Thermodynamic evaluation of methane oxycondensation reaction
Normurоt FayzullaevSamarkand State University, Department of Polymer Chemistry and Chemical Technology, 140101, Samarkand, Republic of UzbekistanNargiza TursunovaSamarkand State University, Department of Polymer Chemistry and Chemical Technology, 140101, Samarkand, Republic of UzbekistanDilorom KurbanovaSamarkand State University, Department of Inorganic Chemistry and Materials Science, 140101, Samarkand, Republic of UzbekistanKhilola N. KholmirzayevaSamarkand State University, Department of Polymer Chemistry and Chemical Technology, 140101, Samarkand, Republic of UzbekistanNigina KhafizovaSamarkand State University, Department of Polymer Chemistry and Chemical Technology, 140101, Samarkand, Republic of Uzbekistan
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In this article, factors affecting the rate of methane oxycondensation reaction, and kinetic laws of the reaction are studied in a flow differential reactor. Values of parallel and sequential reactions in the oxidative condensation of methane at different temperatures for methane conversion and product selectivity, equilibrium composition of oxidation condensation reaction components at different temperatures, based on the study of factors such as the rate of methane conversion into products at different temperatures, the reactions of the formation of ethane, ethylene, acetylene, carbon dioxide from methane were studied.
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