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Fast sorption measurements of volatile organic compounds on building materials: Part 1-Methodology developed for field applications

机译:挥发性有机化合物在建筑材料上的快速吸附测量:第1部分-为现场应用开发的方法

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Several physicochemical processes occurring within buildings are key drivers of indoor concentrations of Volatile Organic Compounds VOCs. Many models and experimental studies have been proposed to predict VOCs concentration indoors given these processes. However, there is a lack of representative data in literature to present gas surface interaction in order to validate mathematical models. This work is divided in two parts and aims to develop and validate a method to perform fast measurements of VOC sorption parameters on the field by coupling a Field and Laboratory Emission Cell (FLEC) to a Proton Transfer Reaction-Mass Spectrometer (PTR-MS). In the part 1 of the work, sorption coefficients of aromatic compounds on a gypsum board and vinyl flooring were investigated at ppb levels to test and evaluate the proposed methodology. Sorption coefficients in the range of 0.03-1.88 mh(-1) for k(a) and 2.04 -17.32 h(-1) for k(d) were successfully measured within a (0.5-8 h) for the two materials. Robustness tests highlight that the determination of sorption coefficients does not depend on operating conditions. While sorption coefficients for the gypsum board were measured with a PIR-MS time resolution of 20 s, the vinyl flooring material required measurements at a higher time resolution of 2 s due to its lower sorption properties. Limits of applicability assessed for this method indicate that sets of sorption parameters (k(a), k(d)) of (0.01 m h(-1); 0.01 h(-1)) and (0.09 m h(-1); 0.09 h(-1)) can be measured with an accuracy better than 10% at time resolutions of 2 and 20 s respectively. (C) 2016 Elsevier Ltd. All rights reserved.
机译:建筑物内发生的几种物理化学过程是室内挥发性有机化合物VOC浓度的关键驱动因素。考虑到这些过程,已经提出了许多模型和实验研究来预测室内的VOC浓度。然而,文献中缺乏代表性的数据来​​表示气体表面相互作用以验证数学模型。这项工作分为两个部分,旨在开发和验证一种通过将现场和实验室发射池(FLEC)耦合到质子转移反应质谱仪(PTR-MS)上来快速测量现场VOC吸附参数的方法。 。在工作的第1部分中,以ppb含量研究了石膏板上和乙烯基地板上芳族化合物的吸附系数,以测试和评估所提出的方法。两种材料在(0.5-8 h)内成功测量了k(a)在0.03-1.88 mh(-1)和k(d)在2.04 -17.32 h(-1)范围内的吸附系数。耐用性测试表明,吸附系数的确定不取决于操作条件。石膏板的吸附系数是在20 s的PIR-MS时间分辨率下测量的,而乙烯基地板材料由于其较低的吸附性能而需要在2 s的较高时间分辨率下进行测量。该方法评估的适用范围表明,吸附参数集(k(a),k(d))为(0.01 mh(-1); 0.01 h(-1))和(0.09 mh(-1); 0.09 h(-1))可以分别在2 s和20 s的时间分辨率下以优于10%的精度进行测量。 (C)2016 Elsevier Ltd.保留所有权利。

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