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Fabrication and characterization of hydrogen-treated tungsten oxide nanofibers for cationic dyes removal from water

机译:用于阳离子染料的氢处理氧化钨纳米纤维的制备与表征

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The pollution of water resources by various pollutants is one of the most common challenges in all over the world, which attracts much research interest in wastewater purification. In this work, WO3 nanofibers have been used as an adsorbent for the removal of RhB molecules from aqueous solution. The nanofibers were synthesized by an electrospinning method, followed by a hydrogen annealing in the temperature of 350 degrees C to create oxygen vacancies within WO3. It is observed the hydrogen-treated WO3 nanofibers exhibit higher adsorption performance than untreated nanofibers. Our results show that the effect of hydrogen treatment on the crystal structure, morphology, and specific surface area of the nanofibers is negligible. However, the surface of hydrogen-treated WO3 nanofibers was more negatively charged due to the induced oxygen vacancies, which enhances the surface adsorption of cationic dye molecules due to the electrostatic interaction between WO3 nanofibers surface and RhB molecules. Also, the mechanism of dye adsorption on nanofibers was investigated. The results indicated that the adsorption kinetics and adsorption isotherm could be described by pseudo-second order and Langmuir models, respectively. Furthermore, the maximum equilibrium adsorption capacity of hydrogen-treated nanofibers as adsorbent for RhB was 312.5 mg/g, which is higher than the previously reported values.
机译:各种污染物的水资源污染是世界各地最常见的挑战之一,吸引了对废水净化的巨大研究兴趣。在这项工作中,WO3纳米纤维被用作从水溶液中除去RHB分子的吸附剂。通过静电纺丝方法合成纳米纤维,然后在350℃的温度下进行氢气退火,以在WO3内产生氧空位。观察到氢处理的WO3纳米纤维具有比未处理的纳米纤维更高的吸附性能。我们的研究结果表明,氢处理对纳米纤维的晶体结构,形态和比表面积的影响可忽略不计。然而,由于诱导的氧空位,氢处理的WO3纳米纤维的表面更负荷,其增强了阳离子染料分子由于WO3纳米纤维表面和RHB分子之间的静电相互作用而增强了阳离子染料分子的表面吸附。而且,研究了染色吸附机制对纳米纤维上的机制。结果表明,吸附动力学和吸附等温线可以分别由伪二次阶和Langmuir模型描述。此外,作为RHB吸附剂的氢处理纳米纤维的最大平衡吸附能力为312.5mg / g,其高于先前报道的值。

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