Spectroscopic characterization of asphaltenes (a mini review)

Asphaltenes are the heaviest and most polar fraction of crude oil and pose major challenges in petroleum production, transportation, and refining. Despite extensive research, their complex molecular structure and aggregation behavior remain subjects of ongoing investigation. This review provides a critical, integrated assessment of spectroscopic techniques used for asphaltene characterization, including Fourier-transform infrared (FT-IR), Raman, nuclear magnetic resonance (NMR), ultraviolet–visible (UV–Vis), and X-ray photoelectron spectroscopy (XPS). Literature findings from these complementary methods are analyzed to evaluate their ability to reveal functional groups, aromatic core dimensions, heteroatom distributions, molecular architecture, aggregation tendencies, and metal-containing porphyrinic species. The reviewed studies demonstrate that spectroscopy consistently identifies highly aromatic molecular frameworks with variable heteroatom content and provides valuable insight into intermolecular interactions, aggregation mechanisms, colloidal stability, and deposition behavior. Furthermore, spectroscopic signatures correlate molecular structure with physicochemical properties relevant to flow assurance, reservoir performance, and refining processes. Beyond addressing industrial challenges, recent advances reveal the potential of spectroscopic characterization to support the valorization of asphaltenes as precursors for advanced carbon materials, sensors, membranes, and other functional products. The novelty of this review lies in its integrated structure–property perspective, which combines information from multiple spectroscopic techniques to establish direct links between molecular architecture, macroscopic behavior, and emerging applications of asphaltenes. Such an approach provides a framework for both mitigating asphaltene-related problems and unlocking their potential as valuable carbon-rich resources.

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Publication Details

Journal
Journal of Dispersion Science and Technology
Published
2026-09-21
DOI
https://doi.org/10.1080/01932691.2026.2727952
Primary Topic
Petroleum Processing and Analysis
Type
article
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Spectroscopic characterization of asphaltenes (a mini review)

Salim Ok, Jacob Samuel, Muhieddine A. Safa, Dawoud Bahzad
Journal of Dispersion Science and Technology
Petroleum Processing and Analysis
article

Spectroscopic characterization of asphaltenes (a mini review)

Salim Ok, Jacob Samuel, Muhieddine A. Safa, Dawoud Bahzad
article en

Abstract

Asphaltenes are the heaviest and most polar fraction of crude oil and pose major challenges in petroleum production, transportation, and refining. Despite extensive research, their complex molecular structure and aggregation behavior remain subjects of ongoing investigation. This review provides a critical, integrated assessment of spectroscopic techniques used for asphaltene characterization, including Fourier-transform infrared (FT-IR), Raman, nuclear magnetic resonance (NMR), ultraviolet–visible (UV–Vis), and X-ray photoelectron spectroscopy (XPS). Literature findings from these complementary methods are analyzed to evaluate their ability to reveal functional groups, aromatic core dimensions, heteroatom distributions, molecular architecture, aggregation tendencies, and metal-containing porphyrinic species. The reviewed studies demonstrate that spectroscopy consistently identifies highly aromatic molecular frameworks with variable heteroatom content and provides valuable insight into intermolecular interactions, aggregation mechanisms, colloidal stability, and deposition behavior. Furthermore, spectroscopic signatures correlate molecular structure with physicochemical properties relevant to flow assurance, reservoir performance, and refining processes. Beyond addressing industrial challenges, recent advances reveal the potential of spectroscopic characterization to support the valorization of asphaltenes as precursors for advanced carbon materials, sensors, membranes, and other functional products. The novelty of this review lies in its integrated structure–property perspective, which combines information from multiple spectroscopic techniques to establish direct links between molecular architecture, macroscopic behavior, and emerging applications of asphaltenes. Such an approach provides a framework for both mitigating asphaltene-related problems and unlocking their potential as valuable carbon-rich resources.

Journal of Dispersion Science and Technology
Kuwait Institute for Scientific Research (KW)
Industry, innovation and infrastructure
Openalex Percentile: Top 16%
Petroleum Processing and Analysis
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