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An automated online instrument to quantify aerosol-bound reactive oxygen species (ROS) for ambient measurement and health-relevant aerosol studies

机译:一种自动化的在线仪器,用于对用于环境测量和与健康相关的气溶胶研究的气溶胶结合活性氧(ROS)进行定量

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摘要

The adverse health effects associated with ambient aerosol particles have been well documented, but it is still unclear which aerosol properties are most important for their negative health impact. Some studies suggest the oxidative effects of particle-bound reactive oxygen species (ROS) are potential major contributors to the toxicity of particles. Traditional ROS measurement techniques are labour-intensive, give poor temporal resolution and generally have significant delays between aerosol sampling and ROS analysis. However, many oxidising particle components are reactive and thus potentially short-lived. Thus, a technique to quantify particle-bound ROS online would be beneficial to quantify also the short-lived ROS components.We introduce a new portable instrument to allow online, continuous measurement of particle-bound ROS using a chemical assay of 2$^prime$7$^prime$-dichlorofluorescein (DCFH) with horseradish peroxidase (HRP), via fluorescence spectroscopy. All components of the new instrument are attached to a containing shell, resulting in a compact system capable of automated continuous field deployment over many hours or days.From laboratory measurements, the instrument was found to have a detection limit of ~4 nmol [H$_2$O$_2$] equivalents per cubic metre (m$^3$) air, a dynamic range up to at least ~2000 nmol [H$_2$O$_2$] equivalents per m$^3$ air and a time resolution of ≤ 12 min. The instrument allows for ~16 h automated measurement if unattended and shows a fast response to changes in concentrations of laboratory-generated oxidised organic aerosol. The instrument was deployed at an urban site in London, and particulate ROS levels of up to 24 nmol [H$_2$O$_2$] equivalents per m$^3$ air were detected with PM$_{2.5}$ concentrations up to 28 µg m$^{−3}$.The new and portable Online Particle-bound ROS Instrument (OPROSI) allows fast-response quantification; this is important due to the potentially short-lived nature of particle-bound ROS as well as fast-changing atmospheric conditions, especially in urban environments. The instrument design allows for automated operation and extended field operation with twice-daily presence of an operator. As well as having sensitivity suitable for ambient level measurement, the instrument is also suitable at concentrations such as those required for laboratory and chamber toxicological studies.
机译:与周围气溶胶颗粒相关的不利健康影响已得到充分证明,但仍不清楚哪种气溶胶特性对其负面健康影响最为重要。一些研究表明,与颗粒结合的活性氧(ROS)的氧化作用是颗粒毒性的潜在主要贡献者。传统的ROS测量技术劳动强度大,时间分辨率差,通常在气溶胶采样和ROS分析之间存在明显的延迟。但是,许多氧化性颗粒成分具有反应性,因此寿命可能很短。因此,在线量化颗粒结合的ROS的技术也将有利于量化短寿命的ROS组分。我们引入了一种新的便携式仪器,可以使用2 $ ^ 的化学分析方法在线连续地测量颗粒结合的ROS。用辣根过氧化物酶(HRP)通过荧光光谱法测定7 ^^ -二氯荧光素(DCFH)。新仪器的所有组件都固定在一个外壳上,形成了一个紧凑的系统,能够在数小时或数天的时间内自动连续地实地部署。从实验室测量中发现,该仪器的检出限为〜4 nmol [H $每立方米(m $ ^ 3 $)空气_2 $ O $ _2 $]当量,每m $ ^ 3 $空气至少动态范围高达〜2000 nmol [H $ _2 $ O $ _2 $]当量,时间分辨率≤12分钟。该仪器可在无人值守的情况下进行约16小时的自动测量,并显示出对实验室产生的氧化有机气溶胶浓度变化的快速响应。该仪器被部署在伦敦的一个城市现场,当空气中的PM $ _ {2.5} $浓度升高时,每m $ ^ 3 $空气中的ROS浓度高达24 nmol [H $ _2 $ O $ _2 $]当量。到28 µg m $ ^ {-3} $。新型便携式在线颗粒结合ROS仪器(OPROSI)可以快速定量。这一点很重要,因为颗粒结合的ROS可能具有短暂的寿命以及快速变化的大气条件,尤其是在城市环境中。仪器设计允许在操作员每天两次的情况下进行自动操作和扩展的现场操作。该仪器不仅具有适合环境水平测量的灵敏度,而且还适用于诸如实验室和室内毒理学研究所需的浓度。

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