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Effects of Ventilation Improvement on Measured and Perceived Indoor Air Quality in a School Building with a Hybrid Ventilation System

机译:混合通风系统对学校大楼中通风改善对室内空气质量的测量和感知的影响

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摘要

Ventilation system design and operation may significantly affect indoor air quality (IAQ). The aims of this case study were to investigate the functionality of a supply air fan-assisted hybrid ventilation system in a newly built school building with reported IAQ problems and to determine the effects of ventilation improvement on measured and perceived IAQ. The ventilation system function was researched simultaneously with IAQ measurements, with an analysis of total volatile organic compounds (TVOC), single volatile organic compounds (VOCs), and indoor mycobiota, and with questionnaires about perceived IAQ. At the baseline, an operational error of the ventilation system was found, which prevented the air from coming into the classrooms, except for short periods of high carbon dioxide (CO2) concentrations. After the ventilation operation was improved, a significant change in indoor mycobiota was found; the dominant, opportunistic human pathogenic species Trichoderma citrinoviride found in settled dust in the classroom before the improvement was no longer detected. In addition, the concentrations of CO2, TVOC, and some single VOCs, especially toluene and decamethylcyclopentasiloxane, decreased. The analysis of the questionnaire results indicated that the perceptions of unpleasant odors and stuffy air decreased, although a statistically significant improvement in perceived IAQ was not observed. The results provided evidence that the properly controlled hybrid ventilation system operating in mechanical supply mode provided adequate ventilation and was effective in decreasing the concentrations of some indoor-generated pollutants. With simple ventilation adjustments, microbiological exposure from building structures might be prevented.
机译:通风系统的设计和运行可能会严重影响室内空气质量(IAQ)。本案例研究的目的是调查新建的有报告室内空气质量问题的学校大楼中的送风风扇辅助混合通风系统的功能,并确定通风改善对实测室内空气质量的影响。通风系统功能与IAQ测量同时进行,分析了总挥发性有机化合物(TVOC),单一挥发性有机化合物(VOC)和室内菌群,并提供了有关感知IAQ的问卷。在基线时,发现通风系统出现操作错误,这阻止了空气进入教室,除了短期内高浓度的二氧化碳(CO2)。改善通风操作后,室内真菌菌群发生了显着变化。在不再发现改善之前,在教室里的尘埃中发现了主要的机会性人类致病物种柠檬木霉。此外,CO2,TVOC和某些单一VOC(尤其是甲苯和十甲基环五硅氧烷)的浓度下降。对问卷调查结果的分析表明,尽管没有观察到室内空气质量指数有统计学上的显着改善,但令人不愉快的气味和闷空气的感觉有所减少。结果提供了证据,即以机械供应模式运行的经过适当控制的混合通风系统可提供足够的通风,并能有效降低一些室内产生的污染物的浓度。通过简单的通风调节,可以防止建筑结构暴露于微生物。

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