Nanoaggregates of Diverse Asphaltenes by Mass Spectrometry and Molecular Dynamics

Asphaltene nanoaggregates from three diverse source materialscoal-derived asphaltenes dominated by aromatic carbon, petroleum asphaltenes with comparable abundances of aromatic and aliphatic carbon, and immature source-rock asphaltenes dominated by aliphatic carbonare examined by means of surface-...

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Bibliographic Details
Published inEnergy & fuels Vol. 31; no. 9; pp. 9140 - 9151
Main Authors Wang, Weiguo, Taylor, Cooper, Hu, Hui, Humphries, Kathryn L, Jaini, Arjun, Kitimet, Michael, Scott, Thais, Stewart, Zach, Ulep, Kevin John, Houck, Shannon, Luxon, Adam, Zhang, Boyi, Miller, Bill, Parish, Carol A, Pomerantz, Andrew E, Mullins, Oliver C, Zare, Richard N
Format Journal Article
LanguageEnglish
Published American Chemical Society 21.09.2017
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Summary:Asphaltene nanoaggregates from three diverse source materialscoal-derived asphaltenes dominated by aromatic carbon, petroleum asphaltenes with comparable abundances of aromatic and aliphatic carbon, and immature source-rock asphaltenes dominated by aliphatic carbonare examined by means of surface-assisted laser desorption ionization mass spectrometry (SALDI-MS) coupled with laser desorption laser ionization mass spectrometry (L2MS). All three types of asphaltenes form nanoaggregates with aggregation numbers close to 7. Molecular dynamics calculations for proposed island molecular structures show the important roles that π-stacking and alkane steric hindrance play in nanoaggregate formation and structure. These results are discussed in terms of entropy and enthalpy changes. All results are consistent with the Yen-Mullins model, which bodes well for its expanded use in oilfield reservoir evaluations.
ISSN:0887-0624
1520-5029
DOI:10.1021/acs.energyfuels.7b01420