Difference between revisions of "Climate change"
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==Rainfall patterns== | ==Rainfall patterns== | ||
− | + | Rainfall patterns are forecast to change <ref>Wang, X., & Huang, G. (2015). Technical Report: Development of High-Resolution Climate Change Projections under RCP 8.5 Emissions Scenario for the Province of Ontario. Regina.</ref><ref>Simonovic, S. P., Schardong, A., Sandink, D., & Srivastav, R. (2016). A web-based tool for the development of Intensity Duration Frequency curves under changing climate. Environmental Modelling & Software, 81, 136–153. https://doi.org/10.1016/j.envsoft.2016.03.016</ref>. The | |
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==Vegetation== | ==Vegetation== | ||
Increased atmospheric CO<sub>2</sub> levels will stimulate photosynthetic processes, increasing [[phosphorus]] uptake of all plants<ref>Jin J Tang C Sale P. 2015. The impact of elevated carbon dioxide on the phosphorus nutrition of plants. A review. Annals of Botany 116: 987–999.</ref>. | Increased atmospheric CO<sub>2</sub> levels will stimulate photosynthetic processes, increasing [[phosphorus]] uptake of all plants<ref>Jin J Tang C Sale P. 2015. The impact of elevated carbon dioxide on the phosphorus nutrition of plants. A review. Annals of Botany 116: 987–999.</ref>. | ||
− | + | ==For further information== | |
− | + | Reach out to our colleagues at [Ontario Climate Consortium https://climateconnections.ca/]. | |
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Revision as of 14:08, 6 March 2018
Temperature
Increases in temperature will affect evapotranspiration
Rainfall patterns
Rainfall patterns are forecast to change [1][2]. The
Vegetation
Increased atmospheric CO2 levels will stimulate photosynthetic processes, increasing phosphorus uptake of all plants[3].
For further information
Reach out to our colleagues at [Ontario Climate Consortium https://climateconnections.ca/].
- ↑ Wang, X., & Huang, G. (2015). Technical Report: Development of High-Resolution Climate Change Projections under RCP 8.5 Emissions Scenario for the Province of Ontario. Regina.
- ↑ Simonovic, S. P., Schardong, A., Sandink, D., & Srivastav, R. (2016). A web-based tool for the development of Intensity Duration Frequency curves under changing climate. Environmental Modelling & Software, 81, 136–153. https://doi.org/10.1016/j.envsoft.2016.03.016
- ↑ Jin J Tang C Sale P. 2015. The impact of elevated carbon dioxide on the phosphorus nutrition of plants. A review. Annals of Botany 116: 987–999.