Zikova Nadezda, Masiol Mauro, Chalupa David C, Rich David Q, Ferro Andrea R, Hopke Philip K
Institute for Environmental Studies, Faculty of Science, Charles University, Prague 12801, Czech Republic.
Center for Air Resources Engineering and Science, Clarkson University, Potsdam, NY 13699, USA.
Sensors (Basel). 2017 Aug 21;17(8):1922. doi: 10.3390/s17081922.
There is concern regarding the heterogeneity of exposure to airborne particulate matter (PM) across urban areas leading to negatively biased health effects models. New, low-cost sensors now permit continuous and simultaneous measurements to be made in multiple locations. Measurements of ambient PM were made from October to April 2015-2016 and 2016-2017 to assess the spatial and temporal variability in PM and the relative importance of traffic and wood smoke to outdoor PM concentrations in Rochester, NY, USA. In general, there was moderate spatial inhomogeneity, as indicated by multiple pairwise measures including coefficient of divergence and signed rank tests of the value distributions. Pearson correlation coefficients were often moderate (~50% of units showed correlations >0.5 during the first season), indicating that there was some coherent variation across the area, likely driven by a combination of meteorological conditions (wind speed, direction, and mixed layer heights) and the concentration of PM being transported into the region. Although the accuracy of these PM sensors is limited, they are sufficiently precise relative to one another and to research grade instruments that they can be useful is assessing the spatial and temporal variations across an area and provide concentration estimates based on higher-quality central site monitoring data.
人们担心城市地区空气中颗粒物(PM)暴露的异质性会导致对健康影响模型产生负偏差。新型低成本传感器现在允许在多个地点进行连续同步测量。在2015 - 2016年和2016 - 2017年的10月至4月期间对环境PM进行了测量,以评估美国纽约州罗切斯特市PM的时空变异性以及交通和木烟对室外PM浓度的相对重要性。总体而言,如包括离散系数和值分布的符号秩检验在内的多个成对测量所示,存在中等程度的空间不均匀性。皮尔逊相关系数通常中等(在第一季约50%的单元显示相关性>0.5),表明该区域存在一些连贯变化,可能是由气象条件(风速、风向和混合层高度)以及输送到该区域的PM浓度共同驱动的。尽管这些PM传感器的准确性有限,但它们相互之间以及相对于研究级仪器而言足够精确,以至于在评估一个区域的时空变化以及基于更高质量的中心站点监测数据提供浓度估计方面可能会很有用。