ENEA CR-Portici, TERIN-FSD Department, P.le E. Fermi 1, 80055 Portici, Italy.
Department of Physics, University of Naples Federico II, via Cinthia, 80100 Napoli, Italy.
Sensors (Basel). 2020 Nov 29;20(23):6819. doi: 10.3390/s20236819.
The concerns related to particulate matter's health effects alongside the increasing demands from citizens for more participatory, timely, and diffused air quality monitoring actions have resulted in increasing scientific and industrial interest in low-cost particulate matter sensors (LCPMS). In the present paper, we discuss 50 LCPMS models, a number that is particularly meaningful when compared to the much smaller number of models described in other recent reviews on the same topic. After illustrating the basic definitions related to particulate matter (PM) and its measurements according to international regulations, the device's operating principle is presented, focusing on a discussion of the several characterization methodologies proposed by various research groups, both in the lab and in the field, along with their possible limitations. We present an extensive review of the LCPMS currently available on the market, their electronic characteristics, and their applications in published literature and from specific tests. Most of the reviewed LCPMS can accurately monitor PM changes in the environment and exhibit good performances with accuracy that, in some conditions, can reach values up to 0.99. However, such results strongly depend on whether the device is calibrated or not (using a reference method) in the operative environment; if not, values lower than 0.5 are observed.
与越来越多的公民要求采取更具参与性、及时性和分散性的空气质量监测行动相关的颗粒物健康影响问题,以及对低成本颗粒物传感器 (LCPMS) 的日益增长的科学和工业兴趣,导致了这一现象的发生。在本文中,我们讨论了 50 种 LCPMS 模型,这一数字与其他最近关于同一主题的评论中所描述的模型数量相比,具有特别重要的意义。在根据国际法规说明了与颗粒物 (PM) 及其测量相关的基本定义后,本文介绍了该设备的工作原理,重点讨论了各个研究小组在实验室和现场提出的几种特征化方法,以及它们可能存在的局限性。我们对市场上现有的 LCPMS 进行了广泛的回顾,包括它们的电子特性及其在已发表文献和特定测试中的应用。大多数经过审查的 LCPMS 可以准确监测环境中的 PM 变化,并具有良好的性能,其准确度在某些情况下可高达 0.99。然而,这些结果在很大程度上取决于该设备在工作环境中是否经过校准(使用参考方法);如果没有,那么观察到的值会低于 0.5。