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Liquid Sorption Behavior of Superabsorbent Fiber Based Nonwoven Media

机译:高吸收性纤维基非织造布的液体吸附行为

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摘要

Nonwovens are widely used as liquid absorbent media. Currently, superabsorbent fibers are used in nonwovens for making them less bulky yet very effective in absorbing liquids. In this work, a series of nonwovens were prepared by random mixing and layer-wise combining of superabsorbent fibers with fibers of different cross-sectional geometries. These nonwovens were studied for their liquid absorption behavior by using gravimetric testing absorption system. It was observed that in case of random mixing, the increase in weight fraction of superabsorbent fibers led to a tremendous increase in liquid sorption capacity and liquid sorption rate. When mixed randomly with superabsorbent fibers, the finer fibers exhibited better sorption characteristics than the coarser fibers, but the non-circular fibers displayed poorer sorption characteristics than the circular ones. In case of layer-wise combining, better sorption characteristics were obtained when the liquid was first challenged by the polypropylene fiber side as compared to that by superabsorbent fiber side. The superabsorbent fibers and the circular polypropylene fibers, when combined layer-wise, resulted in higher sorption capacity but lower sorption rate than those when mixed randomly.
机译:无纺布被广泛用作液体吸收介质。当前,超吸收性纤维被用于非织造物中以使它们的体积减小,但是在吸收液体中非常有效。在这项工作中,通过将超吸收性纤维与不同横截面几何形状的纤维进行随机混合和分层组合,制备了一系列非织造布。使用重量测试吸收系统研究了这些非织造布的液体吸收行为。观察到在无规混合的情况下,超吸收性纤维的重量分数的增加导致液体吸收容量和液体吸收速率的极大增加。当与超吸收性纤维随机混合时,较细的纤维比较粗的纤维表现出更好的吸附特性,但非圆形的纤维比圆形的纤维表现出较差的吸附特性。在分层组合的情况下,当液体首先被聚丙烯纤维侧挑战时,与超吸收性纤维侧相比,获得了更好的吸附特性。分层组合时,超吸收性纤维和圆形聚丙烯纤维比随机混合时具有更高的吸收能力,但吸收率却更低。

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