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Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-07-31
  • Date accepted
    2024-11-07
  • Date published
    2025-02-25

Environmental assessment of biochar application for remediation of oil-contaminated soils under various economic uses

Article preview

Remediation is an important area of oil-contaminated soil restoration in Russia, since oil refining industry is the major one for Russia and neighbouring countries, and the issues of environmentally effective and economically profitable remediation of oil contamination have not yet been solved. Soils under various economic uses have different surface areas and degrees of soil particles envelopment with oil due to the presence or absence of cultivation, the amount of precipitation and plant litter. The introduction of various substances for remediation into oil-contaminated soils of steppes (arable land), forests, and semi-deserts, considering their differences, gives different results. Biochar is coal obtained by pyrolysis at high temperatures and in the absence of oxygen. The uniqueness of this coal lies in the combination of biostimulating and adsorbing properties. The purpose of the study is to conduct an environmental assessment of biochar application for remediation of oil-contaminated soils under various economic uses. The article compares the environmental assessments of biochar application in oil-contaminated soils with different particle size fraction. The following indicators of soil bioactivity were determined: enzymes, indicators of initial growth and development intensity of radish, microbiological indicators. We found that the most informative bioindicator correlating with residual oil content is the total bacteria count, and the most sensitive ones are the roots length (ordinary chernozem and brown forest soil) and the shoots length (brown semi-desert soil). The use of biochar on arable land and in forest soil (ordinary chernozem and brown forest soil) is less environmentally efficient than in semi-desert soil (brown semi-desert soil). The study results can serve to develop measures and managerial and technical solutions for remediation of oil-contaminated soils under various economic uses.

How to cite: Minnikova T.V., Kolesnikov S.I. Environmental assessment of biochar application for remediation of oil-contaminated soils under various economic uses // Journal of Mining Institute. 2025. Vol. 271. p. 84-94. EDN UOQKTG
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-05-30
  • Date accepted
    2024-10-14
  • Date published
    2024-11-12

Thermodynamic modelling as a basis for forecasting phase states of hydrocarbon fluids at great and super-great depths

Article preview

The possibility of discovering oil and gas occurrences at great (more than 5 km) and super-great (more than 6 km) depths is considered in two aspects. The first one is the preservation conditions of large hydrocarbon accumulations forming at depths to 4 km and caused by different geological and tectonic processes occurring at great and super-great depths with partial oil-to-gas transformation. It was ascertained that among the factors controlling preservation of liquid and gaseous hydrocarbons are the temperature, pressure, subsidence rate (rate of temperature and pressure increase), time spent under ultrahigh thermobaric conditions, and initial composition of organic matter. The possibility of existence of liquid components of oil at great and super-great depths is characteristic of sedimentary basins of China, the Gulf of Mexico, the Santos and Campos basins on the Brazilian shelf, and in the Russian Federation it is most probable for the Caspian Depression, some submontane troughs and zones of intense accumulation of young sediments. Determination of critical temperatures and pressures of phase transitions and the onset of cracking is possible using the approach considered in the article, based on estimation of organic matter transformation degree, kinetic and thermobaric models taking into account the composition of hydrocarbon fluid. The second aspect is the estimation of composition of hydrocarbons associated with rocks forming at great depths or rocks transformed under conditions of critical temperatures and pressures. This aspect of considerable science intensity can hardly be considered as practically significant. The study focuses on the investigation of the possibilities of thermodynamic modelling and the use of alternative methods for studying the transformation degree of liquid formation fluid into components of the associated gas through the example of two areas with identified oil, condensate and gas accumulations.

How to cite: Prishchepa O.M., Lutskii D.S., Kireev S.B., Sinitsa N.V. Thermodynamic modelling as a basis for forecasting phase states of hydrocarbon fluids at great and super-great depths // Journal of Mining Institute. 2024. Vol. 269. p. 815-832. EDN CWLSTC
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-04-25
  • Date accepted
    2024-09-24
  • Date published
    2024-11-12

Specific features of kinetics of thermal transformation of organic matter in Bazhenov and Domanik source rocks based on results of pyrolysis gas chromatography

