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表面改性碳的堆叠结构对正戊烷吸附的影响。

Influence of stacked structure of carbons modified on its surface on n-pentane adsorption.

作者信息

Carvajal-Bernal Ana María, Gómez-Granados Fernando, Giraldo Liliana, Moreno-Piraján Juan Carlos

机构信息

Departamento de Química, Facultad de Ciencias, Universidad Nacional de Colombia, Sede Bogotá, Colombia.

Laboratorio de Sólidos Porosos y Calorimetría, Departamento de Química, Facultad de Ciencias, Universidad de los Andes, Colombia.

出版信息

Heliyon. 2019 Jan 25;5(1):e01156. doi: 10.1016/j.heliyon.2019.e01156. eCollection 2019 Jan.

Abstract

In this study, the microstructure of a series of activated carbons modified on its chemistry surface was evaluated from X-ray diffraction and porous structure analysis, and the effect of the stacked graphitic structure on the n-pentane adsorption capacity. The activated carbons were prepared modifying an activated carbon (obtained from coconut shell) by carbonization processes at 1073, 1173 and 1273 K and impregnation with 65% nitric acid solution, 60% phosphoric acid solution and reflux with 30% ammonium hydroxide solution. The activated carbons were characterized by N adsorption at 77 K. It was found that these are essentially microporous materials with surface areas between 469 and 1113 m g, and the evaluation of the microstructure was performed by determining the number of aromatic layers stacked from the analysis of the observed diffraction peak between 20-30° 2θ which corresponds to the 002 reflection in the plane of the coal using the STACK XRD technical. The results showed that impregnation as carbonization favours the development of the crystalline structure to the activated carbons, which is shown by the increase of the stacked structure at the same time; this favours the n-pentane adsorption

摘要

在本研究中,通过X射线衍射和多孔结构分析对一系列化学表面改性的活性炭微观结构进行了评估,并研究了堆叠石墨结构对正戊烷吸附容量的影响。通过在1073、1173和1273K温度下碳化处理由椰壳制得的活性炭,并分别用65%硝酸溶液浸渍、60%磷酸溶液浸渍以及用30%氢氧化铵溶液回流处理来制备活性炭。通过在77K下进行氮气吸附对活性炭进行表征。结果发现这些活性炭本质上是微孔材料,其表面积在469至1113m²/g之间,并且利用STACK XRD技术通过分析在20 - 30°2θ之间观察到的衍射峰(对应于煤平面中的002反射)来确定堆叠的芳香层数,从而对微观结构进行评估。结果表明,浸渍和碳化有利于活性炭晶体结构的发展,这同时表现为堆叠结构的增加;这有利于正戊烷的吸附

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6bdf/6351434/357afa5a7a26/gr1.jpg

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