NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK

A thermodynamic inhibitor - methanol is used for hydrates control both at gas-gathering pipelines and gas conditioning / treatment field plants of Novatek JSC. Due to severe climate conditions and absence of serious infrastructure high operation costs for hydrate control take place. For reducing i...

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Main Authors: Yunosov, Rauf, Istomin, Vladimir, Gritsishin, Dmitry, Shevkunov, Stanislav
Language:English
Published: 2008
Subjects:
Online Access:http://hdl.handle.net/2429/2349
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-BVAU.2429-23492014-03-14T15:38:10Z NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK Yunosov, Rauf Istomin, Vladimir Gritsishin, Dmitry Shevkunov, Stanislav natural gas gas hydrates methanol low-temperature separation ICGH 2008 International Conference on Gas Hydrates 2008 A thermodynamic inhibitor - methanol is used for hydrates control both at gas-gathering pipelines and gas conditioning / treatment field plants of Novatek JSC. Due to severe climate conditions and absence of serious infrastructure high operation costs for hydrate control take place. For reducing inhibitor losses some new technological solutions were proposed including recycling and regeneration of saturated methanol. A small module for producing methanol at field conditions was designed. Technological schemes for methanol injection and recirculation are discussed. These technologies reduce methanol losses. Small methanol-producing plant at Yurkharovskoe gas-condensate field (12.5 million ton methanol per year) integrated with field gas treatment plant is presented. The technology includes producing converted gas (syngas) from natural gas, catalytic process for raw methanol synthesis and rectification of raw methanol at final stage. Some particularities of the integrated technology are as follows. Not needs for preliminary purification of required raw materials (natural gas and water). Dried natural gas after conditioning (without any traces of sulfuric compounds) and pure water from simplified water treatment block are used. Rectification of raw methanol is combined with rectification of saturated methanol from gas treatment plant. Economic estimations show that the integrated methanol-producing technology and optimization of methanol circulation in technological processes essentially reduce capital and operational costs for hydrate control at northern gas and gas-condensate fields. 2008-09-23T17:10:41Z 2008-09-23T17:10:41Z 2008-07 text Yunosov, Rauf; Istomin, Vladimir; Gritsishin, Dmitry; Shevkunov, Stanislav. 2008. NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK. Proceedings of the 6th International Conference on Gas Hydrates (ICGH 2008), Vancouver, British Columbia, CANADA, July 6-10, 2008. http://hdl.handle.net/2429/2349 eng
collection NDLTD
language English
sources NDLTD
topic natural gas
gas hydrates
methanol
low-temperature separation
ICGH 2008
International Conference on Gas Hydrates 2008
spellingShingle natural gas
gas hydrates
methanol
low-temperature separation
ICGH 2008
International Conference on Gas Hydrates 2008
Yunosov, Rauf
Istomin, Vladimir
Gritsishin, Dmitry
Shevkunov, Stanislav
NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
description A thermodynamic inhibitor - methanol is used for hydrates control both at gas-gathering pipelines and gas conditioning / treatment field plants of Novatek JSC. Due to severe climate conditions and absence of serious infrastructure high operation costs for hydrate control take place. For reducing inhibitor losses some new technological solutions were proposed including recycling and regeneration of saturated methanol. A small module for producing methanol at field conditions was designed. Technological schemes for methanol injection and recirculation are discussed. These technologies reduce methanol losses. Small methanol-producing plant at Yurkharovskoe gas-condensate field (12.5 million ton methanol per year) integrated with field gas treatment plant is presented. The technology includes producing converted gas (syngas) from natural gas, catalytic process for raw methanol synthesis and rectification of raw methanol at final stage. Some particularities of the integrated technology are as follows. Not needs for preliminary purification of required raw materials (natural gas and water). Dried natural gas after conditioning (without any traces of sulfuric compounds) and pure water from simplified water treatment block are used. Rectification of raw methanol is combined with rectification of saturated methanol from gas treatment plant. Economic estimations show that the integrated methanol-producing technology and optimization of methanol circulation in technological processes essentially reduce capital and operational costs for hydrate control at northern gas and gas-condensate fields.
author Yunosov, Rauf
Istomin, Vladimir
Gritsishin, Dmitry
Shevkunov, Stanislav
author_facet Yunosov, Rauf
Istomin, Vladimir
Gritsishin, Dmitry
Shevkunov, Stanislav
author_sort Yunosov, Rauf
title NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
title_short NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
title_full NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
title_fullStr NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
title_full_unstemmed NEW ASPECTS OF HYDRATE CONTROL AT NORTHERN GAS AND GAS CONDENSATE FIELDS OF NOVATEK
title_sort new aspects of hydrate control at northern gas and gas condensate fields of novatek
publishDate 2008
url http://hdl.handle.net/2429/2349
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AT gritsishindmitry newaspectsofhydratecontrolatnortherngasandgascondensatefieldsofnovatek
AT shevkunovstanislav newaspectsofhydratecontrolatnortherngasandgascondensatefieldsofnovatek
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