School of Engineering, Brown University, Providence, RI, 02912, USA.
Silent Spring Institute, Newton, MA, 02460, USA.
J Expo Sci Environ Epidemiol. 2023 Jul;33(4):537-547. doi: 10.1038/s41370-023-00577-3. Epub 2023 Jul 6.
In response to COVID-19, attention was drawn to indoor air quality and interventions to mitigate airborne COVID-19 transmission. Of developed interventions, Corsi-Rosenthal (CR) boxes, a do-it-yourself indoor air filter, may have potential co-benefits of reducing indoor air contaminant levels.
We employed non-targeted and suspect screening analysis (NTA and SSA) to detect and identify volatile and semi-volatile organic contaminants (VOCs and SVOCs) that decreased in indoor air following installation of CR boxes.
Using a natural experiment, we sampled indoor air before and during installation of CR boxes in 17 rooms inside an occupied office building. We measured VOCs and SVOCs using gas chromatography (GC) high resolution mass spectrometry (HRMS) with electron ionization (EI) and liquid chromatography (LC) HRMS in negative and positive electrospray ionization (ESI). We examined area count changes during vs. before operation of the CR boxes using linear mixed models.
Transformed (log2) area counts of 71 features significantly decreased by 50-100% after CR boxes were installed (False Discovery Rate (FDR) p-value < 0.2). Of the significantly decreased features, four chemicals were identified with Level 1 confidence, 45 were putatively identified with Level 2-4 confidence, and 22 could not be identified (Level 5). Identified and putatively identified features (Level ≥4) that declined included disinfectants (n = 1), fragrance and/or food chemicals (n = 9), nitrogen-containing heterocyclic compounds (n = 4), organophosphate esters (n = 1), polycyclic aromatic hydrocarbons (n = 8), polychlorinated biphenyls (n = 1), pesticides/herbicides/insecticides (n = 18), per- and polyfluorinated alkyl substances (n = 2), phthalates (n = 3), and plasticizers (n = 2).
We used SSA and NTA to demonstrate that do-it-yourself Corsi-Rosenthal boxes are an effective means for improving indoor air quality by reducing a wide range of volatile and semi-volatile organic contaminants.
针对 COVID-19,人们开始关注室内空气质量和减轻空气传播 COVID-19 的干预措施。在已开发的干预措施中,Corsi-Rosenthal(CR)盒,一种 DIY 室内空气过滤器,可能具有降低室内空气污染物水平的潜在协同效益。
我们采用非靶向和可疑筛选分析(NTA 和 SSA)来检测和识别安装 CR 盒后室内空气中减少的挥发性和半挥发性有机污染物(VOC 和 SVOC)。
使用自然实验,我们在 17 个位于有人居住的办公楼内的房间内,在安装 CR 盒之前和期间,对室内空气进行了采样。我们使用气相色谱(GC)高分辨率质谱(HRMS)和电子电离(EI)以及正负电喷雾电离(ESI)的液相色谱(LC)HRMS 对 VOC 和 SVOC 进行了测量。我们使用线性混合模型检查了 CR 盒运行前后的面积计数变化。
安装 CR 盒后,71 个特征的(log2)面积计数明显下降了 50-100%(错误发现率(FDR)p 值<0.2)。在明显减少的特征中,有 4 种化学物质用 1 级置信度鉴定,45 种用 2-4 级置信度推测鉴定,22 种无法鉴定(5 级)。鉴定和推测鉴定的特征(≥4 级)下降,包括消毒剂(n=1)、香料和/或食品化学品(n=9)、含氮杂环化合物(n=4)、有机磷酸酯(n=1)、多环芳烃(n=8)、多氯联苯(n=1)、农药/除草剂/杀虫剂(n=18)、全氟和多氟烷基物质(n=2)、邻苯二甲酸酯(n=3)和增塑剂(n=2)。
我们使用 SSA 和 NTA 证明,DIY Corsi-Rosenthal 盒是通过减少广泛的挥发性和半挥发性有机污染物来改善室内空气质量的有效手段。