Katmanlı ve bimodal nanolifli yapılarla filtrasyon performansının artırılması

Ali Toptaş, Ali Kiliç, Ali Demi̇r
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Abstract

Particulate matter (PM) must be removed from the air because it is a serious threat to human health. Micro and/or nanoporous nonwoven fabrics are commonly used to filter these particles. In our study, the filtration performances of nanofibrous mats, which were obtained by combining fibers produced by two different production methods in a layered and bimodal manner, were evaluated. Fibrous layers produced by the meltblown (MB) method were obtained with similar fiber diameters and different thicknesses by different feeding speeds. Bimodal structures obtained by adding fibers with an average diameter of 225 nanometers produced by the solution blowing (SB) method into fibers with an average diameter of around 800 nm obtained at 1, 5 and 10 rpm screw rotating/feeding speeds had higher filtration performance than the samples without SB nanofibers. Then, among the 4 samples with an average basis weight of 15 gsm, the sample MB only without (electro-blown nanofiber); the EB sample contains only EB nanofibers; the sample (L) containing 4 gsm EB nanofibers and the 4-layer sample (4L) containing 4 gsm EB nanofibers (138 nm) were compared. The 4L sample had the highest quality factor (0.0353) with a filtration efficiency of %96.01 and a pressure drop of 135 Pa. Although the filtration efficiency increased in all samples with the subsequent corona treatment, the highest value (99.34%) was obtained from the 4L sample.
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利用分层和双模纳米纤维结构提高过滤性能
空气中的微粒物质(PM)严重威胁人类健康,因此必须将其从空气中清除。微孔和/或纳米无纺布通常用于过滤这些颗粒。在我们的研究中,对纳米纤维毡的过滤性能进行了评估,纳米纤维毡是由两种不同生产方法生产的纤维以分层和双峰方式组合而成。采用熔喷(MB)方法生产的纤维层在不同的进料速度下具有相似的纤维直径和不同的厚度。在平均直径约为 800 纳米的纤维中加入溶液喷吹(SB)法生产的平均直径为 225 纳米的纤维,以 1、5 和 10 转/分的螺杆旋转/进料速度得到的双峰结构比没有 SB 纳米纤维的样品具有更高的过滤性能。然后,在平均基重为 15 克/平方米的 4 种样品中,比较了仅不含 MB 样品(电吹纳米纤维)、仅含 EB 纳米纤维的 EB 样品、含 4 克/平方米 EB 纳米纤维的 L 样品和含 4 克/平方米 EB 纳米纤维(138 纳米)的 4 层样品(4L)。4L 样品的品质因数(0.0353)最高,过滤效率为 %96.01,压降为 135 Pa。虽然所有样品的过滤效率都随着随后的电晕处理而提高,但 4L 样品的过滤效率最高(99.34%)。
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