Investigation of structural features of asphaltenes used for carbon materials synthesis by arc plasma treatment

Q1 Earth and Planetary Sciences
Andrey Grinko , Evgenia Leushina , Yuliya Petrova , Pavel Povalyaev , Alexander Pak , Arina Goncharova , Vasily Kaichev , Valentina Egorova , Kirill Cherednichenko , Dmitry Zelentsov , Tatiana Cheshkova
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Abstract

This study presents analysis of asphaltenes isolated from two crude oils: naphthenic-aromatic biodegraded oil and paraffin-naphthenic oil, which have been used as precursors for carbon materials synthesis. The aim of this study is to investigate the interrelationship between the initial structure of asphaltene and the properties of carbon materials. Based on number of spectroscopic and other data, it can be found out that the asphaltenes from napthenic-aromatic biodegraded oil contain less paraffin and more cyclic fragments (aromatic and aliphatic), that are larger and more densely stacked. The asphaltenes of paraffin-naphthenic oil contain a larger number of labile bonds and heteroatoms. Both the asphaltenes contain sulfur enclosed in thiophene and sulfide fragments, nitrogen and oxygen, which are incorporated in different units with different thermal stability. Carbon materials are obtained from both asphaltenes via plasma of an electric arc discharge. The asphaltenes undergo graphitization as a result of plasma treatment, the general trend is an elimination of functional groups and N, S, O. The yields of the carbon materials are almost equal for two studied asphaltenes, giving graphite-like materials as the major product in both cases. The carbon material obtained from the napthenic-aromatic asphaltenes is less thermally stable, the yield of nano-structures and nanofibers are higher compared to the asphaltenes from paraffinic oil, with trace metals remaining during the synthesis process. The carbon material from paraffin-naphthenic oil is amorphous with low heteroatoms content.
电弧等离子体处理合成碳材料用沥青质的结构特征研究
本文研究了从环芳烃生物降解油和石蜡环烷油两种原油中分离的沥青质,这两种原油已被用作碳材料合成的前驱体。本研究的目的是探讨沥青质的初始结构与碳材料性能之间的相互关系。通过光谱等数据分析发现,环芳烃生物降解油沥青质中石蜡含量较少,环芳烃和脂肪族环碎片含量较多,且环芳烃和脂肪族环碎片体积较大,堆积更密。石蜡环烷基油的沥青质含有较多的不稳定键和杂原子。这两种沥青质都含有被噻吩包裹的硫和硫化物碎片、氮和氧,它们以不同的单位结合,具有不同的热稳定性。碳材料是通过电弧放电等离子体从这两种沥青质中获得的。等离子体处理的结果是沥青质发生石墨化,总的趋势是官能团和N、S、o的消除。两种沥青质碳材料的产率几乎相等,这两种沥青质的主要产物都是类石墨材料。由环烷芳烃沥青质制备的碳材料热稳定性较差,纳米结构和纳米纤维的产率高于石蜡油制备的沥青质,并且在合成过程中有微量金属残留。石蜡环烷基油制备的碳材料呈无定形,杂原子含量低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Petroleum Research
Petroleum Research Earth and Planetary Sciences-Geology
CiteScore
7.10
自引率
0.00%
发文量
90
审稿时长
35 weeks
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