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Featured researches published by Alexey Cheremisin.


Environmental Science & Technology | 2018

CO2 Capture by Injection of Flue Gas or CO2–N2 Mixtures into Hydrate Reservoirs: Dependence of CO2 Capture Efficiency on Gas Hydrate Reservoir Conditions

Aliakbar Hassanpouryouzband; Jinhai Yang; Bahman Tohidi; E.M. Chuvilin; Vladimir Istomin; Boris Bukhanov; Alexey Cheremisin

Injection of flue gas or CO2-N2 mixtures into gas hydrate reservoirs has been considered as a promising option for geological storage of CO2. However, the thermodynamic process in which the CO2 present in flue gas or a CO2-N2 mixture is captured as hydrate has not been well understood. In this work, a series of experiments were conducted to investigate the dependence of CO2 capture efficiency on reservoir conditions. The CO2 capture efficiency was investigated at different injection pressures from 2.6 to 23.8 MPa and hydrate reservoir temperatures from 273.2 to 283.2 K in the presence of two different saturations of methane hydrate. The results showed that more than 60% of the CO2 in the flue gas was captured and stored as CO2 hydrate or CO2-mixed hydrates, while methane-rich gas was produced. The efficiency of CO2 capture depends on the reservoir conditions including temperature, pressure, and hydrate saturation. For a certain reservoir temperature, there is an optimum reservoir pressure at which the maximum amount of CO2 can be captured from the injected flue gas or CO2-N2 mixtures. This finding suggests that it is essential to control the injection pressure to enhance CO2 capture efficiency by flue gas or CO2-N2 mixtures injection.


Energy Conversion and Management | 2017

Flue gas injection into gas hydrate reservoirs for methane recovery and carbon dioxide sequestration

Jinhai Yang; Anthony Okwananke; Bahman Tohidi; E.M. Chuvilin; Kirill Maerle; Vladimir Istomin; Boris Bukhanov; Alexey Cheremisin


The Journal of Chemical Thermodynamics | 2018

Enhanced depressurisation for methane recovery from gas hydrate reservoirs by injection of compressed air and nitrogen

Anthony Okwananke; Jinhai Yang; Bahman Tohidi; E.M. Chuvilin; Vladimir Istomin; Boris Bukhanov; Alexey Cheremisin


Journal of Petroleum Science and Engineering | 2019

High pressure air injection kinetic model for Bazhenov Shale Formation based on a set of oxidation studies

Lyudmila Khakimova; T.M. Bondarenko; Alexey Cheremisin; Artem Myasnikov; Mikhail A. Varfolomeev


SPE Russian Petroleum Technology Conference | 2018

Application of High-Resolution Core Thermal Profiling to Optimize Well Construction Process for Unconventional Reservoir (Russian)

Olga Tatur; Evgeny Popov; Yuriy Popov; Vladimir Stukachev; Evgeny Chekhonin; Alexey Cheremisin; Yuriy Petrakov; Alexey Sobolev; Alexandr Cheremisin


ACS Sustainable Chemistry & Engineering | 2018

Insights into CO2 Capture by Flue Gas Hydrate Formation: Gas Composition Evolution in Systems Containing Gas Hydrates and Gas Mixtures at Stable Pressures

Aliakbar Hassanpouryouzband; Jinhai Yang; Bahman Tohidi; E.M. Chuvilin; Vladimir Istomin; Boris Bukhanov; Alexey Cheremisin


Oil Industry Journal | 2017

Laboratory modeling of high-pressure air injection in oil fields of Bazhenov formation (Russian)

T.M. Bondarenko; E. Yu. Popov; Alexey Cheremisin; E. V. Kozlova; I.A. Karpov; N.V. Morozov


Oil Industry Journal | 2017

New approaches in physical modelling of enhanced oil recovery methods based on steam injection and high-pressure air injection for carbonate oil fields (Russian)

S.I. Kudryashov; I.S. Afanasev; D.A. Antonenko; P.A. Grishin; Alexey Cheremisin; M.Yu. Spasennykh; E. Yu. Popov


Oil Industry Journal | 2017

Validation of computational model of high-pressure air injection for Bazhenov formations by laboratory modelling results (Russian)

L.A. Khakimov; A. V. Myasnikov; T.M. Bondarenko; E. Yu. Popov; Alexey Cheremisin; I.A. Karpov


Oil Industry Journal | 2017

Evaluation of changes in Bazhenov rocks porosity and permeability in a process of hydrothermal treatment modeling (Russian)

E. Yu. Popov; Alexey Cheremisin; L.A. Kulikov; I.A. Karpov

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T.M. Bondarenko

Skolkovo Institute of Science and Technology

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E. Yu. Popov

Skolkovo Institute of Science and Technology

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Jinhai Yang

Heriot-Watt University

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Boris Bukhanov

Skolkovo Institute of Science and Technology

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Vladimir Istomin

Skolkovo Institute of Science and Technology

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