信息。低成本(650 美元)、小尺寸、重量轻、太阳能供电、备用数据存储、防水外壳、多传感器灵活性以及高精度和准确性(经过校正后)等优势使 AS-LUNG-O 能够广泛应用于环境研究中。