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low-carbon hydrogen

Economic Geology
  • Date submitted
    2023-11-15
  • Date accepted
    2024-09-24
  • Date published
    2024-12-25

Development and validation of an approach to the environmental and economic assessment of decarbonization projects in the oil and gas sector

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This article addresses the problem of selecting a priority decarbonization project for an oil and gas company aiming to reduce greenhouse gas emissions. The wide range of decarbonization options and assessment methods prompted the development of a comprehensive ranking system for project selection. This system incorporates both internal and external factors of project implementation, a two-stage algorithm that filters out unsuitable projects taking into account sustainable development goals, and a quantitative evaluation approach using absolute and relative indicators. The proposed system evaluates decarbonization projects by considering not only the reduction of emissions in both absolute and relative terms, but also the broader environmental, social, and economic aspects relevant to the oil and gas company and the national economy. It includes a ranking mechanism for identifying priority projects and integrates carbon regulation incentives and green taxonomy tools into the economic assessment for more precise comparative analysis. The quantitative assessment in absolute terms involves a specialized net present value calculation, which accounts for revenue from both carbon credit sales and the potential sale of new low-carbon products, if applicable. The proposed assessment provides for targeted analysis of specific performance indicators, such as the cost per unit of emissions reduced, tax and social security contributions per unit of emissions reduced, energy efficiency improvements, and other indicators used for additional assessments of projects under otherwise equal conditions.

How to cite: Sheveleva N.A. Development and validation of an approach to the environmental and economic assessment of decarbonization projects in the oil and gas sector // Journal of Mining Institute. 2024. Vol. 270 . p. 1038-1055. EDN GAOTZW
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-09-29
  • Date accepted
    2023-10-25
  • Date published
    2024-08-26

Laboratory studies of transformation of porosity and permeability and chemical composition of terrigenous reservoir rocks at exposure to hydrogen (using the example of the Bobrikovskii formations in the oil field in the northeast Volga-Ural oil and gas province)

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The article describes the methodology for laboratory studies of reservoir rock exposure to hydrogen. The stages of sample research and the instruments used in the experiments are considered. A comparative analysis of the results of studies on porosity and permeability of core samples was performed. It was shown that after exposure to hydrogen, the porosity decreased by 4.6 %, and the permeability by 7.9 %. The analysis of correlation dependencies demonstrated a typical change in the relationship of these characteristics: after the samples exposure to hydrogen the scatter of the values increased and the correlation coefficient decreased, which indicates a change in the structure of the void space. Based on the research results, it was concluded that the decrease in porosity and permeability of the core samples occurred due to their minor compaction under the action of effective stresses. The chemical analysis of the rock showed no major difference in the composition of the basic oxides before and after exposure to hydrogen, which points to the chemical resistance of the studied formation to hydrogen. The experimental results showed that the horizon under consideration can be a storage of the hydrogen-methane mixture.

How to cite: Popov S.N., Chernyshov S.E., Abukova L.A. Laboratory studies of transformation of porosity and permeability and chemical composition of terrigenous reservoir rocks at exposure to hydrogen (using the example of the Bobrikovskii formations in the oil field in the northeast Volga-Ural oil and gas province) // Journal of Mining Institute. 2024. Vol. 268 . p. 646-655. EDN MFPSXV
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-11-27
  • Date accepted
    2023-12-27
  • Date published
    2024-02-29

Physico-chemical aspects and carbon footprint of hydrogen production from water and hydrocarbons

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Physico-chemical aspects determine the efficiency and competitiveness of hydrogen production technologies. The indicator of water consumption is especially relevant, since water is one of the main sources of hydrogen in almost all methods of its production. The article analyzes comparative water consumption indicators for various technologies based on published research and actual data from production plants. The volume of water consumption depends on the quality of the source water, which should be taken into account when implementing hydrogen projects in order to minimize the negative impact on the environment. Based on the operating industrial plant, the material balance of hydrogen production by steam reforming was demonstrated, which made it possible to determine the proportion of hydrogen (48.88 %) obtained from water. Currently, the carbon footprint indicator is becoming more important, reflecting greenhouse gas emissions throughout the production chain. According to the results of the total greenhouse gas emissions assessment for hydrogen production by steam reforming (about 10.03 kg CO2-eq/kg H2), the carbon footprint of hydrogen from water (4.2-4.5 kg CO2-eq/kg H2) and hydrogen from methane (15.4-15.7 kg CO2-eq/kg H2) has been determined. Consequently, almost half of the hydrogen produced by steam reforming is produced from water, corresponds to the indicators of “low-carbon” hydrogen and can be considered as “renewable” hydrogen. To make management decisions, an objective assessment in terms of energy and water costs is necessary based on a system analysis by the development of hydrogen energy and the growth of global hydrogen production. The impact of these indicators on the water cycle and global water resources will increase.

