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首页> 外文期刊>Inorganica Chimica Acta >Carbon nanotube based metal-organic framework nanocomposites: Synthesis and their photocatalytic activity for decolorization of colored wastewater
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Carbon nanotube based metal-organic framework nanocomposites: Synthesis and their photocatalytic activity for decolorization of colored wastewater

机译:基于碳纳米管基金属骨架纳米复合材料:用于脱色着色废水的合成及其光催化活性

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摘要

Herein, Materials Institute Lavoisier (MIL-125(Ti))/carbon nanotube (CNT) nanoporous composites (MIL/CNT) were synthesized by hydrothermal method. Different amounts of CNT (0.01 g and 0.03 g) were used to synthesize nanocomposites (denoted as MIL/CNT(0.01) and MIL/CNT(0.03), respectively). The synthesized nanomaterials (MIL, MIL/CNT(0.01) and MIL/CNT(0.03)) were characterized by XRD, FTIR, TGA, BET, SEM, and zeta potential and used for photocatalytic dye degradation. Reactive Black 5 (RB5) was used as a model pollutant. The zeta potential of MIL and MIL/CNT (0.01) were - 27.7 mV and 19.2 mV, respectively. The data showed that that MIL/CNT(0.01) nanocomposite had higher photocatalytic dye degradation due to the synergistic effect of CNT. Dye decolorization by the nanomaterials followed the zero-order kinetics reaction. The decolorization rate was 0.0015, 0.0019, 0.0024 mg/L min for MIL, MIL/CNT(0.01) and MIL/CNT(0.03), with the correlation coefficient of 0.9639, 0.9906, and 0.9757, respectively. The synthesized catalysts were reusable over two cycles.
机译:这里,通过水热法合成材料研究所(MIL-125(TI))/碳纳米管(CNT)纳米多孔复合材料(MIL / CNT)。使用不同量的CNT(0.01g和0.03g)来合成纳米复合材料(分别表示为MIL / CNT(0.01)和MIL / CNT(0.03))。通过XRD,FTIR,TGA,BET,SEM和Zeta电位,表征合成的纳米材料(MIL,MIL / CNT(0.01)和MIL / CNT(0.03))并用于光催化染料降解。反应性黑色5(RB5)用作模型污染物。 MIL和MIL / CNT(0.01)的Zeta电位分别为-27.7mV和19.2 mV。数据显示,由于CNT的协同效应,MIL / CNT(0.01)纳米复合材料具有更高的光催化染料降解。纳米材料的染料脱色沿零级动力学反应。 MIL,MIL / CNT(0.01)和MIL / CNT(0.03)的脱色速率为0.0015,00019,00024mg / l min,分别具有0.9639,0.906和0.9757的相关系数。合成的催化剂可重复使用超过两个循环。

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