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Indoor air quality: Validation and setting up quality control for determination of anions and cations in particulate matter

机译:室内空气质量:验证并建立质量控制,以测定颗粒物中的阴离子和阳离子

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In recent years, the indoor air quality has been studied more frequently due to an increasing concern within the scientific community on the effects of indoor air quality upon health. The indoor air quality studies of schools have a large impact in both health and educational performance of children since they constitute a sensitive group with higher risk than adults, particularly vulnerable to pollutants due to their undeveloped airways. A total of 14 basic schools located in Lisbon city, Portugal, were selected for sampling the total particulate matter (TPM) by passive deposition into polycarbonate filters and to assess the indoor air quality. Compared to automatic samplers, this passive sampling method represents an easier and cheaper way to assess several indoor air quality environments with no interference in the classroom activities. The procedure was performed on four different campaigns during 2009-2010. The filter loads were measured by gravimetry with a 0. 1-μg sensitivity balance and, afterwards, the TPM water-soluble ions content was assessed by ionic chromatography (Cl ~-, NO _3 ~-, PO _4 ~(3-) and SO _4 ~(2-)); flame absorption (Na ~+, K ~+, Mg ~(2+) and Ca ~(2+)). The performance characteristics of the methods, namely specificity, limit of detection, limit of quantification, working range, precision and trueness were evaluated. Measurement uncertainty was expressed in terms of precision and trueness. Precision under intralaboratory reproducibility conditions was estimated from triplicate analysis. The trueness component was estimated in terms of overall recovery using the reference material SPS-NUTR WW2 Batch 107, from Spectrapure Standards, Oslo, Norway, for anions and the certified reference material CRM 1643e, from NIST, Gaithersburg, MD for cations. Measurement uncertainty of the results obtained with the methods described in this work fulfilled the relative differences (RD) defined by the anion-cation balance in the extraction solutions of the particulate matter. Target RD values were defined: RD < 0. 05.
机译:近年来,由于科学界对室内空气质量对健康的影响的日益关注,对室内空气质量的研究更加频繁。学校的室内空气质量研究对儿童的健康和教育成绩均具有重大影响,因为它们构成了一个比成年人风险更高的敏感人群,尤其是由于其呼吸道不发达而容易受到污染物的影响。总共选择了位于葡萄牙里斯本市的14所小学,通过被动沉积到聚碳酸酯过滤器中来采样总颗粒物(TPM)并评估室内空气质量。与自动采样器相比,这种被动采样方法代表了一种更简便,更便宜的方法来评估几种室内空气质量环境,而不会干扰课堂活动。该程序是在2009-2010年期间针对四个不同的运动进行的。通过重量分析法在0.1-μg灵敏度平衡下测量过滤器负载,然后通过离子色谱法(Cl〜-,NO _3〜-,PO _4〜(3-)和SO _4〜(2-));火焰吸收(Na〜+,K〜+,Mg〜(2+)和Ca〜(2+))。评价了方法的性能特点,即特异性,检测限,定量限,工作范围,精密度和真实性。测量不确定度以精度和真实性表示。实验室内可重复性条件下的精密度由一式三份分析估算。根据总回收率,使用挪威奥斯陆Spectrapure Standards的标准物质SPS-NUTR WW2批次的阴离子为标准品,阳离子的标准物质CRM 1643e的认证标准品为阳离子,以总回收率估算真实性。用这项工作中描述的方法获得的结果的测量不确定性满足了颗粒物萃取溶液中阴离子-阳离子平衡所定义的相对差(RD)。定义了目标RD值:RD <0. 05。

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