How to cite: Maksimov A.L., Ishkov A.G., Pimenov A.A., Romanov K.V., Mikhailov A.M., Koloshkin E.A. Physico-chemical aspects and carbon footprint of hydrogen production from water and hydrocarbons // Journal of Mining Institute. 2024. Vol. 265 . p. 87-94. EDN HWCPDC
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2021-02-24
  • Date accepted
    2022-04-06
  • Date published
    2022-07-13

Study of the kinetics of the process of producing pellets from red mud in a hydrogen flow

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The reduction kinetics of serial phase transitions of iron oxides during reduction to a metallized state with different modes of technical hydrogen supply has been studied and substantiated. The results of the pellets formation when 3-5 % molasses is added to the red mud as a binding reagent are presented. The dependences of the reduction rate of iron oxides on the hydrogen flow rate are obtained. Based on the results of the experiments, a kinetic model was constructed, and with the help of X-ray phase and spectral analysis, it was proved that the agglomerates formed after heat treatment received high strength due to the adhesion of reduced iron particles with red mud particles. The use of a new type of charge materials in melting units will reduce the amount of emissions and dust fractions, as well as increase the metal yield.

How to cite: Khalifa A.A., Bazhin V.Y., Ustinova Y.V., Shalabi M.E. Study of the kinetics of the process of producing pellets from red mud in a hydrogen flow // Journal of Mining Institute. 2022. Vol. 254 . p. 261-270. DOI: 10.31897/PMI.2022.18
Oil and gas
  • Date submitted
    2020-05-13
  • Date accepted
    2020-06-24
  • Date published
    2020-10-08

Barriers to implementation of hydrogen initiatives in the context of global energy sustainable development

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Modern trends in the global energy market linked to the Sustainable Development Goals often lead to the adoption of political decisions with little basis in fact. Stepping up the development of renewable energy sources is an economically questionable but necessary step in terms of its social and ecological effects. However, subsequent development of hydrogen infrastructure is, at the very least, a dangerous initiative. In connection with mentioned above, an attempt to examine hydrogen by conducting an integral assessment of its characteristics has been made in this article. As a result of the research conducted, the following conclusions concerning the potential of the widespread implementation of hydrogen in the power generation sector have been made: as a chemical element, it harms steel structures, which significantly impedes the selection of suitable materials; its physical and volume characteristics decrease the general efficiency of the energy system compared to similar hydrocarbon solutions; the hydrogen economy does not have the necessary foundation in terms of both physical infrastructure and market regulation mechanisms; the emergence of widely available hydrogen poses a danger for society due to its high combustibility. Following the results of the study, it was concluded that the existing pilot hydrogen projects are positive yet not scalable solutions for the power generation sector due to the lack of available technologies to construct large-scale and geographically distributed infrastructure and adequate international system of industry regulation. Thus, under current conditions, the risks of implementing such projects considerably exceed their potential ecological benefits.

How to cite: Litvinenko V.S., Tsvetkov P.S., Dvoynikov M.V., Buslaev G.V. Barriers to implementation of hydrogen initiatives in the context of global energy sustainable development // Journal of Mining Institute. 2020. Vol. 244 . p. 428-438. DOI: 10.31897/PMI.2020.4.5
Problems in geodynamic and ecological safety in the exploration of fields of oil and das, their storage and transporta
  • Date submitted
    2009-10-14
  • Date accepted
    2009-12-28
  • Date published
    2010-09-22

Geodynamic model of hydrogen sulphide’s formation in natural gas and oil in the process of rocks impulsive compression under conditions оf earthquakes

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By experiments, conducted on the installation like Bridgeman’s anvil it was determined that under conditions of high pressure, displacement deformations and elastic wave’s effect of short duration, sulphates are reclaimed by hydrocarbons. As a result of this reaction sulphur and hydrogen sulphide are produced.

How to cite: Petukhov A.V. Geodynamic model of hydrogen sulphide’s formation in natural gas and oil in the process of rocks impulsive compression under conditions оf earthquakes // Journal of Mining Institute. 2010. Vol. 188 . p. 189-194.
Applied and fundamental research in physics and mathematics
  • Date submitted
    2009-09-05
  • Date accepted
    2009-11-17
  • Date published
    2010-06-25

Photoelectric method of hydrogen detection

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The new photoelectric method of the detection of hydrogen is proposed, based on strong dependence of the photo induced current on concentration of hydrogen in III-V heterostructures with Pd contact. The given influence at a room temperature is stronger on few orders than influence of hydrogen on electric characteristics of solid-state elements in existing sensors. The original design of portable sensor module was developed on the base of photosensitive element and infrared light-emitting diode that meet demands of hydrogen power engineering.

How to cite: Stoyanova T.V., Salikhov K.M., Kalinina K.V., Stoyanov N.D. Photoelectric method of hydrogen detection // Journal of Mining Institute. 2010. Vol. 187 . p. 132-136.