Article preview

Pyrolysis of organic matter with subsequent analysis of hydrocarbon composition of the resulting products allows obtaining multicomponent distribution spectra of the generation potential by the activation energies of reactions of kerogen transformation into hydrocarbons. Configuration of the spectra depends on the structure of kerogen and is individual for each type of organic matter. Studies of kerogen kinetics showed that the distribution of activation energies is unique for each oil source rocks. The kinetic model of thermal decomposition of kerogen of the same type, for example, marine planktonic (type II), can differ significantly in different sedimentary basins due to the multivariate relationship of chemical bonds and their reaction energy threshold. The developed method for calculating multicomponent kinetic spectra (four-component models are used) based on results of pyrolysis gas chromatography allows obtaining one of the most important elements of modelling the history of oil and gas generation in geological basins. Kinetic parameters of organic matter of oil and gas source rocks influence the onset time of generation and directly reflect differences in the composition and structure of different types of kerogens. The results of determining the kinetic parameters of two high-carbon source rocks occurring across the territory of three oil and gas basins are shown. Generation and updating of the data of kinetic models of certain oil and gas source rocks will increase the reliability of forecasting oil and gas potential using the basin modelling method.

How to cite: Mozhegova S.V., Gerasimov R.S., Paizanskaya I.L., Alferova A.A., Kravchenko E.M. Specific features of kinetics of thermal transformation of organic matter in Bazhenov and Domanik source rocks based on results of pyrolysis gas chromatography // Journal of Mining Institute. 2024. Vol. 269. p. 765-776. EDN FIMBWV
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-04-22
  • Date accepted
    2024-09-24
  • Date published
    2024-11-12

On peculiarities of composition and properties of ancient hydrocarbon source rocks

Article preview

Precambrian rocks are widespread within all continents of the Earth; that said, sedimentary associations of these deposits are of special interest in search for oil and gas fields. A wide range of paleontological, lithological and geochemical methods is utilized for conducting integrated geological-geochemical analysis and evaluating the initial hydrocarbon generating potential of organic matter of Precambrian source rocks. Investigated were peculiarities of depositional environments of the organic matter, specific features of its composition in sedimentary rocks and its generation characteristics. Own research efforts were performed in combination with generalization of other authors’ publications focused on Precambrian sequences enriched in organic matter – their occurrence, isotopic and biomarker characteristics and realization schemes of the hydrocarbon generation potential of Precambrian organic matter in the process of catagenesis. Geochemical peculiarities of initial organic matter are illustrated on various examples, type of the organic matter is determined together with the character of evolution of realization of its initial generation potential.

How to cite: Bolshakova M.A., Sitar K.A., Kozhanov D.D. On peculiarities of composition and properties of ancient hydrocarbon source rocks // Journal of Mining Institute. 2024. Vol. 269. p. 700-707. EDN MKTALQ
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-04-10
  • Date accepted
    2024-10-14
  • Date published
    2024-11-12

The influence of ocean anoxia on conditions for the Domanik deposits formation

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The article considers one of conditions for the Domanik facies formation on the example of Tatarstan and Bashkortostan. The main emphasis is on the influence of anoxic paleobasin conditions on the high-carbon strata formation. A detailed study of the hydrocarbon composition of Domanik deposits made it possible to find characteristic biomarkers in their composition. They are based on the composition and structure of diagenetic products of biological compounds composing the sulphur bacteria living in anoxic/euxinic paleobasin conditions. Such compounds include C40 diaryl isoprenoids – isorenieratane and paleorenieratane. C10 tetramethylbenzenes also occupy a special place in the Domanik deposits study. Their appearance in the composition of organic matter of these deposits results from the transformation of sulphur bacteria compounds. Diaryl isoprenoids and tetramethylbenzenes are a reliable indicator of anoxic conditions of the Domanik deposits formation. The thermodynamic state of the hydrocarbon environment can be determined from the ratio of tetramethylbenzene isomers.

How to cite: Plotnikova I.N., Ostroukhov S.B., Pronin N.V. The influence of ocean anoxia on conditions for the Domanik deposits formation // Journal of Mining Institute. 2024. Vol. 269. p. 803-814. EDN YORQKB
Editorial
  • Date submitted
    2024-10-29
  • Date accepted
    2024-10-29
  • Date published
    2024-11-12

Study of thermodynamic processes of the Earth from the position of the genesis of hydrocarbons at great depths

