4.7 Article

Molecular mechanism and extraction performance evaluation of diethylene glycol-based DES for extraction desulfurization process of fuel oil

期刊

JOURNAL OF MOLECULAR LIQUIDS
卷 353, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.molliq.2022.118785

关键词

Deep eutectic solvents; Thiophenes; Quantum chemistry; Molecular dynamics simulation; Interaction mechanism

资金

  1. National Natural Science Foundation of China [22078166]

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The article introduces the impact of the full implementation of China's National VI emission standards on the automotive industry, as well as the screening method using deep eutectic solvents (DESs) to extract DBT from Heptane + DBT mixtures. Quantum chemistry calculations and molecular dynamics simulations were used to study the extraction mechanism of DESs and the behavior of sulfides in DESs, and the effects of process parameters and thiophene compounds on desulfurization were studied.
From July 1, 2020, China has fully implemented the most stringent National VI emission standards for automobiles. Thiophenes (TPs) are main form of sulfur compounds in China crude oil. More than 80% of TPs is composed of dibenzothiophene (DBT). The upgrade of emission regulations will drive technological upgrades. Deep eutectic solvent (DESs) has great potential for industrial application because of its simple preparation, low cost and high extraction rate. Based on the quantum chemistry (QC), this work proposed a screening method for DESs to extract DBT from Heptane + DBT mixtures. Through quantum chemical (QC) calculation, the probability distribution of surface charge density a (a-profile) was obtained, and suitable DES was selected as the extractant. Molecular dynamics (MD) simulation of the microscopic behavior of the involved DESs and mixtures was carried out, and the diffusion and aggregation behavior of sulfides in DES were studied. Through the analysis of intermolecular interaction energy, radial distribution function, spatial distribution function and self-diffusion coefficient, the formation of DESs and the extraction mechanism of DBT as well as the influence of hydrogen bond acceptors (HBA)/ hydrogen bond donors (HBD) type and molar ratio were explained. The effects of process parameters and thiophene compounds on desulfurization were studied. (C)& nbsp;2022 Elsevier B.V. All rights reserved.

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