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用于近实时测量环境细颗粒物和粗颗粒物中总有机碳和水溶性有机碳的在线监测仪的开发与性能评估

Development and performance evaluation of online monitors for near real-time measurement of total and water-soluble organic carbon in fine and coarse ambient PM.

作者信息

Aghaei Yashar, Aldekheel Mohammad, Tohidi Ramin, Badami Mohammad Mahdi, Farahani Vahid Jalali, Sioutas Constantinos

机构信息

University of Southern California, Department of Civil and Environmental Engineering, Los Angeles, California, USA.

Kuwait University, Department of Civil Engineering, P.O Box 5969, Safat 13060, Kuwait.

出版信息

Atmos Environ (1994). 2024 Feb 15;319. doi: 10.1016/j.atmosenv.2023.120316. Epub 2023 Dec 23.

Abstract

In this study, we developed two online monitors for total organic carbon (TOC) and water-soluble organic carbon (WSOC) measurements in fine (d < 2.5μm) and coarse (2.5μm < d < 10μm) particulate matter (PM), respectively. Their performance has been evaluated in laboratory and field tests to demonstrate the feasibility of using these monitors to measure near real-time concentrations, with consideration of their potential for being employed in long-term measurements. The fine PM collection setup was equipped with a versatile aerosol concentration enrichment system (VACES) connected to an aerosol-into-liquid-sampler (AILS), whereas two virtual impactors (VIs) in tandem with a modified BioSampler were used to collect coarse PM. These particle collection setups were in tandem with a Sievers M9 TOC analyzer to read TOC and WSOC concentrations in aqueous samples hourly. The average hourly TOC concentration measured by our developed monitors in fine and coarse PM were 5.17 ± 2.41 and 0.92 ± 0.29 μg/m, respectively. In addition, our TOC readings showed good agreement and were comparable with those quantified using Sunset Lab EC/OC analyzer operating in parallel as a reference. Furthermore, we conducted field tests to produce diurnal profiles of fine PM-bound WSOC, which can show the effects of ambient temperature on maximum values in the nighttime chemistry of the winter, as well as on increased photochemical activities in afternoon peaks during the summer. According to our experimental campaign, WSOC mean values during the study period (3.07 μg/m for the winter and 2.7 μg/m for the summer) were in a comparable range with those of earlier studies in Los Angeles. Overall, our results corroborate the performance of our developed monitors in near real-time measurements of TOC and WSOC, which can be employed for future source apportionment studies in Los Angeles and other areas, aiding in understanding the health impacts of different pollution sources.

摘要

在本研究中,我们分别开发了两款在线监测仪,用于测量细颗粒物(d < 2.5μm)和粗颗粒物(2.5μm < d < 10μm)中的总有机碳(TOC)和水溶性有机碳(WSOC)。已在实验室和现场测试中对它们的性能进行了评估,以证明使用这些监测仪测量近实时浓度的可行性,并考虑了其用于长期测量的潜力。细颗粒物收集装置配备了与气溶胶转液体采样器(AILS)相连的通用气溶胶浓度富集系统(VACES),而串联两个虚拟撞击器(VI)和一个改良的生物采样器用于收集粗颗粒物。这些颗粒物收集装置与Sievers M9 TOC分析仪串联,每小时读取水样中的TOC和WSOC浓度。我们开发的监测仪测量的细颗粒物和粗颗粒物中每小时TOC平均浓度分别为5.17±2.41和0.92±0.29μg/m³。此外,我们的TOC读数显示出良好的一致性,并且与同时并行运行的作为参考的Sunset Lab EC/OC分析仪定量的读数相当。此外,我们进行了现场测试,以生成细颗粒物结合的WSOC的日变化曲线,该曲线可以显示环境温度对冬季夜间化学中最大值的影响,以及对夏季下午峰值期间光化学活性增加的影响。根据我们的实验活动,研究期间的WSOC平均值(冬季为3.07μg/m³,夏季为2.7μg/m³)与洛杉矶早期研究的结果处于可比范围内。总体而言,我们的结果证实了我们开发的监测仪在TOC和WSOC近实时测量中的性能,可用于洛杉矶和其他地区未来的源解析研究,有助于了解不同污染源对健康的影响。

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