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Effect of Solvent Vapor Treatment on Electrospun Nylon 6,6 Nanofiber Membrane

机译:溶剂蒸气处理对电纺6,6纳米纤维膜的影响

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This paper highlights the effect of solvent vapor treatment on characterization of electrospun nanofiber membrane (ENM). Fouling issue in membrane separation has becoming a debate since it reduces the lifetime of the membrane. In order to solve this issue, ENM has been recommended due to its great performance in terms of filtration, permeability and stability. However, ENM has several drawbacks such as low mechanical strength and loosely packed layers of nanofibers. Thus, solvent vapor treatment was used to solve this issue. In this study, nylon 6, 6 was fabricated as ENM and was exposed to formic acid as solvent vapor treatment. Solvent vapor treatment helps to increase the bonding of fiber by promoting crosslinking at the junction of fiber thus making the membrane mechanically durable. By controlling the solvent vapor exposure time, excessive fusion between the fibers can be prevented as over-crosslinking would reduce membrane permeability. Solvent vapor treatment also reduces the number of layers of ENM, by making it more closely packed and reduces the risk of membrane delamination. All treated ENM were found to be more hydrophilic and has lower surface roughness, which would make them more resistant towards fouling than the untreated one.
机译:本文突出了溶剂蒸气处理对电纺纳米纤维膜(铕)表征的影响。膜分离中的污垢问题变得成为辩论,因为它减少了膜的寿命。为了解决这个问题,由于在过滤,渗透率和稳定性方面,由于其具有良好性能而推荐了欧洲责任。然而,恩姆具有几个缺点,例如低机械强度和松散的纳米纤维层。因此,使用溶剂蒸气处理来解决这个问题。在该研究中,尼龙6,6制造为enm,并作为溶剂蒸汽处理暴露于甲酸。溶剂蒸汽处理有助于通过在纤维结处促进交联,增加纤维的键合,从而使膜机械耐用。通过控制溶剂蒸气暴露时间,可以防止纤维之间的过度融合,因为过度交联会降低膜渗透性。溶剂蒸汽处理还通过使其更紧密地填充并降低膜分层的风险来降低烯端的数量。发现所有处理的烯株都是更亲水的并且具有较低的表面粗糙度,这将使它们更耐抗污染而不是未处理的浓度。

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