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Extractive denitrogenization of liquid model fuel using polyethylene glycol methyl ether 350
Authors:Vitaliy O Solov'ev  Svetlana V Solov'eva  Yulia A Zakhodyaeva  Andrey A Voshkin
Affiliation:1. Kurnakov Institute of General and Inorganic Chemistry of Russian Academy of Sciences, Moscow, Russia

Contribution: Formal analysis, ​Investigation, Methodology, Writing - original draft;2. Kurnakov Institute of General and Inorganic Chemistry of Russian Academy of Sciences, Moscow, Russia

MIREA—Russian Technological University, Moscow, Russia

Contribution: Formal analysis, ​Investigation, Methodology, Writing - original draft;3. Kurnakov Institute of General and Inorganic Chemistry of Russian Academy of Sciences, Moscow, Russia

Contribution: Conceptualization, Data curation, Supervision, Validation, Writing - review & editing;4. Kurnakov Institute of General and Inorganic Chemistry of Russian Academy of Sciences, Moscow, Russia

Abstract:In the present study, we studied the effectiveness of the water-soluble polymer polyethylene glycol methyl ether 350 (PEG ME-350) on the extraction of nitrogen-containing heterocyclic compounds—quinoline and indole—from n-hexane. The dependences of the quantitative characteristics of the extraction of N-compounds on the contact time of the phases, the content of PEG ME-350 in the n-hexane–water system, the initial concentration of nitrogen-containing heterocyclic compounds in the organic phase, and the volumetric ratio of the phases were obtained. It has been established that PEG ME-350 is an effective extractant in the process of stepwise extraction of quinoline and indole, and the mechanisms of their extraction have also been proposed and proven. The results can be further used in the purification of light hydrocarbon fractions from nitrogen-containing heterocyclic compounds.
Keywords:extraction  indole  light hydrocarbon fractions  liquid–Liquid equilibrium  polyethylene glycol methyl ether 350  quinoline
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