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Sorption of VOCs on material surfaces as the deciding factor when choosing a ventilation strategy

机译:选择通风策略时,VOC在材料表面的吸附是决定因素

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The interaction between different ventilation strategies, and the adsorption and desorption of volatile organic compounds on material surfaces in small test chambers, is investigated. In test chamber experiments, nylon carpet was exposed to a mixture of toluene and α-pinene at two different dosing rates. The ventilation strategies were chosen to mimic the conditions in real buildings, i.e. with an air exchange rate of 2h~(-1) during the working day (8-17) and a rate of 0.67h~(-1) during the remainder of the 24h. The results show that the sorption behavior has to be included when estimating the concentration variations in a room based on source characteristics and ventilation rates. The software application "EnviSim" was used to model the concentrations in a model room based on the experimental conditions. As the ventilation strategy influences the resulting concentrations, it is recommended that the ventilation system be "turned on" a couple of hours before the start of the working day and "turned down" again soon after the occupants have left the building.
机译:研究了不同通风策略之间的相互作用以及挥发性有机化合物在小型试验箱中材料表面的吸附和解吸。在试验室实验中,将尼龙地毯以两种不同的加料速率暴露于甲苯和α-pine烯的混合物中。选择通风策略以模拟实际建筑中的条件,即在工作日(8-17日)的空气交换率为2h〜(-1),在其余工作日的空气交换率为0.67h〜(-1) 24小时结果表明,根据源特性和通风速率估算房间中的浓度变化时,必须包括吸附行为。使用软件应用程序“ EnviSim”根据实验条件对模型室中的浓度进行建模。由于通风策略会影响所产生的浓度,因此建议在工作日开始前几个小时“打开”通风系统,并在居住者离开建筑物后不久再次“关闭”通风系统。

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