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Temporal evolution of the main processes that control indoor pollution in an office microenvironment: a case study

机译:在办公室微环境中控制室内污染的主要过程的时间演变:一个案例研究

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摘要

The aim of this study is to examine the relative contribution of the outdoor concentration, the ventilation rate, the geometric characteristics of the indoor environment (i.e., extent of indoor surfaces and indoor volume), the deposition, and chemical reactions to the indoor air quality of the office microenvironment. For this case study, the NO, NO_2, and O_3 concentrations indoors and outdoors and TVOCs and CO_2 concentrations indoors were measured in an office microenvironment in Athens, Greece, that was ventilated both naturally and mechanically. The calculated ventilation and loss rates and the measured outdoor concentrations of NO, NO_2, and O_3 were set as input to Multi-chamber Indoor Air Quality Model in order to study the temporal variation of the indoor NO, NO_2, and O_3 concentrations. Results showed that when the ventilation rate and outdoor concentration are high, the relative contribution of the transport process contributes significantly, while the chemical process depends on the contemporary interplay between the indoor O_3, NO, and NO_2 concentrations and lighting levels. The significance of each process was further examined by performing sensitivity tests, and it was found that the most important parameters were the deposition velocities, the UV infiltration rates (which determines the indoor chemical reaction rates), the ventilation rates, and the filtration (when a mechanical ventilation system is used). The effect of the hydrocarbon chemistry was not significant.
机译:这项研究的目的是研究室外浓度,通风率,室内环境的几何特征(即室内表面和室内体积的范围),沉积以及对室内空气质量的化学反应的相对贡献。办公室微环境。在此案例研究中,在希腊雅典的办公室微型环境中测量了室内和室外的NO,NO_2和O_3浓度以及室内TVOC和CO_2的浓度,该环境通过自然通风和机械通风进行。为了研究室内NO,NO_2和O_3浓度随时间的变化,将计算得出的通风和损失率以及室外测量的NO,NO_2和O_3的浓度设置为多室室内空气质量模型的输入。结果表明,当通风率和室外浓度较高时,运输过程的相对贡献显着,而化学过程取决于室内O_3,NO和NO_2浓度与照明水平之间的现代相互作用。通过进行敏感性测试进一步检查了每个过程的重要性,发现最重要的参数是沉积速度,紫外线渗透率(决定室内化学反应速率),通风率和过滤(当使用机械通风系统)。碳氢化合物化学作用不明显。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2010年第4期|P.199-217|共19页
  • 作者单位

    Department of Environmental Physics and Meteorology, Faculty of Physics, University of Athens, Building Phys-5, University Campus, 157 84 Athens, Greece;

    rnDepartment of Environmental Physics and Meteorology, Faculty of Physics, University of Athens, Building Phys-5, University Campus, 157 84 Athens, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    indoor air quality; ventilation; deposition; office microenvironment;

    机译:室内空气质量通风;沉积办公室微环境;

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