Zobrazeno 1 - 10
of 63
pro vyhledávání: '"A F Sabrekov"'
Autor:
A F Sabrekov, M V Glagolev, P K Alekseychik, B A Smolentsev, I E Terentieva, L A Krivenok, S S Maksyutov
Publikováno v:
Environmental Research Letters, Vol 11, Iss 7, p 075001 (2016)
This study combines a literature survey and field observation data in an ad initio attempt to construct a process-based model of methane sink in upland soils including both the biological and physical aspects of the process. Comparison is drawn betwe
Externí odkaz:
https://doaj.org/article/2592d7a472c648a89be3ed8523599d29
Publikováno v:
Environmental Research Letters, Vol 9, Iss 4, p 045008 (2014)
This study compares seasonal and spatial variations in methane fluxes as sources of uncertainty in regional CH _4 flux upscaling from the wetlands of West Siberia. The study examined variability in summertime CH _4 emissions from boreal peatlands, wi
Externí odkaz:
https://doaj.org/article/d728ac236d5247bbaf28909acd64e249
Publikováno v:
Environmental Dynamics and Global Climate Change. 13:123-141
The spread of published values of the rate of methane uptake by soils makes up several orders of magnitude from 0.0001 to 1 mgm-2h-1, which is comparable in magnitude to the spread of estimates of the release of CH4 out of waterlogged soils. The high
Autor:
E. A. Dyukarev, A. F. Sabrekov, M. V. Glagolev, M. V. Kiselev, I. V. Filippov, A. A. Dmitrichenko, E. D. Lapshina
Publikováno v:
Contemporary Problems of Ecology. 15:671-682
Autor:
A. F. Sabrekov, B. R. K. Runkle, M. V. Glagolev, I. E. Terentieva, V. M. Stepanenko, O. R. Kotsyurbenko, S. S. Maksyutov, O. S. Pokrovsky
Publikováno v:
Biogeosciences, Vol 14, Pp 3715-3742 (2017)
Small lakes represent an important source of atmospheric CH4 from northern wetlands. However, spatiotemporal variations in flux magnitudes and the lack of knowledge about their main environmental controls contribute large uncertainty into the glob
Externí odkaz:
https://doaj.org/article/4b058cd8af784375989915abd5692940
Publikováno v:
Biogeosciences, Vol 13, Iss 16, Pp 4615-4626 (2016)
High-latitude wetlands are important for understanding climate change risks because these environments sink carbon dioxide and emit methane. However, fine-scale heterogeneity of wetland landscapes poses a serious challenge when generating regional-sc
Externí odkaz:
https://doaj.org/article/10090ed9f2d44586bca26237f2ce7979
Autor:
Danil V. Ilyasov, Anastasia V. Meshcheryakova, Mikhail V. Glagolev, Iuliia V. Kupriianova, Alexandr A. Kaverin, Alexandr F. Sabrekov, Mikhail F. Kulyabin, Elena D. Lapshina
Publikováno v:
Land
Volume 12
Issue 3
Pages: 566
Volume 12
Issue 3
Pages: 566
The Mukhrino field station has participated in the national project on the inventory of carbon fluxes and pools in the terrestrial ecosystems of Russia since 2022. The development of a network of measurements of CO2 fluxes and phytomass covered six t
Autor:
E. A. DYUKAREV, A. F. SABREKOV, M. V. GLAGOLEV, M. V. KISELEV, I. V. FILIPPOV, A. A. DMITRICHENKO, E. D. LAPSHINA
Publikováno v:
Сибирский экологический журнал. 29:728-741
Autor:
A F Sabrekov, I V Filippov, E A Dyukarev, E A Zarov, A A Kaverin, M V Glagolev, I E Terentieva, E D Lapshina
Publikováno v:
Environmental Dynamics and Global Climate Change. 13
Introduction. The concentration of methane in the Earth's atmosphere, the second most potent greenhouse gas, continues to rise since 2007 [Canadell et al., 2021]. The need to significantly reduce the anthropogenic emission of methane into the atmosph
Publikováno v:
Microbiology. 90:632-642
Recently discovered fields of seeps in western Siberia are an important, previously unknown source of methane. Seeps are located in the floodplains of small rivers and vary in shape, size and localization. Methane fluxes from seeps may be high, makin