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Study of effect of adsorptive building material on formaldehyde concentrations: development of measuring methods and modeling of adsorption phenomena

机译:吸附性建筑材料对甲醛浓度的影响研究:测量方法的发展和吸附现象的建模

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In this paper, a method is developed to assess the performance of adsorptive building materials that are used for reducing indoor pollutant concentrations. Mass transfer has a great influence on the materials' performance. To control the mass transfer rate precisely in the performance test, the authors have developed the Boundary-Layer-Type Small Test Chamber in which airflow along the test materials can be controlled precisely. A new index of adsorption performance, the equivalent ventilation rate (Q_(ads)), is defined that corresponds to the mass transfer coefficient when the surface pollutant concentration is zero. Modeling and experimental verification of adsorption were done, demonstrating the pollutant concentration decrease caused by adsorptive building materials. The pollutant reduction phenomena were modeled, including pollutant degradation by chemical reaction and adsorption in building materials. Adsorption tests of gypsum board containing a substance that decomposes HCHO within the board are reported. The adsorption rate of the gypsum board predicted by numerical analysis (CFD, Computational Fluid Dynamics) corresponds well with experimental results.
机译:在本文中,开发了一种方法来评估用于降低室内污染物浓度的吸附性建筑材料的性能。传质对材料的性能影响很大。为了在性能测试中精确控制传质速率,作者开发了边界层型小型测试室,可以精确控制沿着测试材料的气流。定义了一种新的吸附性能指标,即当量通风率(Q_(ads)),它对应于表面污染物浓度为零时的传质系数。对吸附进行了建模和实验验证,证明了吸附性建筑材料引起的污染物浓度降低。对污染物减少现象进行了建模,包括通过化学反应和建筑材料吸附引起的污染物降解。据报道,石膏板中含有分解HCHO的物质的吸附测试。通过数值分析(CFD,计算流体动力学)预测的石膏板的吸附速率与实验结果非常吻合。

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