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Statistical approach for determining the effects of microclimatic parameters on household spray products aerosol deposition

机译:确定小气候参数对家用喷雾产品气溶胶沉积影响的统计方法

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The understanding of aerosol deposition in the indoor environment is relevant for assessing the exposure of occupants. This study investigates the effects of microclimatic parameters on the deposition rates of aerosols emanating from the use of household spray products in indoor environment. A three–factor factorial design was used to study the effects of interactions of air temperature, relative humidity and Air Exchange Rate (AER) on the deposition rate of particulate matter (PM). The highest deposition rate of 0.3 μm particles (PM0.3) was 627.8 h–1 when the relative humidity, temperature and AER were 40%, 40°C, and 12 h–1, respectively while the highest deposition rate of 5.0 μm particles (PM5.0) was 709.20 h–1 when the relative humidity, temperature and AER were 70%, 25 °C, and 12 h–1, respectively. Regression analysis showed that air temperature and air exchange rate had significant effects on the deposition of PM0.3, while relative humidity and air exchange rate had significant effects on the deposition of PM5.0 at p<0.05. The experimental values were very close to the predicted values and were not statistically different at 95% confidence level.
机译:了解室内环境中的气溶胶沉积与评估乘员的暴露有关。这项研究调查了微气候参数对室内环境下使用家用喷雾产品产生的气溶胶沉积速率的影响。使用三因素因子设计来研究气温,相对湿度和空气交换率(AER)的相互作用对颗粒物(PM)沉积速率的影响。当相对湿度,温度和AER分别为40%,40°C和12 h-1时,0.3μm颗粒(PM0.3)的最高沉积速率为627.8 h-1,而5.0μm颗粒的最高沉积速率当相对湿度,温度和AER分别为70%,25°C和12 h-1时(PM5.0)为709.20 h-1。回归分析表明,温度和空气交换速率对PM0.3的沉积有显着影响,而相对湿度和空气交换速率对PM5.0的沉积有显着影响,p <0.05。实验值非常接近于预测值,并且在95%置信水平下没有统计学差异。

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