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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
    2022-09-05
  • Date accepted
    2023-09-20
  • Date published
    2024-04-25

Modeling the efficiency of seasonal cooling devices when changing the statistical distribution of weather conditions

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The climatic factor of warming, which is evidenced by a significant number of scientists and research teams in Russia and the world, has a significant impact on the cryogenic state of permafrost soil, the preservation of which is one of the most common principles of construction in the North. The influence of projected climatic changes in planning up to 2050 on the efficiency of seasonal cooling devices, the principle of operation of which is based on seasonal soil freezing, is considered. The conducted modeling has shown that in a situation of stable climate, the preservation of the cryogenic state of permafrost soil is realized without the use of additional measures. With warming with a trend of 0.1 °C per year, seasonal cooling devices do not ensure the preservation of the current level of the cryogenic state of the soil and additional measures are required to increase their efficiency in the summer. In the case of more extreme warming with a rate of 0.25 °C per year, the modeling results show that seasonal cooling devices do not significantly affect the rate of soil thawing and the solution to the problem should be its complete replacement with systems with year-round action.

How to cite: Ermilov O.M., Dzhalyabov A.A., Vasilev G.G., Leonovich I.A. Modeling the efficiency of seasonal cooling devices when changing the statistical distribution of weather conditions // Journal of Mining Institute. 2024. Vol. 266 . p. 272-282. EDN UZQOVK
Geoecology and occupational health and safety
  • Date submitted
    2016-09-23
  • Date accepted
    2016-11-07
  • Date published
    2017-02-22

Development of energy-saving technologies providing comfortable microclimate conditions for mining

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The paper contains analysis of natural and technogenic factors influencing properties of mine atmosphere, defining level of mining safety and probability of emergencies. Main trends in development of energy-saving technologies providing comfortable microclimate conditions are highlighted. A complex of methods and mathematical models has been developed to carry out aerologic and thermophysical calculations. Main ways of improvement for existing calculation methods of stationary and non-stationary air distribution have been defined: use of ejection draught sources to organize recirculation ventilation; accounting of depression losses at working intersections; inertance impact of air streams and mined-out spaces for modeling transitory emergency scenarios. Based on the calculation algorithm of airflow rate distribution in the mine network, processing method has been developed for the results of air-depressive surveys under conditions of data shortage. Processes of dust transfer have been modeled in view of its coagulation and settlement, as well as interaction with water drops in case of wet dust prevention. A method to calculate intensity of water evaporation and condensation has been suggested, which allows to forecast time, duration and quantity of precipitation and its migration inside the mine during winter season.

How to cite: Kazakov B.P., Levin L.Y., Shalimov A.V., Zaitsev A.V. Development of energy-saving technologies providing comfortable microclimate conditions for mining // Journal of Mining Institute. 2017. Vol. 223 . p. 116-124. DOI: 10.18454/PMI.2017.1.116
Industrial safety and health care in mining
  • Date submitted
    2013-07-23
  • Date accepted
    2013-09-14
  • Date published
    2014-03-17

Experimental researches on definition energy costs of workers, depending on the parameters of the cooling microclimate

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The results of comprehensive research on the change of energy expenses, depending on the operating parameters of the cooling microclimate, on the basis of which is determined by the need to adjust the work and rest conditions for workers of the northern regions.

How to cite: Galkin A.F., Khusainova R.G. Experimental researches on definition energy costs of workers, depending on the parameters of the cooling microclimate // Journal of Mining Institute. 2014. Vol. 207 . p. 103-105.