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Simple and effective method to measure the diffusion coefficient of organic vapors in porous media

机译:测量多孔介质中有机蒸气扩散系数的简单有效方法

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A quick and reliable method to measure a vapor concentration within porous substrate was developed. The technique consists of two steps, where a modified head space single drop microextraction (HS-SDME) sampling is used to entrap the vapor phase. In the second step, the entrapped vapor concentration is measured by gas chromatography (GC-FID). The technique is used to measure an effective diffusion coefficient of n-pentane in dry medium grain sand, with the sand partially saturated with water as an inert liquid. The measurements are carried out in a cylindrical sand holder on which the HS-SDME sampling ports are mounted. A linear vapor concentration profile along the bed thickness is found. From known concentration gradient and measuring the mass flux gravimetrically, the effective diffusion coefficient is determined. It turns out that the diffusion coefficient decreases from 8.49 x 10~(-6) for dry sand to 7.13 x 10~(-6) m~2 s~(-1) as a function of water saturation. Additional hindrance to the vapor transport is observed from both the simple volumetric effect due to the porous medium void space reduction caused by the presence of water and increase of the tortuosity.
机译:开发了一种快速可靠的方法来测量多孔基材中的蒸气浓度。该技术包括两个步骤,其中使用改进的顶空单滴微萃取(HS-SDME)采样来捕获气相。在第二步骤中,通过气相色谱法(GC-FID)测量夹带的蒸气浓度。该技术用于测量正戊烷在干燥的中型砂中的有效扩散系数,其中砂中的部分饱和水为惰性液体。测量是在圆柱形砂架上进行的,砂架上装有HS-SDME采样口。发现沿着床厚度的线性蒸气浓度分布。根据已知的浓度梯度并以重量法测量质量通量,即可确定有效扩散系数。结果表明,作为水饱和度的函数,扩散系数从干沙的8.49 x 10〜(-6)降至7.13 x 10〜(-6)m〜2 s〜(-1)。从由于水的存在引起的多孔介质空隙减少和由于曲折度的增加而产生的简单的体积效应,都观察到了对蒸气传输的另外的阻碍。

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