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首页> 外文期刊>ACS Omega >Organic Liquid Impregnation Behavior into Nanofibrous Membranes: Quantitative Analysis of the Effects of Structural Parameters
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Organic Liquid Impregnation Behavior into Nanofibrous Membranes: Quantitative Analysis of the Effects of Structural Parameters

机译:纳米纤维膜中的有机液体浸渍行为:结构参数影响的定量分析。

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摘要

This paper reports the effects of structural parameters on organic liquid impregnation behavior into nanofibrous (NF) polymer membranes. The NF membranes were prepared from organic liquidphilic polymers, poly(amide-imide)s (PAIs), by electrospinning. The impregnation velocity of the organic liquid, ethylmethylcarbonate, into the as-spun PAI NF membranes with diameters ranging from 400 to 900 nm was approximately 10–20 times higher than that into commercial cellulose nonwoven membranes. Our theoretical analyses based on the Kozeny–Carman equation and multivariate statistics clearly indicate that in addition to the porosity of the membranes, the variation in fiber diameter as well as the average fiber diameter is a crucial factor for controlling the liquid impregnation behavior.
机译:本文报道了结构参数对有机液体在纳米纤维(NF)聚合物膜中的浸渍行为的影响。 NF膜是通过静电纺丝由有机亲液性聚合物(酰胺)(PAI)制成的。有机液体碳酸甲乙酯在直径为400至900 nm的初纺PAI NF膜中的浸渍速度比在商业纤维素非织造膜中的浸渍速度高10到20倍。我们基于Kozeny-Carman方程和多元统计数据的理论分析清楚地表明,除了膜的孔隙率外,纤维直径的变化以及平均纤维直径也是控制液体浸渍行为的关键因素。

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