量化厨房人类活动对室内空气质量动态影响的研究

IF 7.6 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES Environmental Pollution Pub Date : 2024-09-10 DOI:10.1016/j.envpol.2024.124900
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引用次数: 0

摘要

室内空气质量(IAQ)越来越被认为是影响人类健康的关键因素之一,特别是考虑到人们在室内度过的时间。本研究调查了现实生活中厨房人类活动(KHA)对室内空气质量的影响。我们使用低成本传感器测量了一个有三个成年人的家庭厨房中烟雾、一氧化碳(CO)和颗粒物(PM10 和 PM2.5)的实时浓度,并将 KHA 分成五类进行分析。采用固定效应模型分析数据,解释不同的 KHA 对室内空气质量的影响。结果显示,与其他 KHA 相比,使用燃气灶对室内空气质量的影响最大,烟雾平均增加 13%,CO 平均增加 24.4%,PM10 平均增加 9.8%,PM2.5 平均增加 5.34%。研究还发现,在没有窗户和通风不足的情况下,仅使用抽油烟机无法有效、明显地降低 PM 水平。这些发现凸显了全面的室内空气质量管理策略和进一步研究的必要性。尽管存在局限性,但这项研究也验证了低成本传感器在室内空气质量监测方面的潜力。
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A study of quantifying the influence of kitchen human activity on indoor air quality dynamics

Indoor air quality (IAQ) is increasingly recognised as one of the critical factors influencing human health, particularly given the amount of time people spend indoors. This study investigated the impact of real-life kitchen human activity (KHA) on IAQ. We used low-cost sensors to measure real-time concentrations of smoke, carbon monoxide (CO), and particulate matter (PM10 and PM2.5) in the kitchen of a household with three adults, analysing KHAs by dividing them into five categories. The fixed effect model was employed to analyse the data, explaining the impact of different KHAs on IAQ. The results showed that compared to other KHAs, using the gas stove had the greatest impact on IAQ, with average increases of 13% in smoke, 24.4% in CO, 9.8% in PM10, and 5.34% in PM2.5. The study also found that without windows and with insufficient ventilation, only using the range hood cannot effectively and obviously reduce PM levels. These findings highlight the need for comprehensive IAQ management strategies and further research. Despite its limitations, this study also validated the potential of low-cost sensors in IAQ monitoring.

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来源期刊
Environmental Pollution
Environmental Pollution 环境科学-环境科学
CiteScore
16.00
自引率
6.70%
发文量
2082
审稿时长
2.9 months
期刊介绍: Environmental Pollution is an international peer-reviewed journal that publishes high-quality research papers and review articles covering all aspects of environmental pollution and its impacts on ecosystems and human health. Subject areas include, but are not limited to: • Sources and occurrences of pollutants that are clearly defined and measured in environmental compartments, food and food-related items, and human bodies; • Interlinks between contaminant exposure and biological, ecological, and human health effects, including those of climate change; • Contaminants of emerging concerns (including but not limited to antibiotic resistant microorganisms or genes, microplastics/nanoplastics, electronic wastes, light, and noise) and/or their biological, ecological, or human health effects; • Laboratory and field studies on the remediation/mitigation of environmental pollution via new techniques and with clear links to biological, ecological, or human health effects; • Modeling of pollution processes, patterns, or trends that is of clear environmental and/or human health interest; • New techniques that measure and examine environmental occurrences, transport, behavior, and effects of pollutants within the environment or the laboratory, provided that they can be clearly used to address problems within regional or global environmental compartments.
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