Sources of Carbon Dioxide in the Atmosphere: Hydrocarbon Emission from Gas Hydrates in Focus

Author:

Kutcherov Vladimir12,Kudryavtsev Daniil3,Serovaiskii Aleksandr1ORCID

Affiliation:

1. Department of Physics, National University of Oil and Gas «Gubkin University», Leninsky Prospect 65, 119991 Moscow, Russia

2. KTH Royal Institute of Technology, Brinellvägen 68, 11428 Stockholm, Sweden

3. Zavaritskii Institute of Geology and Geochemistry, Ural Division, Russian Academy of Sciences, Pochtovyi per. 7, 620151 Yekaterinburg, Russia

Abstract

The concentration of carbon dioxide and methane in the atmosphere has significantly increased over the last 60 years. One of the factors in the growth of methane and its homologue emissions is the intense thawing of gas hydrates, mainly from the Arctic shelf, which remains one of the less studied sources of atmospheric hydrocarbon emissions. Oxidation of methane and light-saturated hydrocarbons by ozone in the upper part of the atmosphere leads to the formation of CO2. The analysis of several datasets presented in this paper allows us to find the correlation between CH4 and CO2 concentrations in the atmosphere. This finding suggests that methane and its homologues released from gas hydrates mainly in the Arctic shelf zone become a significant source of carbon dioxide in the atmosphere. Because the amount of hydrocarbons located in gas hydrate deposits on the Arctic shelf is huge, further evolution of this process can become a serious challenge.

Publisher

MDPI AG

Subject

Atmospheric Science,Environmental Science (miscellaneous)

Reference59 articles.

1. Field, C.B., and Raupach, M.R. (2004). The Global Carbon Cycle: Integrating Humans, Climate, and the Natural World, Island Press.

2. Canadell, J.G., Pataki, D.E., and Pitelka, L.F. (2007). Terrestrial Ecosystems in a Changing World, Springer Science & Business Media.

3. Tans, P., and Keeling, D. (2022). Trends in Atmospheric Carbon Dioxide.

4. Carbon dioxide emissions continue to grow amidst slowly emerging climate policies;Peters;Nat. Clim. Change,2020

5. Global Carbon Budget 2022;Friedlingstein;Earth Syst. Sci. Data,2022

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