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Laboratory and Field Testing of an Automated Atmospheric Particle-Bound Reactive Oxygen Species Sampling-Analysis System

机译:自动化的大气颗粒结合活性氧物种采样分析系统的实验室和现场测试

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摘要

In this study, various laboratory and field tests were performed to develop an effective automated particle-bound ROS sampling-analysis system. The system uses 2′ 7′-dichlorofluorescin (DCFH) fluorescence method as a nonspecific, general indicator of the particle-bound ROS. A sharp-cut cyclone and a particle-into-liquid sampler (PILS) were used to collect PM2.5 atmospheric particles into slurry produced by a DCFH-HRP solution. The laboratory results show that the DCFH and H2O2 standard solutions could be kept at room temperature for at least three and eight days, respectively. The field test in Rochester, NY, shows that the average ROS concentration was 8.3 ± 2.2 nmol of equivalent H2O2 m−3 of air. The ROS concentrations were observed to be greater after foggy conditions. This study demonstrates the first practical automated sampling-analysis system to measure this ambient particle component.
机译:在这项研究中,进行了各种实验室和现场测试,以开发一种有效的自动束缚ROS采样分析系统。该系统使用2'7'-二氯荧光素(DCFH)荧光方法作为结合颗粒的ROS的非特异性,一般指标。使用急切旋风分离器和颗粒液体采样器(PILS)将PM2.5大气颗粒收集到DCFH-HRP溶液产生的浆料中。实验室结果表明,DCFH和H2O2标准溶液可以在室温下分别保存至少三天和八天。在纽约州罗彻斯特的现场测试表明,平均ROS浓度为8.3 H 2 O 2 m -3 当量空气。在有雾的条件下,观察到ROS浓度更高。这项研究演示了第一个实用的自动采样分析系统来测量此环境粒子成分。

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