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Influence of Climate Variation on Indoor Air Quality; a 15-year Profile Analysis of Indoor Fungal Pollutants

机译:气候变化对室内空气质量的影响;室内真菌污染物的15年概况分析

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Buildings are major and only shelters for human to refrain from direct impacts of climate change and rising frequency of disasters. The importance of indoor environment quality is therefore more critical while the time people spent indoors is ever more increasing. Furthermore, higher ambient temperature and more extreme weather events are suggested to result in worsen indoor air quality, as a consequence from in-outdoor interaction. Yet, the physical and chemical impact of climate change on indoor environment remains relatively unclear. The aim of this study is to evaluate the effects of potential climatic or weather variations on indoor air pollutants (IAP), using a 15-year monitoring data collected from 802 different buildings span throughout the island of Taiwan. The profile of total culturable fungal concentration, reported to be attributable to various adverse health effects, would be taken as an example for preliminary analysis. Since 1998, our team has continuously collected IAP data from 322 home, 162 school, 106 offices and 212 public places of diverse functions, following the standard procedure of indoor investigation. A total of 1757 indoor and 1749 outdoor total culturable fungal levels are included in the analysis, with averages (sd) of 4543.1 (9518.6) CFU/m3 and 5502.4 (11013.3) CFU/m3, respectively. Highest average levels of fungi and its in-outdoor (I/O) ratio are found in the building type of school, or during the winter season (December to February). Higher temperature of 8-hour daytime average, no matter indoors (crude OR=1.17, 95%CI 1.13-1.21), outdoors (cOR=1.08, 95%CI 1.05-1.10) or atmospheric (cOR=1.06, 95%CI 1.04-1.09), is one of the major determinant for the increasing fungal I/O ratio. Moreover, fungal I/O ratio also increased with the year of investigation (adjusted OR=1.11, 95%CI 1.07-1.15) after adjusting for ambient temperature, geographical location, sampling season and type of building. This study is the first to evidence the impact of climate variation on IAPs by using a 15-years dataset.
机译:建筑物是主要的,也是人类避开气候变化和灾难频发直接影响的唯一避难所。因此,室内环境质量的重要性变得越来越重要,而人们在室内度过的时间却越来越多。此外,由于室内外相互作用,建议较高的环境温度和更多的极端天气事件导致室内空气质量恶化。但是,气候变化对室内环境的物理和化学影响仍然相对不清楚。这项研究的目的是使用从全台湾802座不同建筑物收集的15年监测数据,评估潜在的气候或天气变化对室内空气污染物(IAP)的影响。据报道可归因于各种不利健康影响的可培养真菌总浓度概况将作为初步分析的一个例子。自1998年以来,我们的小组按照室内调查的标准程序,连续从322个家庭,162个学校,106个办公室和212个公共场所收集了IAP数据。分析中总共包括1757个室内和1749个室外可培养真菌的总水平,平均值(sd)分别为4543.1(9518.6)CFU / m3和5502.4(11013.3)CFU / m3。在学校的建筑类型中或在冬季(12月至2月),平均真菌水平最高,其室内(I / O)比例最高。无论室内(原油OR = 1.17,95%CI 1.13-1.21),室外(cOR = 1.08,95%CI 1.05-1.10)还是大气(cOR = 1.06,95%CI 1.04),白天平均8小时均较高的温度-1.09)是增加真菌I / O比例的主要决定因素之一。此外,在调整了环境温度,地理位置,采样季节和建筑物类型之后,真菌I / O比率也随着调查年份的增加而增加(调整后的OR = 1.11,95%CI 1.07-1.15)。这项研究是第一个通过使用15年数据集来证明气候变化对IAP的影响的研究。

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