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Emission characteristics of VOCs from athletic tracks

机译:田径场中VOC的排放特性

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Dynamic and flow-through flux chambers are convenient tools for field measurements of gas or VOC emission flux from solid surfaces in the field. This study was undertaken to collect on site and quantify the emissions of volatile organic compounds (VOCs) released from athletic running tracks. Three typical types of tracks, one synthetic rubber and two tracks (types I and II) consisting mainly of polyurethane, were studied. They were all installed with adhesives and backings, both of which contributed significant amount of VOCs. VOCs released from the track surface were collected with a flux chamber and subsequently analyzed by a gas chromato- graph/mass spectrometer (GC/MS). Also, for each track and at each selected time the emission flux and mass emission were measured on site under outdoor conditions over a period of 40 min. GC/MS analyses show that the VOCs emitted include 2-methyl furan, butanal, methyl ethyl ketone, benzene, heptane, methyl isobutyl ketone, toluene + octane, hexanal, nonane + ethylbenzene, xylenes + styrene, propyl benzene, decane, l,3,5-trimethyl benzene, l,2,4-trimethyl benzene, l,2,3--trimethyl benzene and undecane. Of these, hexanal was the common and principal compound for all three types of tracks. 2-Methyl furan and methyl isobutyl ketone were the characteristic compounds for the synthetic rubber and the type II of polyurethane tracks, respectively. In the field studies, no unique compounds were found in the type I of polyurethane tracks. For each of these three types of tracks the total--VOCs emission flux was con-elated to the track age and track surface temperature. The results of multiple regression analysis showed good correlation. The type II polyurethane track had the highest decay rate, while the synthetic rubber track had the lowest decay rate.
机译:动态和流通式通量室是用于现场测量来自固体表面的气体或VOC排放通量的便捷工具。进行这项研究是为了在现场收集并量化从田径跑道释放的挥发性有机化合物(VOC)的排放。研究了三种典型的履带,一种是合成橡胶,另一种是主要由聚氨酯制成的两种履带(I和II型)。他们都安装了粘合剂和背衬,两者都贡献了大量的VOC。从磁道表面释放的VOC用通量室收集,然后用气相色谱/质谱仪(GC / MS)分析。同样,对于每个轨道和在每个选定的时间,在室外条件下在40分钟的时间内现场测量排放通量和质量排放。 GC / MS分析表明,排放的VOC包括2-甲基呋喃,丁醛,甲乙酮,苯,庚烷,甲基异丁酮,甲苯+辛烷,己醛,壬烷+乙苯,二甲苯+苯乙烯,丙基苯,癸烷, 3,5-三甲基苯,1,2,4-三甲基苯,1,2,3-三甲基苯和十一烷。其中,己醛是所有三种类型音轨的常见和主要化合物。 2-甲基呋喃和甲基异丁基酮分别是合成橡胶和聚氨酯轨道II型的特征化合物。在现场研究中,在聚氨酯轨道的I型中没有发现独特的化合物。对于这三种类型的轨道中的每一种,总的VOC排放通量与轨道寿命和轨道表面温度相关。多元回归分析的结果显示出良好的相关性。 II型聚氨酯履带的衰减率最高,而合成橡胶履带的衰减率最低。

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