Article preview

In the context of significant depletion of traditional proven oil reserves in the Russian Federation and the inevitability of searching for new directions of study and expansion of the raw material base of hydrocarbon raw materials in hard-to-reach regions and on the Arctic shelf, a scientific search is underway for accumulations in complex geological conditions and in manifestations that differ significantly from traditional ones, which include the processes of oil and gas formation and preservation of oil and gas in low-permeability “shale” strata and in heterogeneous reservoirs at great and super-great depths. Within the oil and gas provinces of the world, drilling of a number of deep and super-deep wells has revealed deposits at great depths, established connections between hydrocarbon deposits and “traces” of hydrocarbon migration left in the core of deep wells, which has made it possible to significantly re-evaluate theoretical ideas on the issue of oil and gas formation conditions and the search for technologies aimed at solving applied problems. Modern geochemical, chromatographic, bituminological, coal petrographic and pyrolytic methods of studying oil and bitumoids extracted from the host rocks of deep well cores give a hope for identifying correlations in the oil-source system, revealing processes that determine the possibility of hydrocarbon formation and accumulation, and defining predictive criteria for oil and gas potential at great depths.

How to cite: Prishchepa O.M., Aleksandrova T.N. Study of thermodynamic processes of the Earth from the position of the genesis of hydrocarbons at great depths // Journal of Mining Institute. 2024. Vol. 269. p. 685-686.
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2024-05-13
  • Date accepted
    2024-09-05
  • Date published
    2024-11-12

Potential trace element markers of naphthogenesis processes: modeling and experimentation

Article preview

With the growing demand for hydrocarbon energy resources, there is a need to involve oil fields at deeper horizons in processing and increase the profitability of their development. Reduction of expenses on prospecting works is possible at revealing and substantiation of physicochemical markers of the naphthogenesis processes. One of the key markers is the transition metals content, which are both a measure of oil age and markers of potential associated processes in the migration and formation of hydrocarbons in the Earth's strata. The elemental composition of samples of oil and reservoir rocks of the Timan-Pechora field was studied. Based on the results of thermodynamic modeling, plausible processes of contact rock minerals transformation were proposed. Based on the results of molecular modeling the probable structure of vanadium and nickel host molecules in the heavy fraction of oils is proposed. The ratios of transition metal and sulfur contents were experimentally established, and assumptions about possible mechanisms of formation of deep hydrocarbon reservoirs were made. Analysis of the obtained ratios of transition metal contents in reservoir rocks and oil samples allowed to suggest possible processes of mantle fluids contact with the host rock and subsequent accumulation of hydrocarbons on sorption active rocks. According to the combined results of experimental and theoretical studies it was found that polymers of heavy fraction more selectively capture vanadium, which indicates the predominance of vanadium content in oil-bearing rocks in relation to the content of nickel. In this case, oil acts as a transport of transition metals, leaching them from the bedrock.

How to cite: Aleksandrova T.N., Kuznetsov V.V., Nikolaeva N.V. Potential trace element markers of naphthogenesis processes: modeling and experimentation // Journal of Mining Institute. 2024. Vol. 269. p. 687-699. EDN OXGNYL
Geology
  • Date submitted
    2023-05-21
  • Date accepted
    2024-05-02
  • Date published
    2024-08-26

Assessment of the influence of lithofacies conditions on the distribution of organic carbon in the Upper Devonian “Domanik” deposits of the Timan-Pechora Province

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The study of high-carbon formations was instigated both by the decreasing raw material base of oil as a result of its extraction, and by the progress in development of low-permeability shale strata, primarily in the USA, Australia, and China. The most valuable formations occur in traditional hydrocarbon production areas – the West Siberian, Volga-Ural and Timan-Pechora, North Pre-Caucasian and Lena-Tunguska oil and gas provinces. Specific features of the Late Devonian-Early Carboniferous high-carbon formation occurring in the eastern marginal part of the East European Platform are: heterogeneous section due to intense progradation of the carbonate platform from west to east; succession of lithofacies environments that determined the unevenness of the primary accumulation and secondary distribution of organic matter (OM); possible migration or preservation in the source strata during the subsidence stages of the moving parts of bitumides, which determined the prospects for oil and gas potential. The distribution pattern of the present OM content was investigated depending on lithofacies conditions and lithological composition of rocks in the “Domanik type” Upper Devonian-Tournaisian deposits in the Timan-Pechora Province (TPP), its transformation degree to bring it to the initial content of organic carbon and further estimation of the share of stored “mobile oil” in oil and gas source formation. The study was based on the analysis of the data set on organic carbon content in core samples and natural exposures in the Ukhta Region in the Domanik-Tournaisian part of the section including more than 5,000 determinations presented in reports and publications of VNIGRI and VNIGNI and supplemented by pyrolytic and bituminological analyses associated with the results of microtomographic, macro- and lithological studies and descriptions of thin sections made at the Saint Petersburg Mining University. For each tectonic zone of the TPP within the investigated high-carbon intervals, the content of total volumes of organic carbon was determined. The data obtained allow estimating the residual mass of mobile bitumoids in a low-permeability matrix of the high-carbon formation.

