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首页> 外文期刊>International Journal of Polymer Science >Experimental Study on the Transport of Light Gas Molecules through Low-Density Polyethylene Films
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Experimental Study on the Transport of Light Gas Molecules through Low-Density Polyethylene Films

机译:轻质气体分子通过低密度聚乙烯薄膜传输的实验研究

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An original experimental procedure for the study of gas permeation process through thin polymer films is presented. Employing mass spectroscopy techniques, this procedure allows the detection of the permeation flux with a signal-to-noise ratio large enough to obtain accurate measurements of the gas diffusivity also in processes with transient transport conditions lasting for short-interval times (~few seconds). The procedure is validated using as test material a thin low-density polyethylene (LDPE) film the transport of four test gases with different molecular sizes and condensation properties (CO2, N2, D2, and He) is studied in the 295 to 350 K temperature interval. The CO2 diffusivity values well compare with values previously obtained studying the same LDPE film samples by integral permeation technique measuring the time lag value. Original data on the diffusivity of the He and D2 penetrant molecules are reported in the examined temperature range, the diffusivity values of these small-size penetrants are in the 10−6 cm2/s range and follow an Arrhenius behavior with temperature. The activation energy values for diffusion are 18.8 ± 0.4 and 10.0 ± 0.4 kJ/mol for D2 and He, respectively.
机译:提出了一种通过聚合物薄膜研究气体渗透过程的原始实验程序。利用质谱技术,该程序允许以足够大的信噪比检测渗透通量,从而在瞬态传输条件下持续短时间间隔(约几秒钟)的过程中也能获得准确的气体扩散率测量值。 。使用低密度聚乙烯(LDPE)薄膜作为测试材料验证了该程序,并在295至350 K的温度下研究了四种具有不同分子大小和冷凝特性(CO2,N2,D2和He)的测试气体的传输间隔。 CO2扩散率值与先前通过积分渗透技术测量时滞值研究相同LDPE薄膜样品而获得的值相比较。关于He和D2渗透剂分子的扩散率的原始数据是在检查的温度范围内报告的,这些小尺寸渗透剂的扩散率值在10-6 cm2 / s的范围内,并随温度变化遵循Arrhenius行为。对于D 2和He,扩散的活化能值分别为18.8±0.4和10.0±0.4kk / mol。

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