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Catalytic carbonization of polypropylene into cup-stacked carbon nanotubes with high performances in adsorption of heavy metallic ions and organic dyes

机译:聚丙烯催化碳化成杯状碳纳米管,对重金属离子和有机染料的吸附性能高

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摘要

A one-pot approach was demonstrated to effectively synthesize cup-stacked carbon nanotubes (CS-CNTs) through carbonization of polypropylene (PP) under the combined catalysis of halogenated compound and NiO at 700 °C. The effect of halogenated compound on the morphology, microstructure, phase structure and thermal stability of the resultant CS-CNTs was studied by scanning electron microscope, transmission electron microscope (TEM), high-resolution TEM, X-ray diffraction, Raman spectroscopy and thermal gravimetric analysis. Long, straight and surface-smooth CS-CNTs with graphene nanosheets oblique to CS-CNT axis at the angle of 21-25° were obtained when a low content of halogenated compound was added. The synergetic catalytic efficiency of combined catalysts in the carbonization of PP into CS-CNTs followed in the sequence: fluorinated compound/Nib chlorinated compound/NiO < bromated compound/NiO < iodated compound/NiO. Furthermore, the effect of halogenated compound on the degradation products of PP was analyzed. A low content of halogenated compound facilitated the formation of a large amount of light hydrocarbons with a small amount of aromatics, which promoted the coalescence and reconstruction of NiO catalyst into rhombic shape. The rhombic NiO then catalyzed the light hydrocarbons and aromatics into CS-CNTs. Finally, the resultant CS-CNTs were oxidized to prepare acid-treated CS-CNTs, which showed high performances in adsorption of heavy metallic ions and organic dyes. The adsorption kinetic and isotherms by acid-treated CS-CNTs were also studied.
机译:一锅法被证明可以在700°C的卤代化合物和NiO的联合催化下,通过聚丙烯(PP)的碳化来有效合成杯状堆叠的碳纳米管(CS-CNT)。通过扫描电子显微镜,透射电子显微镜(TEM),高分辨率TEM,X射线衍射,拉曼光谱和热学研究了卤代化合物对所得CS-CNTs的形态,微观结构,相结构和热稳定性的影响。重量分析。当添加低含量的卤代化合物时,获得了石墨烯纳米片倾斜于CS-CNT轴的角度为21-25°的长,直且表面光滑的CS-CNT。组合催化剂在PP碳化为CS-CNT中的协同催化效率依次为:氟化化合物/ Nib 氯化化合物/ NiO <溴化化合物/ NiO <碘化化合物/ NiO。此外,分析了卤代化合物对PP降解产物的影响。低含量的卤代化合物有助于形成大量的轻烃和少量的芳烃,从而促进了NiO催化剂的聚结和重构为菱形。菱形的NiO然后将轻质烃和芳烃催化成CS-CNT。最后,将所得的CS-CNT氧化以制备经酸处理的CS-CNT,其在重金属离子和有机染料的吸附方面表现出高性能。还研究了酸处理的CS-CNTs的吸附动力学和等温线。

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