How to cite: Prishchepa O.M., Sinitsa N.V., Ibatullin A.K. Assessment of the influence of lithofacies conditions on the distribution of organic carbon in the Upper Devonian “Domanik” deposits of the Timan-Pechora Province // Journal of Mining Institute. 2024. Vol. 268. p. 535-551. EDN JPUKCM
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2023-08-14
  • Date accepted
    2023-12-27
  • Date published
    2024-12-25

Modelling of compositional gradient for reservoir fluid in a gas condensate deposit with account for scattered liquid hydrocarbons

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In oil and gas reservoirs with significant hydrocarbon columns the dependency of the initial hydrocarbon composition on depth – the compositional gradient – is an important factor in assessing the initial amounts of components in place, the position of the gas-oil contact, and variations of fluid properties throughout the reservoir volume. Known models of the compositional gradient are based on thermodynamic relations assuming a quasi-equilibrium state of a multi-component hydrodynamically connected hydrocarbon system in the gravity field, taking into account the influence of the natural geothermal gradient. The corresponding algorithms allow for calculation of changes in pressure and hydrocarbon fluid composition with depth, including determination of the gas-oil contact (GOC) position. Above and below the GOC, the fluid state is considered single-phase. Many oil-gas-condensate reservoirs typically have a small initial fraction of the liquid hydrocarbon phase (LHC) – scattered oil – within the gas-saturated part of the reservoir. To account for this phenomenon, a special modification of the thermodynamic model has been proposed, and an algorithm for calculating the compositional gradient in a gas condensate reservoir with the presence of LHC has been implemented. Simulation cases modelling the characteristic compositions and conditions of three real oil-gas-condensate fields are considered. The results of the calculations using the proposed algorithm show peculiarities of variations of the LHC content and its impact on the distribution of gas condensate mixture composition with depth. The presence of LHC leads to an increase in the level and possible change in the type of the fluid contact. The character of the LHC fraction dependency on depth can be different and is governed by the dissolution of light components in the saturated liquid phase. The composition of the LHC in the gas condensate part of the reservoir changes with depth differently than in the oil zone, where the liquid phase is undersaturated with light hydrocarbons. The results of the study are significant for assessing initial amounts of hydrocarbon components and potential efficiency of their recovery in gas condensate and oil-gas-condensate reservoirs with large hydrocarbon columns.

How to cite: Kusochkova E.V., Indrupskii I.M., Surnachev D.V., Alekseeva Y.V., Drozdov A.N. Modelling of compositional gradient for reservoir fluid in a gas condensate deposit with account for scattered liquid hydrocarbons // Journal of Mining Institute. 2024. Vol. 270. p. 904-918. EDN QBQQCT
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2022-09-30
  • Date accepted
    2023-02-13
  • Date published
    2024-02-29

Improving the efficiency of oil vapor recovery units in the commodity transport operations at oil terminals

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In this paper the problem of losses from evaporation of light fractions of hydrocarbons during loading operations of tanker fleets vessels is considered. It was found that there is no unified approach to modeling the system “tanker – gas phase pipeline – vapor recovery units” in open sources. The absence of a generally recognized model makes it impossible to scientifically justify the application of instruments to reducing losses and the development of corresponding measures. In work it is showed that the dynamics of growth of pressure in the inner tanker capacity is described by a differential equation, considering for non-stationary essence of the process. This equation is converted to a non-dimensional form and investigated in relation to the similarity criteria of this system. This research has allowed to establish unambiguously the general character of pressure changes in the inner tanker capacity, and to predict the peak values of its growth at the initial stage of the loading operation. The obtained equations were tested on real tanker loading data and showed satisfactory convergence with the experimental data. At different stages of the loading opera-tion the component composition of vapor changes, which is shown by chromatographic analysis of the gas mixture. With the availability of a model of hydrocarbon vapor displacement from the inner of tanker, it is possible to propose measures to minimize the negative impact on the environment and return valuable vapors of the product to the technological chain of transportation.

