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首页> 外文期刊>European Polymer Journal >Modelling the transport of toluene liquid in protective polymer gloves using a fluorescent dye-tracing technique
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Modelling the transport of toluene liquid in protective polymer gloves using a fluorescent dye-tracing technique

机译:使用荧光染料示踪技术模拟保护性聚合物手套中甲苯液体的传输

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The absence of adequate information about the phase change of liquid solvents within polymer-glove walls hinders the complete characterisation of the mass transfer of toluene liquid through the polymer membranes using the data obtained from ASTM F739 method for toluene liquid permeation testing. Therefore, an alternative fluorescent dye-tracing technique is used to account for the transport processes of toluene liquid through polymer gloves. The results of dye penetration experiments show that the displacement of liquid-phase toluene is proportional to the square root of immersion time, indicating that the transport behaviour of liquid-phase toluene is dominated by Fickian diffusion. Furthermore, a linear relationship between the mass sorption of toluene vapour and the sampling time is established, which suggests that the diffusion process in the vapour-phase toluene is governed by Case-II transport. Based on the combined analysis of the results obtained from permeation tests, immersion tests, fluorescent dye-tracer tests, and the pertinent calculations of thermodynamic properties, an evidence-based mechanism for the mass transfer of toluene liquid through the polymer-glove walls is proposed in terms of time-series processes. The model comprises three regimes: a liquid phase, a combined liquid-vapour phase, and a vapour phase of toluene that exist in series within the membrane. (C) 2015 Elsevier Ltd. All rights reserved.
机译:缺少关于聚合物手套壁内液体溶剂相变的足够信息,这妨碍了甲苯液体通过ASTM F739方法获得的用于甲苯液体渗透测试的数据完整表征甲苯液体通过聚合物膜的传质。因此,一种替代的荧光染料示踪技术用于解决甲苯液体通过聚合物手套的运输过程。染料渗透实验的结果表明,液相甲苯的位移与浸没时间的平方根成正比,表明液相甲苯的传输行为受菲克安扩散的支配。此外,建立了甲苯蒸气的质量吸附与采样时间之间的线性关系,这表明气相相甲苯中的扩散过程受Case-II输运控制。在对渗透测试,浸入测试,荧光染料示踪测试以及热力学性质的相关计算结果进行综合分析的基础上,提出了一种基于证据的甲苯液体通过聚合物手套壁传质的机理。就时序过程而言。该模型包括三种状态:在膜内串联存在的液相,组合的液相和甲苯气相。 (C)2015 Elsevier Ltd.保留所有权利。

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