Evaluating the performance and influencing factors of three portable black carbon monitors for field measurement

IF 6.9 Q1 Environmental Science Journal of environmental sciences Pub Date : 2023-06-07 DOI:10.1016/j.jes.2023.05.044
Liqing Wu , Yicheng Shen , Fei Che , Yuzhe Zhang , Jian Gao , Chong Wang
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Abstract

Black carbon (BC) is associated with adverse human health and climate change. Mapping BC spatial distribution imperatively requires low-cost and portable devices. Several portable BC monitors are commercially available, but their accuracy and reliability are not always satisfactory during continuous field observation. This study evaluated three models of portable black carbon monitors, C12, MA350 and DST, and investigates the factors that affect their performance. The monitors were tested in urban Beijing, where portable devices running for one month alongside a regular-size reference aethalometer AE33. The study considers several factors that could influence the monitors' performance, including ambient weather, aerosol composition, loading artifacts, and built-in algorithms. The results show that MA350 and DST present considerable discrepancies to the reference instrument, mainly occurring at lower concentrations (0–500 ng/m3) and higher concentrations (2500–8000 ng/m3), respectively. These discrepancies were likely caused by the anomalous noise of MA350 and the loading artifacts of DST. The study also suggests that the ambient environment has limited influence on the monitors' performance, but loading artifacts and accompanying compensation algorithms can result in unrealistic data. Based on the evaluation, the study suggests that C12 is the best choice for unsupervised field measurement, DST should be used in scenarios where frequent maintenance is available, and MA350 is suitable for research purposes with post-processing applicable. The study highlights the importance of assigning portable BC monitors to appropriate applications and the need for optimized real-time compensation algorithms.

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评价三种便携式野外测量黑碳监测仪的性能及影响因素
黑碳(BC)与不利的人类健康和气候变化有关。绘制BC空间分布迫切需要低成本和便携式设备。市面上有几种便携式BC监测仪,但在连续现场观测过程中,它们的准确性和可靠性并不总是令人满意。本研究评估了C12、MA350和DST三种型号的便携式炭黑监测仪,并调查了影响其性能的因素。这些监测仪在北京进行了测试,便携式设备与常规尺寸的参考以太温度计AE33一起运行一个月。该研究考虑了可能影响监测器性能的几个因素,包括环境天气、气溶胶成分、加载伪影和内置算法。结果表明,MA350和DST与参考仪器存在相当大的差异,主要发生在较低浓度(0–500 ng/m3)和较高浓度(2500–8000 ng/m3)下。这些差异可能是由MA350的异常噪声和DST的加载伪影引起的。该研究还表明,周围环境对监视器性能的影响有限,但加载伪影和伴随的补偿算法可能会导致不切实际的数据。基于评估,该研究表明C12是无监督现场测量的最佳选择,DST应用于可进行频繁维护的场景,MA350适用于后处理的研究目的。该研究强调了将便携式BC监视器分配给适当应用的重要性,以及优化实时补偿算法的必要性。
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来源期刊
Journal of environmental sciences
Journal of environmental sciences Environmental Science (General)
CiteScore
12.80
自引率
0.00%
发文量
0
审稿时长
17 days
期刊介绍: Journal of Environmental Sciences is an international peer-reviewed journal established in 1989. It is sponsored by the Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, and it is jointly published by Elsevier and Science Press. It aims to foster interdisciplinary communication and promote understanding of significant environmental issues. The journal seeks to publish significant and novel research on the fate and behaviour of emerging contaminants, human impact on the environment, human exposure to environmental contaminants and their health effects, and environmental remediation and management. Original research articles, critical reviews, highlights, and perspectives of high quality are published both in print and online.
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