How to cite: Pshenin V.V., Zakirova G.S. Improving the efficiency of oil vapor recovery units in the commodity transport operations at oil terminals // Journal of Mining Institute. 2024. Vol. 265. p. 121-128. DOI: 10.31897/PMI.2023.29
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2022-05-12
  • Date accepted
    2022-11-17
  • Date published
    2023-04-25

Microbiological remediation of oil-contaminated soils

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Microbiological remediation is a promising technology for the elimination of environmental contamination by oil and petroleum products, based on the use of the metabolic potential of microorganisms. The issue of environmental contamination by crude oil and its refined products is relevant in the Russian Federation since the oil industry is one of the leading sectors of the country. Mechanical and physico-chemical methods of treatment are widely used to clean oil-contaminated soils. However, the methods belonging to these groups have a number of significant drawbacks, which actualizes the development of new methods (mainly biological), since they are more environmentally friendly, cost-effective, less labor-intensive, and do not require the use of technical capacities. Various bio-based products based on strains and consortia of microorganisms have been developed that have proven effectiveness. They include certain genera of bacteria, microscopic fungi, and microalgae, substances or materials acting as sorbents of biological agents and designed to retain them in the soil and increase the efficiency of bioremediation, as well as some nutrients. Statistical data, the most effective methods, and technologies, as well as cases of using microorganisms to restore oil-contaminated soils in various climatic conditions are presented.

How to cite: Sozina I.D., Danilov A.S. Microbiological remediation of oil-contaminated soils // Journal of Mining Institute. 2023. Vol. 260. p. 297-312. DOI: 10.31897/PMI.2023.8
Oil and gas
  • Date submitted
    2021-02-28
  • Date accepted
    2021-11-30
  • Date published
    2021-12-27

Substantiation of analytical dependences for hydraulic calculation of high-viscosity oil transportation

Article preview

One of the development priorities in oil and gas industry is to maintain gas and oil pipeline networks and develop pipeline-connected gas and oil fields of the Arctic zone of the Russian Federation, a promising region the resource potential of which will not only meet a significant portion of internal and external demand for various types of raw materials and primary energy carriers, but will also bring great economic benefits to subsoil users and the state. The mineral and raw material centers of the Nadym-Purskiy and Pur-Tazovskskiy oil and gas bearing areas are among the most attractive regions of the Arctic zone. It is necessary to develop a scientifically substantiated approach to improve the methods of oil transportation from the field to the existing pipelines. As it is known, the task of increasing the efficiency of pipeline transportation of high-viscosity oil is inseparably connected with solving problems in the field of thermal and hydraulic calculation of pipeline system. The article presents the substantiation of dependencies for hydraulic calculation of pipelines transporting high-viscosity oil exhibiting complex rheological properties. Based on the laws of hydraulics for non-Newtonian fluids, the formulas for calculating head losses for fluids obeying Ostwald's law are proposed, their relationship to the classical equations of hydraulics is shown. The theoretical substantiation of looping installation for increasing the efficiency of pipeline transportation of high-viscosity oil taking into account the received dependences for power fluid is considered.

How to cite: Nikolaev A.K., Zaripova N.А. Substantiation of analytical dependences for hydraulic calculation of high-viscosity oil transportation // Journal of Mining Institute. 2021. Vol. 252. p. 885-895. DOI: 10.31897/PMI.2021.6.10
Geotechnical Engineering and Engineering Geology
  • Date submitted
    2020-12-08
  • Date accepted
    2021-10-18
  • Date published
    2021-12-16

Prospects for the oil and gas content of the Upper Permian deposits of the southwestern part of the Vilyui syneclise based on the analysis of sedimentary environments and geochemical conditions of oil and gas content

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The article discusses the prospects for the oil and gas content of the Upper Permian deposits in the southwestern marginal part of the Vilyui syneclise. In this margin, the Permian terrigenous complex with proven oil and gas productivity in the central part of the syneclise, pinches out. The study area, represented by the monoclinal slopes of the Vilyui syneclise, is considered a promising area for the exploration of non-structural hydrocarbon traps in the Upper Paleozoic sediments. The objectives of the study include identifying general patterns of sediment formation, associated mainly with the development of the alluvial complex, and substantiating the potential opportunities of migration and accumulation of hydrocarbons in the predicted traps. The research is based on the interpretation of the latest seismic surveys and prior-years geological and geophysical data. Authors carried out structural and paleo-structural analysis, identified lithofacies in the well log, generalized and analyzed the geochemical conditions of the oil and gas content of the Upper Permian deposits, traced the pinching out of the Upper Permian deposits on the southwestern margin of the syneclise, and also outlined areas of river valleys development that form zones of advanced reservoirs. The results of the studies have validated promising oil and gas accumulation zones on the southwestern slopes of the syneclise associated with non-anticlinal hydrocarbon traps. Authors also drew up a diagram of the oil and gas potential of the Upper Permian deposits. The obtained results are of interest for prospecting for oil and gas in the area under study.

