Crystal structure of asphaltene under mechanical stress of ball milling

Fahad Al-Ajmi, Jun Li*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

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Abstract

This work aims to investigate the structural behaviour of asphaltene under mechanical stress using ball milling. Asphaltene samples were collected and separated from Kuwait export crude using n-heptane and subsequently ball milled for up to 24 h. X-ray diffraction was used to provide an insight into asphaltene macrostructure properties, which subsequently utilised to determine crystallite parameters. The results showed that the mechanical stress has a great influence on these structural parameters, with an increase of the aromatic sheet's inter-layer distance from 3.6 Å to 3.9 Å. While the height of stacked aromatic sheets per cluster and the number of stacked aromatic sheets per cluster decreased from 24.6 Å to 9.3 Å and 8 to 3.2, respectively. A significant increment in the aromaticity value was also observed after the ball milling experimentations, indicating mechanical stress induces cyclisation and aromatisation. The XRD profiles of the higher milling time samples reveals a high background intensity. This suggests a formation and/or increasing the proportion of highly disordered materials. In addition, the effects magnitude on asphaltene crystal parameters between the mechanical stress against heat stress was compared. The results showed core structural parameters are more sensitive to mechanical stress over heat stress.
Original languageEnglish
Article number108119
Number of pages10
JournalFuel Processing Technology
Volume263
Early online date27 Aug 2024
DOIs
Publication statusPublished - 1 Nov 2024

Funding

The authors gratefully thank the Kuwait Institute for Scientific Research for their financial support to Fahad Alajmi. Also, the authors would like to thank Dr. Faisal AlHumaidan for his support throughout this research.

Keywords

  • asphaltene
  • XRD analysis
  • ball milling
  • crystal structure analysis

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