首页> 外文OA文献 >Desiccant Films Made of Low-Density Polyethylene with Dispersed Silica Gel—Water Vapor Absorption, Permeability (H2O, N2, O2, CO2), and Mechanical Properties
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Desiccant Films Made of Low-Density Polyethylene with Dispersed Silica Gel—Water Vapor Absorption, Permeability (H2O, N2, O2, CO2), and Mechanical Properties

机译:具有分散硅胶水蒸气吸收,渗透率(H2O,N2,O 2,CO 2)和机械性能的低密度聚乙烯制成的干燥剂薄膜。和机械性能

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摘要

Silica gel is a well-known desiccant. Through dispersion of silica gel in a polymer, films can be made that absorb and desorb water vapor. The water vapor absorption becomes reversible by exposing such films to a water vapor pressure below that of the water vapor pressure during absorption, or by heating the film. The intention of this study was to achieve a better understanding about the water vapor absorption, permeability (H2O, N2, O2, CO2), and mechanical properties of films with dispersed silica gel. Low-density polyethylene (PE-LD) monolayer films with a nominal silica gel concentration of 0.2, 0.4, and 0.6 g dispersed silica gel per 1 g film (PE-LD) were prepared and they absorbed up to 0.08 g water vapor per 1 g of film. The water vapor absorption as a function of time was described by using effective diffusion coefficients. The steady state (effective) water vapor permeation coefficients of the films with dispersed silica gel were a factor of 2 to 14 (8.4 to 60.2·10−12 mg·cm·(cm2·s·Pa)−1, 23 °C) higher than for pure PE-LD films (4.3·10−12 mg·cm·(cm²·s·Pa)−1, 23 °C). On the other hand, the steady state gas permeabilities for N2, O2, and CO2 were reduced to around one-third of the pure PE-LD films. An important result is that (effective) water vapor permeation coefficients calculated from results of sorption and measured by permeation experiments yielded similar values. It has been found that it is possible to describe the sorption and diffusion behavior of water by knowing the permeability coefficient and the sorption capacity of the film ( P eff . ≈ S eff . · D eff . ). The tensile stress changed only slightly (values between 10 and 14 N mm−2), while the tensile strain at break was reduced with higher nominal silica gel concentration from 318 length-% (pure PE-LD film) to 5 length-% (PE-LD with 0.6 g dispersed silica gel per 1 g film).
机译:硅胶是一种公知的干燥剂。通过在聚合物的硅胶分散体,可以制成膜,其吸收和放出​​的水蒸汽。水蒸气吸收变得通过暴露吸收过程中这样的膜到低于水的蒸气压的水蒸汽压力可逆的,或通过加热该膜。本研究的目的是实现对水蒸汽的吸收,透过率(H 2 O,N 2,O 2,CO 2),并具有分散硅胶膜的机械性能的更好的理解。低密度聚乙烯(PE-LD)的单层膜具有0.2的标称硅胶浓度,0.4%,和0.6g分散的二氧化硅每1g膜(PE-LD)凝胶的制备和它们吸收多达0.08克水蒸汽每1克的膜。水蒸气吸收作为时间的函数通过使用有效扩散系数描述。稳态具有分散的硅胶的膜的(有效)水蒸汽渗透系数为2至14倍(8.4至60.2·10-12毫克·厘米·(厘米2·S·Pa)的-1,23℃)比纯PE-LD膜更高(4.3·10-12毫克·厘米·(平方厘米·秒·帕)-1,23℃)。在另一方面,对于N2,O2,CO2和稳态气体渗透率被减少到大约三分之一的纯PE-LD膜。一个重要的结果是,从吸附的结果计算和测量由渗透实验(有效)水蒸汽渗透系数产生了相似的值。已经发现,有可能通过知道透过系数和膜的吸附容量来描述的水的吸附和扩散行为(P EFF。≈小号EFF。·d EFF)。仅略微改变了拉伸应力(值10和14之间的N个毫米-2),而在断裂时的拉伸应变,用较高的名义硅胶浓度降低从318长度 - %(纯PE-LD膜)至5%长度 - ( PE-LD与0.6克分散的二氧化硅每1g膜凝胶)。

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