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用于污染物去除的电纺醋酸纤维素/纳米粘土复合材料的制备

Fabrication of Electrospun Cellulose Acetate/Nanoclay Composites for Pollutant Removal.

作者信息

Tsekova Petya, Stoilova Olya

机构信息

Laboratory of Bioactive Polymers, Institute of Polymers, Bulgarian Academy of Sciences, Akad. G. Bonchev St, bl. 103A, 1113 Sofia, Bulgaria.

出版信息

Polymers (Basel). 2022 Nov 22;14(23):5070. doi: 10.3390/polym14235070.

Abstract

The creation of eco-friendly clay-based composites for pollutant removal by adsorption still remains a challenge. This problem might be successfully solved by the development of electrospun polymer-clay composites. For the first time in this study, a one-step fabrication of cellulose acetate (CA) fibers filled with commercially available nanoclays (NCs) was described. The optimal ratio at which CA/NCs dispersions remained stable was accomplished by varying the nanoclay concentration with respect to CA. Furthermore, the selected solvent system and the electrospinning conditions allowed for the successful fabrication of electrospun CA/NC composites. It was found that the composites' surface morphology was not affected by the incorporated nanoclays and was the same as that of the electrospun CA fibers. The performed analyses clearly showed that CA and nanoclays did not react during the electrospinning process. It was found that the distribution of nanoclay layers probably was a mixture of intercalated and exfoliated structures. Notably, the type of the nanoclay strongly influenced the adsorption ability of CA/NC composites toward Cr(VI) ions and MB dye. These results suggested that the fabricated CA/NC composites are suitable for pollutant removal due to their specific structure.

摘要

通过吸附作用制备用于去除污染物的环保型粘土基复合材料仍然是一项挑战。通过开发电纺聚合物-粘土复合材料,这个问题可能会得到成功解决。在本研究中,首次描述了一种一步法制备填充有市售纳米粘土(NCs)的醋酸纤维素(CA)纤维的方法。通过改变纳米粘土相对于CA的浓度,实现了CA/NCs分散体保持稳定的最佳比例。此外,所选的溶剂体系和电纺条件使得成功制备了电纺CA/NC复合材料。结果发现,复合材料的表面形态不受掺入的纳米粘土的影响,与电纺CA纤维的表面形态相同。所进行的分析清楚地表明,CA和纳米粘土在电纺过程中没有发生反应。发现纳米粘土层的分布可能是插层结构和剥离结构的混合。值得注意的是,纳米粘土的类型强烈影响CA/NC复合材料对Cr(VI)离子和亚甲基蓝染料的吸附能力。这些结果表明,所制备的CA/NC复合材料因其特定的结构而适用于污染物去除。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f78/9738163/95a374cc8a6d/polymers-14-05070-g001.jpg

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