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Modeling sorption and its impact on perceived indoor air quality.

机译:模拟吸附及其对室内空气质量的影响。

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摘要

This study aimed to investigate and to quantify the impact of sorption processes on perceived air quality using sensory panels as the measuring device.; The experiments were performed in four similar, adjacent, unfurnished offices. Samples of carpet, painted gypsum board, virgin gypsum board, linoleum and Semia were tested individually and as a combination of two materials. To investigate the interaction between the pollutants emitted from the test building materials and the actual room surfaces, the air polluted by two different building materials was mixed in a separate room without the presence of the building materials. Each experiment lasted between one week (adsorption stage only) to 10 days (adsorption and desorption stages). Untrained panels assessed the air quality at specific time intervals after moving the materials into or out of the rooms, depending on the design of each experiment. The results indicated that sorption affects the perceived air quality significantly. For all performed experiments, the presence of an additional room surface (samples of painted gypsum board) together with samples of carpet or linoleum improved the perceived air quality in that room and in comparison to the air in the room with carpet alone or painted gypsum board alone. The improvement was consistent despite the different kind of building materials used in the experiments, the different panels that performed the sensory assessments and the different environmental conditions for the different experiments. Moreover, adsorption/desorption coefficients for the room surfaces and the painted gypsum board were calculated assuming a Langmuir type of adsorption and when the pollution source was either carpet or linoleum. As anticipated the linear Langmuir model appeared to be suitable for the painted gypsum board and the room surfaces (flat smooth surfaces). In this work, based on sensory data, it was possible to get reasonable values for sorption parameters for painted gypsum board and the room surfaces presumably because the chemicals emitted from the carpet or linoleum used in the experiments were relatively similar in terms of their sorption parameters. The results demonstrated that sensory assessments could be used to derive sorption parameters for common indoor materials interacting with common indoors pollution sources. (Abstract shortened by UMI.)
机译:这项研究旨在调查和量化使用感官面板作为测量设备的吸附过程对感知空气质量的影响。实验是在四个类似的,不带家具的相邻办公室中进行的。地毯,油漆石膏板,原始石膏板,油毡和Semia的样品分别进行了测试,并结合两种材料进行了测试。为了研究测试建筑材料排放的污染物与实际房间表面之间的相互作用,将两种不同建筑材料污染的空气在不存在建筑材料的单独房间中进行混合。每个实验持续一周(仅吸附阶段)到10天(吸附和解吸阶段)之间。未经培训的小组在将材料移入或移出房间后,按特定的时间间隔评估空气质量,具体取决于每个实验的设计。结果表明,吸附会显着影响感知的空气质量。对于所有进行的实验,与单独使用地毯或涂石膏板的房间中的空气相比,额外的房间表面(涂石膏板的样品)以及地毯或油毡的样品的存在改善了该房间的感知空气质量。单独。尽管在实验中使用了不同种类的建筑材料,进行了感官评估的不同小组以及针对不同实验的不同环境条件,但改进仍然是一致的。此外,假定朗格缪尔类型的吸附以及当污染源是地毯或油毡时,计算了房间表面和石膏板的吸附/解吸系数。如预期的那样,线性Langmuir模型似乎适用于粉刷石膏板和房间表面(平坦的光滑表面)。在这项工作中,基于感官数据,有可能获得涂石膏板和房间表面的吸附参数的合理值,大概是因为实验中使用的地毯或油毡所排放的化学物质在吸附参数方面相对相似。结果表明,感官评估可用于得出与室内常见污染源相互作用的常见室内材料的吸附参数。 (摘要由UMI缩短。)

著录项

  • 作者

    Sakr, Wafa.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Environmental Sciences.; Engineering Environmental.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境科学基础理论;环境污染及其防治;
  • 关键词

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