Demonstrates how a green solvent enhances asphaltene dissolution in heavy oil, suggesting improved recovery and processing.
Heavy crude oil contains high levels of asphaltenes, which tend to aggregate and deposit in reservoir pores and pipelines, severely hindering recovery, transportation, and refining. To address the challenge of enhancing asphaltene stability and preventing operational blockage, a green, low-toxicity natural deep eutectic solvent (NaDES) based on thymol and tetradecylamine (TDA) was developed in this study. This solvent exhibits a high asphaltene solubility of ∼75 mg/mL at 25 °C. Dnsity-functional theory (DFT) calculations revealed that the dissolution is governed by hydrogen bonding (notably between –NH 2 in NaDES and S=O in asphaltene) and dispersive interactions. Key mechanisms include interfacial adhesion and wetting (adhesion force: –6.7 nN; contact angle ≈ 0°), penetration and diffusion (diffusion area ratio: 4.5), layer-to-layer exfoliation into micro-nano sheets, and improved dispersion stability. Microfluidic experiments in rough asphaltene-filled channels further demonstrated flow-dependent dissolution pattern transition from wedge-shaped to uniform, accompanied by significant surface smoothing. This work presents an efficient and sustainable NaDES-based strategy to mitigate asphaltene deposition in heavy oil production and transportation, supporting higher resource recovery, lower operational costs, and improved process sustainability.
No takes yet. Share an insight, caveat, or question.
Liu et al. (2026) studied this question.