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George Kuranov

Researcher at Saint Petersburg State University

Publications -  11
Citations -  440

George Kuranov is an academic researcher from Saint Petersburg State University. The author has contributed to research in topics: Solubility & Aqueous solution. The author has an hindex of 6, co-authored 11 publications receiving 416 citations.

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Solubility of single gases carbon dioxide and hydrogen sulfide in aqueous solutions of N-methyldiethanolamine in the temperature range 313--413 K at pressures up to 5 MPa

TL;DR: In this paper, the solubility of the single gases carbon dioxide and hydrogen sulfide in aqueous solutions of 2,2'methyliminodiethanol (N-methyldiethenolamine (MDEA)) at temperatures between 313 and 413 K and total pressures up to 5 MPa are reported.
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Solubility of Single Gases Carbon Dioxide and Hydrogen Sulfide in Aqueous Solutions of N-Methyldiethanolamine at Temperatures from 313 to 393 K and Pressures up to 7.6 MPa: New Experimental Data and Model Extension

TL;DR: In this article, the solubility of the single gases carbon dioxide and hydrogen sulfide in 8 m (i.e., 48.8 wt %) aqueous solutions of 2,2'methyliminodiethanol (N-methyldiethenolamine; MDEA) at temperatures between 313 and 393 K and total pressures up to 7.6 MPa are reported.
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VLE modelling for aqueous systems containing methyldiethanolamine, carbon dioxide and hydrogen sulfide

TL;DR: In this paper, a hole quasichemical model is proposed for modeling vapor-liquid equilibria in ternary aqueous systems containing acid gas and alkanolamine with an equation of state describing both phases.
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Phase equilibria modeling in aqueous systems containing 2-propanol and calcium chloride or/and magnesium chloride

TL;DR: In this article, a non-ideal mixture of various species (water, organic compound, free, hydrated and solvated ions) is described as nonideal using the UNIQUAC model and the extended form of the Pitzer-Debye-Huckel equation.
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Solubility of CO2 in H2O+N-methyldiethanolamine +(H2SO4 or Na2SO4)

TL;DR: The solubility of hydrogen sulfide in aqueous solutions of N-methyldiethanolamine (MDEA) and MDEA sulfate (2 and 1 m, respectively) was investigated in this article.