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Validation of a passive flux sampler for on-site measurement of formaldehyde emission rates from building and furnishing materials

机译:验证被动式通量采样器以现场测量建筑和装修材料中的甲醛释放量

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摘要

A diffusive sampling device was developed for screening indoor sources of formaldehyde and determining the emission rates of these sources on-site. It consists of a glass Petri dish containing a quartz filter coated with 2,4-dinitrophenylhydrazine (DNPH) which is placed on the tested material for sampling. Formaldehyde emitted from the material diffuses through the air column inside the sampler and is collected onto the DNPH filter. The formaldehyde emission rate is determined from the mass collected by the sampler. The dependence of the sampled formaldehyde amount on the diffusion length inside the sampler was examined and led us to select a length of 20 mm for which the diffusion in the air layer controls the mass transfer from the material to the sampling surface (filter). A linear relationship with a high correlation (r~2 = 0.97) was obtained between the mass collected by the passive flux sampler and the emission rates measured by a standard chamber method, analysing a large series of indoor materials with the two methods in parallel. Neither the sampling time (ranging from 4 to 8 h) nor the temperature (from 23 to 35 °C) was observed to influence the sampler performance. Furthermore, the detection limit attained 1.2 μg m~(-1) h~(-1) for a 6h-sampling time and a satisfying precision of replicate measurements (relative standard deviation of 7.8% on average) is adequate for monitoring the emission rates of primary sources contributing to formaldehyde indoor concentrations.
机译:开发了一种扩散采样装置,用于筛选室内甲醛源并现场确定这些源的排放率。它由玻璃陪替氏培养皿组成,该培养皿包含涂有2,4-二硝基苯肼(DNPH)的石英滤光片,将其置于被测材料上进行采样。从材料散发出的甲醛通过采样器内的空气柱扩散,并收集到DNPH过滤器上。甲醛释放速率由采样器收集的质量确定。检查了采样甲醛量对采样器内部扩散长度的依赖性,使我们选择了20 mm的长度,空气层中的扩散量控制着从材料到采样表面(过滤器)的质量传递。被动通量采样器收集的质量与标准室法测量的排放率之间具有高相关性(r〜2 = 0.97)的线性关系,使用这两种方法并行分析大量室内材料。采样时间(从4到8 h)和温度(从23到35°C)都没有影响采样器性能。此外,在6h的采样时间内达到1.2μgm〜(-1)h〜(-1)的检出限和令人满意的重复测量精度(相对标准偏差平均为7.8%)足以监测排放速率导致室内甲醛浓度升高的主要来源

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