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Using the chemical mass balance model to estimate VOC source contributions in newly built timber frame houses: a case study

机译:利用化学质量平衡模型来估算新建木材框架房屋的VOC源贡献:案例研究

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摘要

Basing on the material emission data obtained in a test chamber, chemical mass balance (CMB) was used to assess the source apportionment of volatile organic compound (VOC) concentrations in three newly built timber frame houses. CMB has been proven to be able to discriminate the source contributions for two contrasted environmental conditions (with and without ventilation). The shutdown of the ventilation system caused an increase in the VOC concentrations due to the increased contribution of indoor surface materials like the door material and furniture explaining together over 65% of total VOCs. While the increase in formaldehyde concentration is mainly due to furniture (contribution of 70%), the increase in alpha-pinene concentration is almost exclusively attributable to the emission of door material (up to 84%). The apportionment of VOC source contributions appears as highly dependent on the position of source materials in the building (surface materials or internal materials) and the ventilation conditions explaining that the concentrations of compounds after the shutdown of ventilation system do not increase in equivalent proportion. Knowledge of indoor sources and its contributions in real conditions may help in the selection of materials and in the improvement of construction operations to reduce the indoor air pollution.
机译:基于在测试室中获得的材料发射数据,使用化学质量平衡(CMB)来评估三个新建木材框架房屋中挥发性有机化合物(VOC)浓度的源分配。已被证明CMB能够区分两个对比环境条件的源贡献(有和没有通风)。通风系统的关机导致VOC浓度的增加由于门材料和家具等室内表面材料的贡献增加,如门材料和家具中的总量超过65%。虽然甲醛浓度的增加主要是由于家具(70%的贡献),但α-拼烯浓度的增加几乎完全可归因于门材料的排放(高达84%)。的VOC源捐款的分配数显示为高度依赖于源材料在建筑物(表面材料或内部材料)和通风条件下说明的化合物的通风系统的停机后浓度不等效比例增加的位置。对室内来源的知识及其在真实条件下的贡献可能有助于选择材料和改善施工操作以减少室内空气污染。

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