Biogeochemical Carbon Cycles Numerical Modeling in Wetland Ecosystems
Author:
Publisher
Pleiades Publishing Ltd
Subject
General Mathematics
Link
https://link.springer.com/content/pdf/10.1134/S1995080223030307.pdf
Reference12 articles.
1. J. H. Janse, A. van Dam, E. M. A. Hes, J. J. M. de Klein, and M. Finlayson, ‘‘Towards a global model for wetlands ecosystem services,’’ Curr. Opin. Environ. Sustainab. 36, 11–19 (2019).
2. J. Farmer, R. Matthews, J. U. Smith, P. Smith, and B. K. Singh, ‘‘Assessing existing peatland models for their applicability for modeling greenhouse gas emissions from tropical peat soils,’’ Curr. Opin. Environ. Sustainab. 3, 339–349 (2011).
3. Y. Zhang, C. Li, C. Trettin, and G. Sun, ‘‘An integrated model of soil, hydrology, and vegetation for carbon dynamics in wetland ecosystems,’’ Glob. Biogeochem. Cycles 16 (4), 9–17 (2002).
4. S. Sollie, J. H. Janse, W. M. Mooij, H. Coops, and J. T. A. Verhoeven, ‘‘The contribution of marsh zones to water quality in Dutch shallow lakes: A modeling study,’’ Environ. Manage. 42, 1002–1016 (2008).
5. J. van Huissteden, R. van den Bos, and M. Alvarez, ‘‘Modeling the effect of water table management on CO$${}_{2}$$ and CH$${}_{4}$$ fluxes from peat soils,’’ Netherl. J. Geosci. 85 (1), 3–18 (2006).
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