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Mutagenicity- and pollutant-emission factors of pellet-fueled gasifier cookstoves: Comparison with other combustion sources.颗粒燃料气化炉具的致突变性和污染物排放因子:与其他燃烧源的比较。
Sci Total Environ. 2020 Oct 15;739:139488. doi: 10.1016/j.scitotenv.2020.139488. Epub 2020 May 20.
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Indoor Air Pollution, Related Human Diseases, and Recent Trends in the Control and Improvement of Indoor Air Quality.室内空气污染、相关人类疾病,以及控制和改善室内空气质量的最新趋势。
Int J Environ Res Public Health. 2020 Apr 23;17(8):2927. doi: 10.3390/ijerph17082927.
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Household air pollution and personal exposure from burning firewood and yak dung in summer in the eastern Tibetan Plateau.青藏高原东部夏季烧柴和牛粪引起的室内空气污染和个人暴露。
Environ Pollut. 2020 Aug;263(Pt B):114531. doi: 10.1016/j.envpol.2020.114531. Epub 2020 Apr 8.
5
Potential role of polycyclic aromatic hydrocarbons as mediators of cardiovascular effects from combustion particles.多环芳烃作为燃烧颗粒心血管效应中介的潜在作用。
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6
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Chemosphere. 2019 Oct;233:852-861. doi: 10.1016/j.chemosphere.2019.06.013. Epub 2019 Jun 6.
7
A Laboratory Assessment of 120 Air Pollutant Emissions from Biomass and Fossil Fuel Cookstoves.生物质和化石燃料炉灶 120 种空气污染物排放的实验室评估。
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8
Emission Measurements from Traditional Biomass Cookstoves in South Asia and Tibet.南亚和西藏传统生物质炉灶排放测量。
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In vitro cellular toxicity induced by extractable organic fractions of particles exhausted from urban combustion sources - Role of PAHs.城市燃烧源排放颗粒的可提取有机成分诱导的体外细胞毒性 - 多环芳烃的作用。
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10
The impact of cookstove operation on PM and CO emissions: A comparison of laboratory and field measurements.炉灶操作对 PM 和 CO 排放的影响:实验室与现场测量比较。
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储存条件会影响收集到的炉灶排放样本吗?对实地研究的启示。

Do Storage Conditions Affect Collected Cookstove Emission Samples? Implications for Field Studies.

作者信息

Mutlu Esra, Cristy Tim, Stiffler Billie, Waidyanatha Suramya, Chartier Ryan, Jetter Jim, Krantz Todd, Shen Guofeng, Champion Wyatt, Miller Brian, Richey Jamie, Burback Brian, Rider Cynthia V

机构信息

Center for Computational Toxicology and Exposure, U.S. EPA, RTP, NC, USA.

Division of the Translational Toxicology, National Institute of Environmental Health Sciences, Research Triangle Park, NC, USA.

出版信息

Anal Lett. 2023;56(12):1911-1931. doi: 10.1080/00032719.2022.2150772. Epub 2022 Dec 20.

DOI:10.1080/00032719.2022.2150772
PMID:37200484
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC10054858/
Abstract

Cookstove emissions are a significant source of indoor air pollution in developing countries and rural communities world-wide. Considering that many research sites for evaluating cookstove emissions and interventions are remote and require potentially lengthy periods of particulate matter (PM) filter sample storage in sub-optimal conditions (e.g., lack of cold storage), an important question is whether samples collected in the field are stable over time. To investigate this, red oak was burned in a natural-draft stove, and fine PM (PM) was collected on polytetrafluoroethylene filters. Filters were stored at either ambient temperature or more optimal conditions (-20°C or -80°C) for up to 3 months and extracted. The effects of storage temperature and length on stability were evaluated for measurements of extractable organic matter (EOM), PM, and polycyclic aromatic compound (PAC) levels in the filter extracts. A parallel, controlled laboratory condition was also evaluated to further explore sources of variability. In general, PM and EOM in both simulated field and laboratory samples were similar regardless of the storage condition or duration. The extracts were also analyzed by gas chromatography to quantify 22 PACs and determine similarities and/or differences between the conditions. PAC levels were a more sensitive stability measure in differentiating between storage conditions. The findings suggest that measurements are relatively consistent across storage duration/temperatures for filter samples with relatively low EOM levels. This study aims to inform protocols and filter storage procedures for exposure and intervention research conducted in low- and middle-income countries where studies may be budget- and infrastructure-limited.

摘要

在全球范围内的发展中国家及农村地区,厨灶排放是室内空气污染的一个重要来源。鉴于许多用于评估厨灶排放及干预措施的研究地点较为偏远,且可能需要在次优条件下(如缺乏冷藏设备)长时间储存颗粒物(PM)过滤样本,一个重要问题是现场采集的样本随时间推移是否稳定。为对此进行研究,在一台自然通风炉中燃烧红橡木,并将细颗粒物(PM)收集在聚四氟乙烯滤膜上。滤膜在环境温度或更优条件(-20°C或-80°C)下储存长达3个月后进行提取。针对滤膜提取物中可提取有机物(EOM)、PM及多环芳烃化合物(PAC)水平的测量,评估了储存温度和时长对稳定性的影响。还评估了一个平行的、受控的实验室条件,以进一步探究变异性来源。总体而言,无论储存条件或时长如何,模拟现场样本和实验室样本中的PM和EOM都相似。提取物还通过气相色谱法进行分析,以量化22种PAC,并确定不同条件之间的异同。在区分储存条件方面,PAC水平是一个更敏感的稳定性指标。研究结果表明,对于EOM水平相对较低的滤膜样本,在不同储存时长/温度下的测量结果相对一致。本研究旨在为在低收入和中等收入国家开展的暴露及干预研究提供方案及滤膜储存程序方面的参考,这些国家的研究可能受到预算和基础设施的限制。