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Environmental Suitability of Building Materials and Perceived Air Quality ?– Interior Surfaces

机译:建筑材料的环境适用性和感知空气质量? - 内表面

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The indoor air pollution with respect to indoor surface materials is characterized by volatile organic compound occurrence and perceived indoor air quality. The volatile organic compound concentrations represent an adequate indicator for indoor odors. The level of their occurrence increases with increasing amounts of non-low polluting indoor materials used. Authors' research deals with the occurrence, transfer and distribution of indoor pollutants in buildings and their relation to the HVAC systems. The effect of the interactions of selected surface materials and that of the sorption was followed in a test chamber and compared with real conditions. The chemical analysis and sensory assessments proved that commonly used interior surface materials belong to the non-low polluting materials. For most materials, the possibility of using the sorption ability of their surfaces was confirmed. The results demonstrate that the sorption ability differs for various materials and also for various combinations of the same materials. However, the sorption effect appeared to be insufficient for the indoor material combinations under study because the indoor air quality criteria were not met. The knowledge of the sorption effect can be utilized during the interior design stage already. Sustainable and aimed material combination design is considered to be a?suitable tool to improve the perceived indoor air quality and to decrease the chemical pollution.
机译:相对于室内表面材料的室内空气污染的特征在于挥发性有机化合物发生和感知室内空气质量。挥发性有机化合物浓度代表室内气味的足够指示剂。随着所用的非低低污染室内材料的增加,它们的发生水平增加。作者的研究涉及建筑物中室内污染物的发生,转移和分布及其与HVAC系统的关系。在测试室中遵循所选表面材料的相互作用的影响,并与真实条件相比。化学分析和感官评估证明,常用的内表面材料属于非低低污染材料。对于大多数材料,确认使用表面吸附能力的可能性。结果表明,用于各种材料的吸附能力而异,也适用于相同材料的各种组合。然而,由于不满足室内空气质量标准,吸附效应似乎不足以进行研究下的室内材料组合。在室内设计阶段,可以使用吸附效果的知识。可持续和旨在的材料组合设计被认为是一个适当的工具,以改善感知室内空气质量并降低化学污染。

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