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教育设施室内空气质量评估相关参数综述。

A review of relevant parameters for assessing indoor air quality in educational facilities.

机构信息

LEPABE - Laboratory for Process Engineering, Environment, Biotechnology and Energy, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465, Porto, Portugal; ALiCE - Associate Laboratory in Chemical Engineering, Faculty of Engineering, University of Porto, Rua Dr. Roberto Frias, 4200-465, Porto, Portugal.

Faculty of Environmental Engineering, Lublin University of Technology, Nadbystrzycka 38D, 20-618, Lublin, Poland.

出版信息

Environ Res. 2024 Nov 15;261:119713. doi: 10.1016/j.envres.2024.119713. Epub 2024 Jul 31.

Abstract

Indoor air quality (IAQ) in educational facilities is crucial due to the extended time students spend in those environments, affecting their health, academic performance, and attendance. This paper aimed to review relevant parameters (building characteristics and factors related with occupancy and activities) for assessing IAQ in educational facilities, and to identify the parameters to consider when performing an IAQ monitoring campaign in schools. It also intended to identify literature gaps and suggest future research directions. A narrative literature review was conducted, focusing on seven key parameters: building location, layout and construction materials, ventilation and air cleaning systems, finishing materials, occupant demographics, occupancy, and activities. The findings revealed that carbon dioxide (CO) levels were predominantly influenced by classroom occupancy and ventilation rates, while particulate matter (PM) concentrations were significantly influenced by the building's location, design, and occupant activities. Furthermore, this review highlighted the presence of other pollutants, such as trace metals, polycyclic aromatic hydrocarbons (PAHs), carbon monoxide (CO), nitrogen dioxide (NO), ozone (O), and radon, linking them to specific factors within the school environment. Different IAQ patterns, and consequently different parameters, were observed in various school areas, including classrooms, canteens, gymnasiums, computer rooms, and laboratories. While substantial literature exists on IAQ in schools, significant gaps still remain. This study highlighted the need for more studies in middle and high schools, as well as in other indoor microenvironments within educational settings beyond classrooms. Additionally, it underscored the need for comprehensive exposure assessments, long-term studies, and the impacts of new materials on IAQ including the effects of secondary reactions on surfaces. Seasonal variations and the implications of emerging technologies were also identified as requiring further investigation. Addressing those gaps through targeted research and considering the most updated standards and guidelines for IAQ, could lead to define more effective strategies for improving IAQ and safeguarding the students' health and performance.

摘要

教育设施内的室内空气质量 (IAQ) 至关重要,因为学生在这些环境中度过的时间较长,这会影响他们的健康、学业表现和出勤率。本文旨在回顾评估教育设施内 IAQ 的相关参数(建筑特征以及与占用和活动相关的因素),并确定在学校进行 IAQ 监测活动时需要考虑的参数。本文还旨在确定文献差距并提出未来的研究方向。进行了叙述性文献综述,重点关注七个关键参数:建筑位置、布局和建筑材料、通风和空气净化系统、装修材料、居住者人口统计学特征、占用情况和活动。研究结果表明,二氧化碳 (CO) 水平主要受教室占用率和通风率的影响,而颗粒物 (PM) 浓度则显著受建筑物位置、设计和居住者活动的影响。此外,本综述强调了其他污染物的存在,例如痕量金属、多环芳烃 (PAHs)、一氧化碳 (CO)、二氧化氮 (NO)、臭氧 (O) 和氡,并将它们与学校环境中的特定因素联系起来。不同的 IAQ 模式,进而不同的参数,在不同的学校区域观察到,包括教室、食堂、体育馆、计算机室和实验室。尽管有大量关于学校 IAQ 的文献,但仍存在重大差距。本研究强调需要在中学和高中以及教育环境中的其他室内微环境(除教室外)进行更多研究。此外,它强调需要进行综合暴露评估、长期研究以及新材料对 IAQ 的影响,包括表面二次反应的影响。季节性变化和新兴技术的影响也被确定为需要进一步调查的问题。通过有针对性的研究解决这些差距,并考虑最先进的 IAQ 标准和指南,可以制定出更有效的策略来改善 IAQ,保护学生的健康和表现。

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