Integrating hydrology and biogeochemistry across frozen landscapes
Nature Communications
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Abstract
Research has traditionally focused on atmospheric release of carbon from thawing permafrost, yet overlooked waterborne release pathways likely contribute significantly, especially in a warming Arctic. To address this knowledge gap and better constrain the fate of carbon in the North, we recommend inter-disciplinary efforts bridging physical, chemical and computational research.
Additional publication details
Publication type | Article |
---|---|
Publication Subtype | Journal Article |
Title | Integrating hydrology and biogeochemistry across frozen landscapes |
Series title | Nature Communications |
DOI | 10.1038/s41467-019-13361-5 |
Volume | 10 |
Year Published | 2019 |
Language | English |
Publisher | Nature |
Contributing office(s) | WMA - Earth System Processes Division |
Description | 5377, 4 p. |
Other Geospatial | Arctic |