Электронная библиотека (репозиторий) Томского государственного университета
Pokrovsky, Oleg S.

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Source: Chemical geology. 2014. Vol. 383. P. 51-62
Type: статьи в журналах
Date: 2014
Source: International journal of environmental studies. 2014. Vol. 71, № 5. P. 733-748
Type: статьи в журналах
Date: 2014
Source: Geochimica et cosmochimica acta. 2014. Vol. 147. P. 76-89
Type: статьи в журналах
Date: 2014
Source: Geochimica et cosmochimica acta. 2020. Vol. 268. P. 123-141
Type: статьи в журналах
Date: 2020
Description: Olivine is an important mineral that controls the sequestration of atmospheric CO2 in the form of secondary carbonate
Source: Frontiers in Earth Science. 2021. Vol. 9. P. 651731 (1-14)
Type: статьи в журналах
Date: 2021
Description: Arctic sea-ice loss is emblematic of an amplified Arctic water cycle and has critical feedback implications for global climate. Stable isotopes (δ18O, δ2H, d-excess) are valuable tracers for constrain ... More
Source: Water. 2022. Vol. 14, № 14. P. 2250 (1-19)
Type: статьи в журналах
Date: 2022
Description: We studied two medium size pristine rivers (Taz and Ket) of boreal and subarctic zone, western Siberia, for a better understanding of the environmental factors controlling major and trace element tran ... More
Source: Science of the total environment. 2020. Vol. 712. P. 135595 (1-12)
Type: статьи в журналах
Date: 2020
Description: In Southern Europe, soil contamination by heavy metals (HM) due to mining and industrial activities is a longknown
Source: Geobiology. 2022. Vol. 20, № 4. P. 560-574
Type: статьи в журналах
Date: 2022
Description: The biomineralization of CO2, in the form of carbonate minerals, is considered as one of the efficient solutions of atmospheric CO2 removal, allowing stable and sustainable storage of this greenhouse ... More
Source: npj Materials degradation. 2021. Vol. 5. P. 51 (1-10)
Type: статьи в журналах
Date: 2021
Description: Assessment of the microbial impact on mineral dissolution is crucial for a predictive understanding of basic (Ca, Mg bearing) silicate weathering and the associated CO2 consumption, bioerosion, and CO ... More
Source: Biogeochemistry. 2022. Vol. 159, № 1. P. 69-86
Type: статьи в журналах
Date: 2022
Description: Thermokarst (thaw) lakes of the Western Siberian Lowland (WSL), the World´s largest permafrost peatland, contain important but poorly constrained stocks of organic carbon (OC) and nitrogen. These lake ... More
Source: Ambio. 2021. Vol. 50, № 11. P. 2038-2049
Type: статьи в журналах
Date: 2021
Description: Peatlands cover 3% of the land, occur in 169 countries, and have—by sequestering 600 Gt of carbon—cooled the global climate by 0.6 °C. After a general review about peatlands worldwide, this paper desc ... More
Source: BioClimLand : biota, climate, landscapes. 2014. № 1. P. 17-26
Type: статьи в журналах
Date: 2014
Source: The Cryosphere. 2014. Vol. 8. P. 1177-1193
Type: статьи в журналах
Date: 2014
Source: IOP Conference Series: Earth and Environmental Science. 2019. Vol. 232. P. 012015 (1-7)
Type: статьи в журналах
Date: 2019
Description: The paper presents the results of the multidisciplinary experimental investigation of the soils in the sporadic permafrost Northern-taiga subzone (Yamalo-Nenets Autonomous Okrug, Western Siberia) base ... More
Source: Environmental research letters. 2016. Vol. 11. P. 034014 (1-13)
Type: статьи в журналах
Date: 2016
Description: As the permafrost region warms, its large organic carbon pool will be increasingly vulnerable to decomposition, combustion, and hydrologic export. Models predict that some portion of this release will ... More
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