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A Novel Method of Collecting and Chemically Characterizing Milligram Quantities of Indoor Airborne Particulate Matter

机译:室内机载颗粒物毫克量的收集和化学表征的新方法

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Because people spend the majority of the day indoors, it is important to evaluate indoor air, especially airborne particulate matter (PM), for its potential health effects. However, collecting milligram-sized samples of indoor PM, which are necessary for detailed chemical and biological assays, remains challenging because of the noise, power requirements, and size of traditional PM samplers. Therefore, we developed a novel method of collection using an electrostatic precipitator (ESP). Laboratory experiments were conducted to characterize the ESP collection efficiency (41–65%) and PM recovery (50–95%) for three aerosol types. After characterization, the ESPs were deployed in 21 homes in eastern Iowa for 30 days, during which they collected 6–87 mg of indoor PM. The samples were acid digested and subsequently analyzed by inductively coupled plasma mass spectrometry for their magnesium, aluminum, vanadium, manganese, iron, nickel, copper, zinc, arsenic, and lead content. Crustal metals (magnesium, iron, and aluminum), ranging from 3,000 to 25,000 ng mg~(–1) in concentration, contributed the largest mass fractions of the PM. The relative abundances of the metals were similar between homes, although the PM mass fractions were highly variable. This ESP sampling method can be applied in future studies to collect milligram-sized quantities of indoor PM, enabling a detailed analysis of its composition and potential health effects.
机译:由于人们大部分时间都在室内度过,因此评估室内空气,尤其是空气中的颗粒物(PM)的潜在健康影响非常重要。但是,由于传统的PM采样器的噪音,功率要求和尺寸,因此收集毫克级的室内PM样品对于进行详细的化学和生物学分析是必不可少的。因此,我们开发了一种使用静电除尘器(ESP)的新型收集方法。进行了实验室实验以表征三种气溶胶类型的ESP收集效率(41–65%)和PM回收(50–95%)。经过表征后,ESP在爱荷华州东部的21户家庭中部署了30天,在此期间,他们收集了6–87 mg的室内PM。样品经过酸消化后,通过电感耦合等离子体质谱法对其镁,铝,钒,锰,铁,镍,铜,锌,砷和铅的含量进行分析。地壳金属(镁,铁和铝)的浓度范围为3,000至25,000 ng mg〜(-1),占PM的最大质量分数。尽管PM的质量分数变化很大,但房屋之间金属的相对丰度相似。这种ESP采样方法可用于未来的研究中,以收集毫克量的室内PM,从而对其组成和潜在的健康影响进行详细分析。

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