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首页> 外文期刊>Atmospheric Measurement Techniques >Development and field testing of an online instrument for measuring the real-time oxidative potential of ambient particulate matter based on dithiothreitol assay
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Development and field testing of an online instrument for measuring the real-time oxidative potential of ambient particulate matter based on dithiothreitol assay

机译:基于二硫噻唑醇测定法测量环境颗粒物实时氧化潜力的在线仪器的开发和现场测试

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摘要

We developed an online instrument for measuring the oxidative potential (OP) of ambient particulate matter (PM) using the dithiothreitol (DTT) assay. The instrument uses a mist chamber (MC) to continuously collect the ambient PM2.5 in water, and then determines its DTT activity using an automated syringe pump system. The instrument was deployed at an urban site in the University of Illinois campus, and its field performance was evaluated by comparing the results with the offline DTT activity measurements of simultaneously collected PM-laden filters. The online DTT activity measurements correlated well with the offline measurements but were higher than both methanol (slope = 1.08, R-2 = 0.93) and Milli-Q water (slope = 1.86, R-2 = 0.86) extracts of the PM filters, indicating a better efficiency of the MC for collecting the water-insoluble fraction of PM. The hourly measurements of ambient PM2.5 OP were obtained by running the online instrument intermittently for 50 days with minimal manual assistance. The daytime DTT activity levels were generally higher than at night. However, a 4-fold increase in the hourly averaged activity was observed on the night of 4 July (Independence Day fireworks display). The diurnal profile of the hourly averaged OP during weekdays showed a bimodal trend, with a sharp peak in the morning (around 07:00 LT), followed by a broader afternoon peak which plateaus around 14:00 LT and starts subsiding at night (around 19:00 LT).
机译:我们开发了一种用于使用二硫代噻唑醇(DTT)测定法测量环境颗粒物质(PM)的氧化潜力(PM)的在线仪器。该仪器使用雾气室(MC)在水中连续收集环境PM2.5,然后使用自动注射器泵系统确定其DTT活性。该仪器部署在伊利诺伊大学校园大学的城市网站上,通过将结果与同时收集的PM-LADEN过滤器的离线DTT活性测量进行比较来评估其现场性能。在线测量的在线DTT活性测量与下线滤波器(斜率= 1.08,R-2 = 0.93)和Mill-Q水(斜率= 1.86,R-2 = 0.86)的甲醇(斜坡= 1.08,R-2 = 0.86)均匀相关。表示MC的更好效率,用于收集PM的水不溶性分数。通过在最小的手动辅助中间歇地运行50天,通过在线仪器运行50天来获得环境PM2.5 OP的每小时测量。白天DTT活性水平通常高于晚上。然而,在7月4日(独立日烟花展示)的夜晚观察到每小时平均活动的4倍。工作日的每小时平均op的日本概况表明了一个双峰趋势,早上有一个尖锐的峰(约07:00),其次是一个更广泛的下午峰值,该峰值在14:00大约下降并开始在夜间开始(周围) 19:00 LT)。

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