Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification

The growing demand for energy, the depletion of oil and gas reserves, and the threat of global climate change have led to an increase in interest in underground coal gasification technologies (UCG) around the world. The potential for using underground gasification of low-grade coal resources with co...

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Main Authors: Tyurina E. A., Elsukov P. Yu., Mednikov A.S.
Format: Article
Language:English
Published: EDP Sciences 2020-01-01
Series:E3S Web of Conferences
Online Access:https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03026.pdf
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spelling doaj-1ad02374b5c248e59ec07c38a3b8eff42021-04-02T16:16:23ZengEDP SciencesE3S Web of Conferences2267-12422020-01-012090302610.1051/e3sconf/202020903026e3sconf_energy-212020_03026Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasificationTyurina E. A.Elsukov P. Yu.Mednikov A.S.The growing demand for energy, the depletion of oil and gas reserves, and the threat of global climate change have led to an increase in interest in underground coal gasification technologies (UCG) around the world. The potential for using underground gasification of low-grade coal resources with complex mining and geological conditions is huge. The main challenge is the development of competitive technologies for the production of synthesis gas and production of electricity, heat, and synthetic liquid fuels on its basis. The paper presents a study of one of the promising areas of the use of UCG gas for the combined production of synthetic liquid fuel (methanol) and electricity. A mathematical model of the installation for combined production of methanol and electricity (ICPME) was developed. Based on this mathematical model, a technical and economic optimization of the parameters was carried out to assess the prospects of the scale of application of this coal processing method. The purpose of research conducted using the mathematical models of the ICPME is to determine the optimal parameters of the installation and the sensitivity of its economic performance indicators to changes in external conditions.https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03026.pdf
collection DOAJ
language English
format Article
sources DOAJ
author Tyurina E. A.
Elsukov P. Yu.
Mednikov A.S.
spellingShingle Tyurina E. A.
Elsukov P. Yu.
Mednikov A.S.
Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
E3S Web of Conferences
author_facet Tyurina E. A.
Elsukov P. Yu.
Mednikov A.S.
author_sort Tyurina E. A.
title Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
title_short Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
title_full Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
title_fullStr Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
title_full_unstemmed Synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
title_sort synthetic liquid fuels: prospects for innovative technologies based on underground coal gasification
publisher EDP Sciences
series E3S Web of Conferences
issn 2267-1242
publishDate 2020-01-01
description The growing demand for energy, the depletion of oil and gas reserves, and the threat of global climate change have led to an increase in interest in underground coal gasification technologies (UCG) around the world. The potential for using underground gasification of low-grade coal resources with complex mining and geological conditions is huge. The main challenge is the development of competitive technologies for the production of synthesis gas and production of electricity, heat, and synthetic liquid fuels on its basis. The paper presents a study of one of the promising areas of the use of UCG gas for the combined production of synthetic liquid fuel (methanol) and electricity. A mathematical model of the installation for combined production of methanol and electricity (ICPME) was developed. Based on this mathematical model, a technical and economic optimization of the parameters was carried out to assess the prospects of the scale of application of this coal processing method. The purpose of research conducted using the mathematical models of the ICPME is to determine the optimal parameters of the installation and the sensitivity of its economic performance indicators to changes in external conditions.
url https://www.e3s-conferences.org/articles/e3sconf/pdf/2020/69/e3sconf_energy-212020_03026.pdf
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AT mednikovas syntheticliquidfuelsprospectsforinnovativetechnologiesbasedonundergroundcoalgasification
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