Controlled autoxidation of HVGO to produce high-value carbon fibers precursors: the role of oxygen availability and naphthenic-aromatic hydrocarbons

IF 9.5 Q1 ENERGY & FUELS
Energy nexus Pub Date : 2026-03-01 Epub Date: 2025-12-09 DOI:10.1016/j.nexus.2025.100623
Mustafa M. Amin , Ajay Sharma , Mohammad M. Hossain , Muhammad N. Siddiquee
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Abstract

This study investigated the application of heavy vacuum gas oil (HVGO) as a feedstock for high-value carbon fiber precursor production through controlled autoxidation. HVGO, initially had no asphaltenes, was subjected to varying oxidation conditions, such as blowing without mixing and bubbling with mixing at different temperatures with and without addition of tetralin (a naphthenic-aromatic hydrocarbon), to enhance its asphaltenes content and modify its physicochemical properties required for carbon fiber formation. The elemental analysis and physicochemical characterization of the HVGO samples after oxidation showed that the autoxidation significantly enhanced the asphaltenes content, with the highest asphaltenes yield of 47.2 wt. %, viscosity of 117.6 Pa.s, and softening point of 210 °C achieved after 72 hours at 190°C using 5% tetralin and air blowing without mixing. It also found that tetralin addition maintaining limited oxygen conditions would help to form heavier products, desirable as carbon fiber precursor. The melt spinning of the asphaltenes from oxidized HVGO with tetralin, provided green fibers with diameters of 70 µm and carbonized fibers with diameters of 40 to 50 µm, as detected by SEM imaging analysis. The mass residues of the oxidized HVGO samples and the carbon fibers were confirmed by TGA analysis. All these observations indicated that the controlled autoxidation, especially when tetralin was added, was a potential pathway to turn low-value HVGO into high-value carbon fiber precursors. Understanding the current research can also be applied to produce high-value carbon materials for CNT, graphene, and carbon materials for energy storage applications.

Abstract Image

HVGO受控自氧化生产高价值碳纤维前体:氧可用性和环烷基芳烃的作用
研究了重真空瓦斯油(HVGO)作为原料,通过控制自氧化生产高价值碳纤维前驱体的应用。HVGO最初不含沥青质,在不同的氧化条件下,如不混合吹气和在不同温度下混合鼓泡,添加和不添加四氢萘(一种环芳烃),以提高其沥青质含量并改变其形成碳纤维所需的物理化学性质。氧化后的HVGO样品的元素分析和理化表征表明,自氧化显著提高了沥青质含量,沥青质收率最高为47.2%,粘度为117.6 Pa。5,在190℃下,用5%四氢化萘和不混合的空气吹72小时,软化点达到210℃。它还发现,四氢化萘的添加维持有限的氧气条件,将有助于形成较重的产品,理想的碳纤维前体。通过扫描电镜成像分析,四氢化萘熔融纺丝得到直径为70µm的绿色纤维和直径为40 ~ 50µm的碳化纤维。氧化后的HVGO样品和碳纤维的质量残留物通过TGA分析得到了证实。所有这些观察结果表明,控制自氧化,特别是当添加四氢化萘时,是将低价值HVGO转化为高价值碳纤维前体的潜在途径。了解目前的研究还可以应用于生产用于碳纳米管,石墨烯和用于储能应用的碳材料的高价值碳材料。
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来源期刊
Energy nexus
Energy nexus Energy (General), Ecological Modelling, Renewable Energy, Sustainability and the Environment, Water Science and Technology, Agricultural and Biological Sciences (General)
CiteScore
7.70
自引率
0.00%
发文量
0
审稿时长
109 days
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