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Small wonder that with the global economy traumatized recently by the recurring financial crisis, increasing levels of public debt and persistent unemployment,  many governments have increased efforts to promote development of renewable energy-low carbon that can strengthen energy security.  This has, according to a 2011 report by the International Energy Agency (IEA),  stimulated [an] unprecedented rise in deployment, and renewables are now the fastest growing sector of the energy mix. 


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On reflection, we are in a decades-long transformation of our economic, technological and energy systems mix in order to deal with population growth and a lower carbon footprint. Canada can play a key role in this transformation both as a supplier of energy and a source of innovation throughout the energy-innovation chain. Our reality as a resource rich country is that sustainable energy is the provision of energy from a multitude of sources in order to meet the economic, social and environmental interests of Canadians in a responsible manner.

In this country the NEB projects there will be a tripling of production from the oil sands by 2035, along with a material increase in shale gas development. Due to federal and provincial policies, our energy is also expected to be cleaner, with increases in renewable, carbon capture and storage technologies and continuing investments in innovative clean technologies across both the traditional and renewable energy sources.

Four primary phases to an ecosystem cycle involve the release of carbon, energy, and nutrients by insects, fire, grazing or other agents; reorganization of the primary resources by pioneer species; exploitation of resources (succession) and redevelopment of more complex ecological relationships; and storage (climax) of resources until an ecological driver initiates a new phase.

Around the world, the transportation sector is evolving. Globally, electric vehicle (EV) sales have more than doubled, showing a 72 percent increase in 2015, followed by 41 percent global increase in EV sales in 2016. Now, France is committing to a greener transportation sector by vowing to end the sale of gasoline and diesel vehicles by 2040, further pledging to become a carbon neutral country by 2050.

In order to become carbon neutral by 2050, France will also need to devote energy to ending the use of fossil fuels across the board, which includes ending hydrocarbon licenses in the country and stopping coal production by 2022.

David Go has always seen himself as something of a black sheep when it comes to his scientific research approach, and his recent work in developing clean alternative fuels from carbon dioxide is no exception.

Headwater catchment hydrology and biogeochemistry are influenced by climate, including linear trends (nonstationary signals) and climate oscillations (stationary signals). We used an analytical framework to detect nonstationary and stationary signals in yearly time series of nutrient export [dissolved organic carbon (DOC), dissolved organic nitrogen (DON), nitrate (NO3--N), and total dissolved phosphorus (TDP)] in forested headwater catchments with differential water loading and water storage potential at the Turkey Lakes Watershed in Ontario, Canada. We tested the hypotheses that (1) climate has nonstationary and stationary effects on nutrient export, the combination of which explains most of the variation in nutrient export; (2) more metabolically active nutrients (e.g., DON, NO3--N, and TDP) are more sensitive to these signals; and (3) catchments with relatively low water loading and water storage capacity are more sensitive to these signals. Both nonstationary and stationary signals were identified, and the combination of both explained the majority of the variation in nutrient export data. More variation was explained in more labile nutrients (DON, NO3--N, and TDP), which were also more sensitive to climate signals. The catchment with low-water storage potential and low water loading was most sensitive to nonstationary and stationary climatic oscillations, suggesting that these hydrologic features are characteristic of the most effective sentinels of climate change. The observed complex links between climate change, climatic oscillations, and water nutrient fluxes in headwater catchments suggest that climate may have considerable influence on the productivity and biodiversity of surface waters, in addition to other drivers such as atmospheric pollution. 17dc91bb1f

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