, Ultra-low temperature carbon (di)oxide hydrogenation catalyzed by hybrid ruthenium-nickel nanocatalysts: towards sustainable methane production – Green Chemistry, TheCircularEconomy.com

Ultra-low temperature carbon (di)oxide hydrogenation catalyzed by hybrid ruthenium-nickel nanocatalysts: towards sustainable methane production – Green Chemistry

, Ultra-low temperature carbon (di)oxide hydrogenation catalyzed by hybrid ruthenium-nickel nanocatalysts: towards sustainable methane production – Green Chemistry, TheCircularEconomy.com

It is a paradox that the excess of carbon dioxide in our atmosphere can endanger lives and even the civilization that has been founded on carbon. Human addiction to carbon is persistent and therefore we need novel chemistry for the efficient conversion of CO2 to harmless or useful products.

Source: pubs.rsc.org

, Ultra-low temperature carbon (di)oxide hydrogenation catalyzed by hybrid ruthenium-nickel nanocatalysts: towards sustainable methane production – Green Chemistry, TheCircularEconomy.com

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