How to cite: Cherdantsev G.A., Zharkov A.M. Prospects for the oil and gas content of the Upper Permian deposits of the southwestern part of the Vilyui syneclise based on the analysis of sedimentary environments and geochemical conditions of oil and gas content // Journal of Mining Institute. 2021. Vol. 251. p. 698-711. DOI: 10.31897/PMI.2021.5.9
Geology
  • Date submitted
    2018-07-05
  • Date accepted
    2018-09-07
  • Date published
    2018-12-21

The development of ideas about the structure and oil and gas potential of Nepa-Botuoba anteclise and adjacent part of Predpatomskii trough

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We considered various alternatives for tectonic zoning of the southwestern territories of The Republic of Sakha (Yakutia). Since 1975, the northern part of the Nepa-Botuoba anteclise has been considered the structure controlling the oil and gas bearing area of the same name. The Nepa-Botuoba oil and gas region is one of the unique territories of the ancient Siberian platform. Its hydrocarbon potential is only partially explored. Analysis of the evolution of ideas about the structure of the Nepa-Botuoba anteclise shows that as new data about its deep structure appear, the reserves of oil and gas increase almost synchronously. Currently, almost the entire resource base of the republic’s oil and gas industry is concentrated here.

How to cite: Sevostyanova R.F., Sitnikov V.S. The development of ideas about the structure and oil and gas potential of Nepa-Botuoba anteclise and adjacent part of Predpatomskii trough // Journal of Mining Institute. 2018. Vol. 234. p. 599-603. DOI: 10.31897/PMI.2018.6.599
Oil and gas
  • Date submitted
    2018-01-17
  • Date accepted
    2018-03-09
  • Date published
    2018-06-22

Control and regulation of the hydrochloric acid treatment of the bottomhole zone based on field-geological data

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The analysis results of the hydrochloric acid treatment of the bottomhole zone efficiency along the deposits of high-viscosity oil in the carbonate reservoirs of the Tournaisian stage are presented in the paper. Based on the use of the non-parametric Kulbak criterion, the most informative geological and technological parameters, which affect most the success of hydrochloric acid treatments, assessed by the criteria of increased oil production and reduced water cut, are revealed. The generalization of the hydrochloric acid treatments experience in the conditions of the high-viscosity oil reservoirs of the Tournaisian Stage allows for efficient forecasting, selection of wells, control and regulation of the treatment process to reduce the number of inefficient operations and improve the technical and economic parameters of fuel and energy enterprises at the investigated sites and the ones with similar field-geological characteristics.

How to cite: Rogachev M.K., Mukhametshin V.V. Control and regulation of the hydrochloric acid treatment of the bottomhole zone based on field-geological data // Journal of Mining Institute. 2018. Vol. 231. p. 275-280. DOI: 10.25515/PMI.2018.3.275
Oil and gas
  • Date submitted
    2017-12-29
  • Date accepted
    2018-03-26
  • Date published
    2018-06-22

Methods to enhance oil recovery in the process of complex field development of the Yarega oil and titanium deposit

Article preview

Yarega oil and titanium deposit is a unique facility due to a combination of two mineral resources – oil and titanium ore – in one geologic structure. The paper describes mining and geologic conditions of the field, as well as engineering solutions to enhance oil recovery and the efficiency of heat transfer. The author focuses on the issues of deposit opening and preparation for development, and provides recommendations regarding the exploitation procedure of the oil and titanium parts of the field, which take into account field data on the extraction rates of high viscosity oil and titanium ore from the start of deposit development. The paper contains analysis of existing technological schemes of high viscosity oil extraction and steam heating of the oil bed, as well as assessment of their feasibility. Issues of field preparation for development are reviewed from the position of accumulated practical experience, and recommendations on the feasibility of combined underground and open-pit mining are supported with evidence. The main advantages of the proposed system are explained; key technical and economic indicators are calculated.

