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Needleless Melt-Electrospinning of Biodegradable Poly(Lactic Acid) Ultrafine Fibers for the Removal of Oil from Water

机译:可生物降解的聚乳酸超细纤维的无针熔体静电纺丝用于去除水中的油

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摘要

As environmentally friendly and degradable material, Poly(lactic acid) (PLA) ultrafine fibers are promising candidates for the removal of oil from water. In this work, a self-established needleless melt-electrospinning process was used to produce PLA ultrafine fibers with diameters in the range of 800 nm–9 µm. In order to obtain ultrafine fibers, three types of hyperbranched polymers were respectively added into the melt for electrospinning. Effects of amount and molecular weight of the added hyperbranched polymers on average fiber diameter and its distribution, and contact angle were investigated. The prepared PLA ultrafine fibers exhibited superhydrophobicity with the contact angle as high as 156°, making it a potential candidate in marine oil spill recovery. The oil sorption capability of these fibers is as high as 159, 118, and 96 g/g for motor oil, crude oil, and diesel, respectively. Even after seven cycles of reuse, the fiber still maintained about 60% of its initial capacity of sorption. The kinetics of oil sorption in the film agrees very well with the pseudo-second-order kinetic model. This work is expected to promote the mass production and application of biodegradable PLA fibers in the treatment of marine oil spill pollution.
机译:作为环保和可降解的材料,聚乳酸(PLA)超细纤维有望从水中去除油。在这项工作中,使用了一种自行建立的无针熔体静电纺丝工艺来生产直径在800 nm–9 µm范围内的PLA超细纤维。为了获得超细纤维,将三种类型的超支化聚合物分别加入到熔体中进行电纺。研究了加入的超支化聚合物的数量和分子量对平均纤维直径及其分布和接触角的影响。制备的PLA超细纤维具有超疏水性,接触角高达156°,使其成为海上溢油回收的潜在候选者。这些纤维对机油,原油和柴油的吸油能力分别高达159、118和96 g / g。即使经过七个重复使用周期,纤维仍保持其初始吸附能力的约60%。膜中吸油的动力学与伪二级动力学模型非常吻合。这项工作有望促进可生物降解的PLA纤维的大规模生产和在处理海洋溢油污染中的应用。

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