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首页> 外文期刊>Adsorption Science & Technology >Fabrication and characterization of ZrO2 nanofibers by critical bubble electrospinning for high-temperature-resistant adsorption and separation
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Fabrication and characterization of ZrO2 nanofibers by critical bubble electrospinning for high-temperature-resistant adsorption and separation

机译:ZrO2纳米纤维通过临界气泡静电纺丝制备和表征高温吸附和分离

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摘要

In this study, a novel and simple approach to fabricate zirconium dioxide (ZrO2) nanofibers by critical bubble electrospinning and subsequent thermal treatment was reported. The influences of different matrixes, weight percentages, heating rates, post-processing techniques, and with/without carbonization were discussed. The fiber size grew linearly with the increasing amounts of particles added. In addition, ZrOCl2/PAN composite fibers were converted to ZrO2 nanofibers after high-temperature calcination, whose crystal structure was cubic phase of ZrO2 after 1000 degrees C, and the obtained ZrO2 nanofibers shows excellent high-temperature-resistant adsorption and separation properties.
机译:在本研究中,报道了一种通过临界气泡静电纺丝和随后的热处理制备二氧化锆(ZrO2)纳米纤维的一种新颖简单的方法。 讨论了不同基质,重量百分比,加热速率,后处理技术和与/不碳化的影响。 纤维尺寸随着添加量的增加的颗粒而延伸线性。 此外,在高温煅烧后,Zrocl2 /平底锅复合纤维在高温煅烧后转化为ZrO2纳米纤维,其晶体结构是ZrO 2的立方相后,并且得到的ZrO2纳米纤维显示出优异的高温吸附和分离性能。

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