Asphaltenes constitute a heavy aromatic crude oil fraction with a propensity to aggregate and precipitate out of solution during petroleum processing. Aggregation is thought to proceed according to the Yen-Mullins hierarchy, but the molecular mechanisms underlying mesoscopic assembly remain poorly understood. By combining coarse-grained molecular models parametrized using all-atom data with high-performance GPU hardware, we have performed molecular dynamics simulations of the aggregation of hundreds of asphaltenes over microsecond time scales. Our simulations reveal a hierarchical self-assembly mechanism consistent with the Yen-Mullins model, but the details are sensitive and depend on asphaltene chemistry and environment. At low concentrat...
Asphaltenes constitute the heaviest aromatic component of crude oil. The myriad of asphaltene molecu...
This study discusses the development of a generalized geometric population balance model for simulat...
Molecular dynamics simulations have been employed to investigate the effect of molecular polydispers...
We report classical atomistic molecular dynamics simulations of four structurally diverse model asph...
We have performed a molecular-simulation-based study to explore some of the underlying mechanisms of...
Asphaltenes, widely known as the “cholesterol of petroleum”, are the heaviest and most polarizable c...
Fully atomistic simulations of models of asphaltenes in simple solvents have allowed the study of tr...
ABSTRACT: It is well known that asphaltene molecules play a significant role in stabilizing emulsion...
International audienceThis paper addresses molecular dynamic simulations to correlate the aggregatio...
The aggregation behavior of model molecules of asphaltene subfractions A1 and A2 dissolved in heptan...
Asphaltenes are known as the 'cholesterol' of crude oil. They form nano-aggregates, precipitate, adh...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
Asphaltenes are known as the "cholesterol" of crude oil. They form nanoaggregates, precipitate, adhe...
International audienceThe challenges faced by the oil and shale industries include the comprehension...
The challenges faced by the oil and shale industries include the comprehension of the physical–chemi...
Asphaltenes constitute the heaviest aromatic component of crude oil. The myriad of asphaltene molecu...
This study discusses the development of a generalized geometric population balance model for simulat...
Molecular dynamics simulations have been employed to investigate the effect of molecular polydispers...
We report classical atomistic molecular dynamics simulations of four structurally diverse model asph...
We have performed a molecular-simulation-based study to explore some of the underlying mechanisms of...
Asphaltenes, widely known as the “cholesterol of petroleum”, are the heaviest and most polarizable c...
Fully atomistic simulations of models of asphaltenes in simple solvents have allowed the study of tr...
ABSTRACT: It is well known that asphaltene molecules play a significant role in stabilizing emulsion...
International audienceThis paper addresses molecular dynamic simulations to correlate the aggregatio...
The aggregation behavior of model molecules of asphaltene subfractions A1 and A2 dissolved in heptan...
Asphaltenes are known as the 'cholesterol' of crude oil. They form nano-aggregates, precipitate, adh...
It is well known that asphaltene molecules play a significant role in stabilizing emulsions of water...
Asphaltenes are known as the "cholesterol" of crude oil. They form nanoaggregates, precipitate, adhe...
International audienceThe challenges faced by the oil and shale industries include the comprehension...
The challenges faced by the oil and shale industries include the comprehension of the physical–chemi...
Asphaltenes constitute the heaviest aromatic component of crude oil. The myriad of asphaltene molecu...
This study discusses the development of a generalized geometric population balance model for simulat...
Molecular dynamics simulations have been employed to investigate the effect of molecular polydispers...