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Electrospun biocomposite: nanocellulose and chitosan entrapped within a poly(hydroxyalkanoate) matrix for Congo red removal

机译:Electrom纺生物复合材料:纳米纤维素和壳聚糖捕获在聚(羟基烷烷)基质中进行刚果红色去除

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摘要

Nano adsorbent possess notable adsorption capabilities but is difficult to recover in wastewater treatment processes. To overcome this limitation, the entrapment of nanocellulose (NCC) and chitosan (Cts) within poly(hydroxyalkanoate) (PHA) via electrospinning is proposed. The Pickering emulsion stabilized with Tween 80 formed a homogeneous NCC-Cts-PHA mixture prior to electrospinning. The resulting electrospun biocomposites were characterized with SEM, FT-IR, XrD and TGA. The electrospun biocomposites were with high porosity, rendering exposure of NCC and Cts to dye adsorption. The incorporation of nanocellulose and chitosan significantly increased the crystallinity of the electrospun biocomposites from 57.6% to 70.5%. The adsorption of Congo red dye by electrospun biocomposites fitted well with the Langmuir isotherm model and pseudo-second order kinetics, indicating a chemisorption nature. PHA2NCC (30.9%) has 3-fold higher dye removal percentage than that of PHA2Cts (10.5%). The results showed that Pickering emulsion is electrospinnable and recorded highest dye removal percentage in PHA3NCC1Cts (75.8%).
机译:纳米吸附剂具有显着的吸附能力,但难以在废水处理过程中恢复。为了克服这种限制,提出了通过静电纺丝夹在聚(羟基烷烃)(PHA)内纳入纳米纤维素(NCC)和壳聚糖(CTS)。用吐温80稳定的皮克林乳液在静电纺丝之前形成均匀的NCC-CTS-PHA混合物。通过SEM,FT-IR,XRD和TGA表征得到的电纺生物复合材料。电纺生物复合材料具有高孔隙率,NCC和CTS的曝光,以染料吸附。纳米纤维素和壳聚糖的掺入显着增加了电纺生物复合材料的结晶度从57.6%到70.5%。电纺生物复合材料的吸附刚果生物复合材料孔隙率与朗米尔等温模型和伪二次阶动力学井,表明了化学性质。 PHA2NCC(30.9%)具有3倍的染料除去百分比,比PHA2CTS(10.5%)。结果表明,皮克林乳液在PHA3NCC1CTS(75.8%)中呈现最高染料去除百分比。

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