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首页> 外文期刊>New Journal of Chemistry >The synthesis and characterization of tributyl phosphate grafted carbon nanotubes by the floating catalytic chemical vapor deposition method and their sorption behavior towards uranium
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The synthesis and characterization of tributyl phosphate grafted carbon nanotubes by the floating catalytic chemical vapor deposition method and their sorption behavior towards uranium

机译:浮动催化化学气相沉积法合成磷酸三丁酯接枝的碳纳米管及其表征及其对铀的吸附行为

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摘要

Carbon nanotubes (CNTs) were synthesized by the floating catalytic chemical vapor deposition technique using ferrocene in benzene as the hydrocarbon source. The functionalization of CNTs was carried out by oxidation (CNT-OX) and grafting with a tributyl phosphate (TBP) ligand (CNT-TBP). Various spectroscopic techniques including scanning electron microscopy (SEM), Fourier Transform Infra Red Spectroscopy (FTIR), BET surface area and X-ray photoelectron spectroscopy (XPS) were used to characterize the adsorbents. FTIR and XPS studies revealed the efficient grafting of the TBP ligand on the CNT surface. The effect of the initial pH and the contact time for the maximum adsorption of U(VI) with CNT-plain, CNT-OX and CNT-TBP was studied. The spontaneity of the sorption was confirmed by thermodynamic data. A pseudo second order model with a regression coefficient of >0.978 was obtained for CNT-TBP and equilibrium was reached within 3 h. The Langmuir maximum adsorption capacity of U(VI) at pH 5 for CNT, CNT-OX and CNT-TBP was found to be 66.6, 100.0 and 166.6 mg g(-1) respectively. Using 0.1 M HCL as a desorbent, recyclability studies were carried out for three cycles. The probable mechanism of adsorption between U(VI) and CNT-TBP could be understood through FTIR and XPS techniques.
机译:以苯中的二茂铁为烃源,通过浮式催化化学气相沉积技术合成了碳纳米管。通过氧化(CNT-OX)并接枝磷酸三丁酯(TBP)配体(CNT-TBP)进行CNT的功能化。包括扫描电子显微镜(SEM),傅里叶变换红外光谱(FTIR),BET表面积和X射线光电子能谱(XPS)在内的各种光谱技术都用于表征吸附剂。 FTIR和XPS研究揭示了TBP配体在CNT表面的有效接枝。研究了初始pH值和接触时间对U(VI)最大吸附碳纳米管,碳纳米管和碳纳米管的影响。通过热力学数据证实了吸附的自发性。对于CNT-TBP,获得了回归系数> 0.978的伪二级模型,并在3 h内达到平衡。发现在pH为5时,U(VI)对CNT,CNT-OX和CNT-TBP的Langmuir最大吸附容量分别为66.6、100.0和166.6 mg g(-1)。使用0.1 M HCl作为脱附剂,进行了三个循环的可回收性研究。通过FTIR和XPS技术可以了解U(VI)和CNT-TBP之间可能的吸附机理。

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