How to cite: Dolgii I.E. Methods to enhance oil recovery in the process of complex field development of the Yarega oil and titanium deposit // Journal of Mining Institute. 2018. Vol. 231. p. 263-267. DOI: 10.25515/PMI.2018.3.263
Geoeconomics and Management
  • Date submitted
    2016-10-28
  • Date accepted
    2017-01-08
  • Date published
    2017-04-14

Problems of mineral tax computation in the oil and gas sector

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The paper demonstrates the role of mineral tax in the overall sum of tax revenues in the budget. Problems of tax computation and payment have been reviewed; taxpayers and taxation basis of the amount of extracted minerals have been clearly defined. Issues of rental content of natural resource taxes are reviewed, as well as problems of right definition of the rental component in the process of mineral tax calculation for liquid and gaseous hydrocarbons. One of important problems in mineral tax calculation is a conflict between two laws – the Subsoil Law and the Tax Code of Russian Federation (26 th chapter). There is an ambiguity in the mechanism of calculating amounts of extracted mineral resources – from the positions of the Tax Code and the Subsoil Law. The second problem is in the necessity to amend the mineral tax for oil extraction the same way as it has been done for gas extraction, when characteristics of each field are taken into account. This will provide a basis for correct computation of the natural resource rent for liquid and gaseous hydrocarbons. The paper offers recommendations for Russian authorities on this issue.

How to cite: Privalov N.G., Privalova S.G. Problems of mineral tax computation in the oil and gas sector // Journal of Mining Institute. 2017. Vol. 224. p. 255-262. DOI: 10.18454/PMI.2017.2.255
Metallurgy and concentration
  • Date submitted
    2016-10-30
  • Date accepted
    2017-01-14
  • Date published
    2017-04-14

HYDRO-IMP technology for upgrading of heavy petroleum

Article preview

Hydroprocessing is one of the most important processes in petroleum refining industry, not only for upgrading of heavy oils but also for producing low-impurity content fuels and preparing feeds for various conversion processes. Experimental results obtained in pilot plant and semi-commercial scales for hydroprocessing of heavy oils are reported in this work. Mexican heavy crude oils (10, 13 and 16°API) with high amount of impurities were used for all tests. Hydroprocessing was conducted at moderate reaction severity in two fixed-bed reactors in series. Removals of sulfur, metals and asphaltenes, as well as changes of API gravity and viscosity were monitored at different reaction conditions with time-on-stream. Upgraded oils with reduced amounts of impurities and increased API were obtained, keeping sediment formation below maximum allowable content. Removal of impurities was higher in semi-commercial scale compared with pilot plant test. Have been proved that the heavier the feed the greater the gain in product quality. For instance, 10°API crude can increase its gravity up to ~22°API (Δ°API = 12), while 16°API crude increases its gravity up to ~25°API (Δ°API = 9). Sediment formation was also kept below 0.05 wt % and no other problems (excessive reactor delta-P, plugging, etc.) were observed during the test.

How to cite: Anchita K. HYDRO-IMP technology for upgrading of heavy petroleum // Journal of Mining Institute. 2017. Vol. 224. p. 229-234. DOI: 10.18454/PMI.2017.2.229
Metallurgy and concentration
  • Date submitted
    2015-12-08
  • Date accepted
    2016-02-02
  • Date published
    2016-12-23

Effect of chemical composition and quality of heavy Yarega oil on selection of appropriate processing technology

Article preview

The paper explores physical and chemical properties and composition of heavy oil from Yarega field and its vacuum residue, i.e. the tar. The capillary chromatography and gas chromatography-mass spectrometry were used to identify specific group hydrocarbon composition of heavy Yarega oil and components extracted therefrom, which has proven its belonging to highly resinous sulfurous naphthenic and aromatic oils. Based on the comparative analysis of composition and quality of feedstock a possibility has been assessed to produce a high-quality needle coke with low content of sulphur and metals from the heavy oil of Yarega field and its vacuum residue. An integrated process flow diagram for heavy Yarega oil refinement has been proposed, including preliminary deasphalting and demetallization, hydrotreatment, delayed coking and thermodestructive processes or gasification.

