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Low-resistance, Dual-purpose Air Filter Releasing Negative Ions and Effectively Capturing PM_(2.5)

机译:低电阻,两用空气过滤器释放负离子,有效地捕获PM_(2.5)

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The fatal danger of pollution due to particulate matter (PM) calls for both high-efficiency and low-resistance air purification materials, which also provide healthcare. This is, however, still a challenge. Herein, a low-resistance air filter capable of releasing negative ions (NIs) and efficiently capturing PM_(2.5) was prepared by electrospinning polyvinylidene fluoride (PVDF) fibers doped with negative ions powder (NIPs). The air-resistance of fibrous membranes decreased from 9.5 to 6 Pa (decrease of 36%) when the average fiber diameter was decreased from 1.16 to 0.41 urn. Moreover, the lower rising rate of air-resistance with reduction in pore size, for fibrous membranes with thinner fiber diameter was verified. In addition, a single PVDF/NIPs fiber was provided with strong surface potentials, due to high fluorine electronegativity, and tested using atomic force microscopy. This strong surface potential resulted in higher releasing amounts of NIs (RANIs). Interestingly, reduction of fiber diameter favored the alleviation of the shielding effects on electric field around fibers and promoted the RANIs from 798 to 1711 ions cc~(-1). Moreover, by regulating the doping contents of NIPs, the RANIs increased from 1711 to 2818 ions cc~(-1). The resultant fibrous membranes showed low air resistance of 40.5 Pa. Field-tests conducted in Shanghai showed stable PM_(2.5) purification efficiency of 99.99% at high RANIs, in the event of haze.
机译:由于颗粒物质(PM)呼吁污染造成的致命危险,呼吁高效率和低阻空气净化材料,该材料也提供医疗保健。然而,这仍然是一项挑战。这里,通过掺杂有负离子粉末(NIPS)的电纺丝聚偏二氟乙烯(PVDF)纤维制备能够释放负离子(NIS)和有效地捕获PM_(2.5)的低阻空气过滤器。当平均纤维直径从1.16降低到0.41瓮时,纤维膜的抗空阻力从9.5至6pa(减少36%)。此外,验证了纤维膜的毛膜较低的较低的毛膜较低的上升率,用于纤维直径较薄的纤维膜。另外,由于高氟电阻,并且使用原子力显微镜测试,具有强表面电位的单个PVDF / NIPS纤维。这种强大的表面潜力导致NIS(RANIS)的更高释放量。有趣的是,纤维直径的降低有助于减轻对纤维的电场上的屏蔽效果,并从798至1711离子CC〜(-1)中促进RANIS。此外,通过调节咬合的掺杂含量,RANI从1711增加到2818离子Cc〜(-1)。所得纤维膜显示出40.5 PA的空气阻力低。在上海进行的野外试验显示在雾度时,在高兰尼斯的稳定PM_(2.5)净化效率为99.99%。

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