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February 21, 2026Journal of Environmental Management2 citationsOpen Access

Mechanism research and process design for the separation of dimethyl carbonate and n-propanol by extractive distillation using ionic liquid

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CSChao SunBPBin PengFXFeng Xue

Key Points

  • This work aims to explore effective methods for separating dimethyl carbonate and n-propanol using extractive distillation and ionic liquids.
  • Initial screening of extractants using the COSMO model.
  • Comparison of extraction capabilities through quantum chemistry calculations.
  • VLE data collection for DMC-NPA-[EMim][DEP]/DMSO/EG/[EMim][BF4].
  • Molecular dynamics simulation to elucidate extraction mechanism.
  • Process design and multi-objective optimization using Aspen Plus.
  • [EMim][DEP] exhibited the strongest extraction capacity compared to other extractants.
  • Extractive distillation using [EMim][DEP] showed a lower total annual cost (TAC) and reduced gas emissions.
  • TAC dropped to 1.1306 × 10^6 $/Y with a decrease in gas emissions by 11.45%.
  • Emissions were reduced to 1.6644 × 10^3 kg/Y, marking a 17.16% decrease.

Abstract

For the separation of azeotropes, extractive distillation (ED) stands out as one of the most potent methods available, and the screening of the extractant is a crucial step. Within this work, an initial screening of potential extractants was conducted using the COSMO model, and the extraction capabilities of the extractants were compared through quantum chemistry (QC) calculations, the result revealed that EMimDEP exhibited the strongest extraction capacity. Subsequently, the VLE data of DMC-NPA-EMimDEP/DMSO/EG/EMimBF4 were obtained at 101. 32 kPa. The extraction mechanism of the extractant was elucidated through molecular dynamics (MD) simulation. Finally, the separation process was designed using Aspen Plus with EMimDEP and DMSO as the extractant respectively, and multi-objective optimization was carried out for the two processes, the ED process using EMimDEP as the extractant has a lower TAC and gas emissions, which is more valuable for application. Furthermore, heat integration was carried out on the ED process, the results demonstrate that the TAC has dropped to 1. 1306 × 106 /Y, and the gas emissions have decreased to 1. 6644 × 103 kg/Y, which is reduced by 11. 45% and 17. 16%, respectively.

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Cite This Study

Sun et al. (2026) studied this question.

synapsesocial.com/papers/69994ad4873532290d01f3bchttps://doi.org/10.1016/j.jenvman.2026.129014
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