How to cite: Kondrasheva N.K., Khorkhe A. Effect of chemical composition and quality of heavy Yarega oil on selection of appropriate processing technology // Journal of Mining Institute. 2016. Vol. 222. p. 833-838. DOI: 10.18454/PMI.2016.6.833
Oil and gas
  • Date submitted
    2015-10-23
  • Date accepted
    2015-12-19
  • Date published
    2016-08-22

Nondestructive techniques to control the quality and quantity of oil flows

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The article considers the issue of improving the efficiency of exploiting the acting oil fields and transportation system on the basis of modern hi-tech technologies to control the extracted and transported material. Factors are studied that lower the reliability of oil flow measurements, both qualitatively and quantitatively, the main ambiguities are described of using current systems for metrological account of oil transported through the pipelines. The effect is studied of inclusions in the transported oil flow on measurement efficiency. A technique is suggested for selective measurements of separate phases in the complex multi-phase flows with isotropic radio emission, the principal relationships are presented to describe the intensity of direct and scattered gamma-radiation on flow parameters. Criteria are given for developing a measurement system that would control the actual component composition of the flow with time, hence the amount of oil transported; that would enable organizing a centralized open department to control the quality of oil and transportation conditions, upgrade the level of production and provide high measurement accuracy. Results are presented of testing the technique on an operating oil field; the relative error margin of measuring free gas content was 0.2 %. The range is reviewed of possible applications for the measurement system of multi-phase multi-component flows, developed in the Saint Petersburg Mining University.

How to cite: Proskuryakov R.M., Kopteva A.V. Nondestructive techniques to control the quality and quantity of oil flows // Journal of Mining Institute. 2016. Vol. 220. p. 564-567. DOI: 10.18454/PMI.2016.4.564
Oil and gas
  • Date submitted
    2015-07-14
  • Date accepted
    2015-09-28
  • Date published
    2016-02-24

Selection of rational heating temperature for pipeline pumping high-viscosity and high pour point crude oil

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The article deals with the transportation problems of high-viscosity and high pour point crude oil through pipelines. The possibility of a structural oil movement mode development during transportation below the pour point is analyzed. The results of the experiment for unevenness of the heat flux identification in the underground pipeline are given.

How to cite: Nikolaev A.K., Klimko V.I. Selection of rational heating temperature for pipeline pumping high-viscosity and high pour point crude oil // Journal of Mining Institute. 2016. Vol. 217. p. 50-54.
Development of oil and gas deposits
  • Date submitted
    2010-07-16
  • Date accepted
    2010-09-11
  • Date published
    2011-03-21

Parameters of high viscosity oils transportation in the form of emulsion research in order to its optimization

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The article deals with the physical model of high viscosity oil-in-water emulsion flow, which concern both structural and plastic properties of viscoplastic liquids. On the basis of theoretical study, which was proved with experimental data, computation algorithm of high viscosity oil in emulsion state pipeline transportation was developed.

How to cite: Aleksandrov V.I., Khrabrov A.P. Parameters of high viscosity oils transportation in the form of emulsion research in order to its optimization // Journal of Mining Institute. 2011. Vol. 189. p. 175-178.
Economical aspects in the developments оf fuel & energy complex
  • Date submitted
    2008-11-12
  • Date accepted
    2009-01-22
  • Date published
    2009-12-11

Reproduction of hydrocarbon resource base of the Russian continental shelf

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In article the characteristic of resource base of hydrocarbon resources of a Russian continental shelf is given. Deposits are divided into three groups: the oil, gas and condensate. Estimations of reserves and their changes are presented. Tendencies of development of sub-sea oil and gas deposits on the basic regions are defined: to the Arctic, Far East, Caspian and Baltic.

How to cite: Shkatov M.Y., Vinokurov I.Y., Sergeev I.B. Reproduction of hydrocarbon resource base of the Russian continental shelf // Journal of Mining Institute. 2009. Vol. 184. p. 203-212.
Economical aspects in the developments оf fuel & energy complex
  • Date submitted
    2008-11-21
  • Date accepted
    2009-01-21
  • Date published
    2009-12-11

Potential of russian Federal agency of state reserves in forming oil and oil products reserves system

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The article is dedicated to the problem of setting up strategic oil and oil products reserves which is necessary for ensuring national energy security. It is necessary to form a profound program of organizational, technical, technological, economic and financial measures aimed at implementation of this direction of state energy policy.

How to cite: Kharisova M.T. Potential of russian Federal agency of state reserves in forming oil and oil products reserves system // Journal of Mining Institute. 2009. Vol. 184. p. 195-198.