首页> 外文期刊>Journal of Fiber Science and Technology >High-Value-Added Application of Multi-Scale Nanofiber Membrane Derived from Recycled Waste Aramid Fibers for High-Temperature Resistance Filters
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High-Value-Added Application of Multi-Scale Nanofiber Membrane Derived from Recycled Waste Aramid Fibers for High-Temperature Resistance Filters

机译:以回收废芳纶纤维为原料的多尺度纳米纤维膜在耐高温过滤器中的高附加值应用

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摘要

A considerable amount of aramid non-woven fabrics (i.e., leftover materials, defective goods, etc.) is produced during the processing of products, leading to waste of resources as well as environmental pollution. Herein, a new strategy was proposed to fabricated multi-scale poly(m-phenylene isophthalamide) nanofiber membranes (mPMIAs) based on high-value-added application of aramid non-woven fabrics for high-temperature resistance filters. First, ultrafine PMIA nanofibers with a diameter of 17.87±8 nm (uPMIAs) and conventional PMIA nanofibers with a diameter of 112±38 nm (cPMIAs) were produced using electrospinning, and mPMIAs with different ratios of cPMIAs to uPMIAs (4:0,3:1,2:2,1:3, and 0:4) were then fabricated by adjusting the number of spin units. The results show that when the ratio of cPMIAs to uPMIAs is 2:2 (mPMIAs (2:2)), the nanofiber membrane exhibits excellent mechanical properties (fracture strength of 61.778 MPa) and thermal stability (up to 340 °C). More importantly, the mPMIAs (2:2) maintained a filtration efficiency of 98.05 for PM0.3−10 at 300 °C. A particle vehicle exhaust filter was used to capture particles with a filtration efficiency that exceeded 97.51. Hence, mPMIAs can potentially be utilized in high-temperature air filtration and industry filtration fields.
机译:在产品加工过程中会产生大量的芳纶无纺布(即边角料、不良品等),造成资源浪费和环境污染。在此,提出了一种基于芳纶无纺布在耐高温过滤器中的高附加值应用的多尺度聚(间苯二甲酰胺)纳米纤维膜(mPMIAs)的新策略。首先,采用静电纺丝法制备了直径为17.87±8 nm的超细PMIA纳米纤维(uPMIAs)和直径为112±38 nm的常规PMIA纳米纤维(cPMIAs),然后通过调整自旋单元数制备了不同cPMIA与uPMIAs比值(4:0、3:1、2:2、1:3和0:4)的mPMIA。结果表明,当cPMIAs与uPMIAs的比值为2:2(mPMIAs (2:2))时,纳米纤维膜表现出优异的力学性能(断裂强度为61.778 MPa)和热稳定性(高达340 °C)。更重要的是,在300 °C下,mPMIAs(2:2)对PM0.3−10的过滤效率为98.05%。 采用颗粒物汽车尾气过滤器捕获颗粒物,过滤效率超过97.51%。因此,mPMIA有可能用于高温空气过滤和工业过滤领域。

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