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The effects of microwave regeneration on adsorptive performance of functionalized carbon nanotubes

机译:微波再生对功能化碳纳米管吸附性能的影响

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In this study, the microwave regeneration method was applied to investigate the properties and adsorptive performance of functionalized carbon nanotubes (f-CNTs) in different cycles of regeneration/reuse. For this purpose, an organic and hazardous dye (Reactive Blue 19) was chosen as a widely used pollutant. N-2 adsorption/desorption isotherms, scanning electron microscopy and Fourier transform infrared spectroscopy were used to characterize f-CNTs during the regeneration/reuse procedure. The morphology, specific surface area and pore volume of f-CNT samples were not significantly altered. However, the functional groups present on the f-CNTs' surface were gradually removed after successive cycles of regeneration/reuse. A sudden decrease of adsorption capacity (about 20%) after the first cycle of regeneration/reuse was attributed to the elimination of functional groups interacting with the dye molecules because of the molecular-level heating. Relatively high regeneration efficiencies (73.30 to 80.16%) proved that the microwave regeneration method was successful. Very high step stripping efficiencies (80.16 to 98.02%) in four cycles of regeneration/reuse demonstrated that the microwave regeneration method could be utilized in consecutive cycles. After four cycles of regeneration/reuse, the CNTs could not be considered as functionalized.
机译:在这项研究中,微波再生方法用于研究功能化碳纳米管(f-CNTs)在不同再生/再利用循环中的性质和吸附性能。为此,选择了一种有机且有害的染料(活性蓝19)作为广泛使用的污染物。在再生/再利用过程中,使用N-2吸附/脱附等温线,扫描电子显微镜和傅立叶变换红外光谱来表征f-CNT。 f-CNT样品的形态,比表面积和孔体积没有明显改变。但是,在连续的再生/再利用循环之后,f-CNTs表面上存在的官能团逐渐被除去。在第一个再生/再利用循环后,吸附能力突然下降(约20%),这归因于由于分子级加热而消除了与染料分子相互作用的官能团。较高的再生效率(73.30至80.16%)证明了微波再生方法是成功的。在四个再生/再利用循环中,非常高的分步汽提效率(80.16至98.02%)表明,微波再生方法可用于连续的循环中。经过四个循环的再生/再利用后,CNT不能视为功能化的。

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