Conversion of propane-butane fraction to arenes on zeolite catalystsmodified by gallium oxides

Bibliographic Details
Parent link:Journal of Economics and Social Sciences: electronic scientific journal.— , 2012-.— 2312-2978
№ 14.— 2019.— [5 p.]
Main Author: Dmitriev A. V.
Corporate Author: Tomsk Polytechnic University
Summary:Title screen
The main industrial technologies used currently for the conversion of natural and associated petroleum gas (APG) aresteam reforming of methane and APG into synthesis gas on alum-nickel catalysts which is carried out at 860–950 ° Cand the Fisher-Tropsch process. The synthesis gas is further processed into hydrocarbons on iron and cobalt catalysts.The high temperature (860–950 ° C) in the processes, especially at the first stage of synthesis gas production and the lowselectivity of the target products in the Fischer-Tropsch process are major drawbacks of these technologies for theprocessing of natural gas (methane) and APG. The paper provides the comparative analysis of the activity and selectivityof microporous high-silica zeolites of the ZSM-5 type, synthesized using various additives, during the conversion ofnatural associated gas.
Published: 2019
Series:Социологические науки
Subjects:
Online Access:http://earchive.tpu.ru/handle/11683/55739
Format: Electronic Book Chapter
KOHA link:https://koha.lib.tpu.ru/cgi-bin/koha/opac-detail.pl?biblionumber=584049

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330 |a The main industrial technologies used currently for the conversion of natural and associated petroleum gas (APG) aresteam reforming of methane and APG into synthesis gas on alum-nickel catalysts which is carried out at 860–950 ° Cand the Fisher-Tropsch process. The synthesis gas is further processed into hydrocarbons on iron and cobalt catalysts.The high temperature (860–950 ° C) in the processes, especially at the first stage of synthesis gas production and the lowselectivity of the target products in the Fischer-Tropsch process are major drawbacks of these technologies for theprocessing of natural gas (methane) and APG. The paper provides the comparative analysis of the activity and selectivityof microporous high-silica zeolites of the ZSM-5 type, synthesized using various additives, during the conversion ofnatural associated gas. 
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