Development of heterogeneous catalytic systems for the transformation of carbon dioxide to methanol under mild conditions.
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Carbon capture and utilization are promising to tackle fossil-fuel depletion and climate change. CO2 hydrogenation can synthesize various chemicals and fuels, such as methanol, formic acid, urea, and methane. CO2-to-methanol integrated with solid-oxide ele ...
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The use of formate-based ammonia precursors as alternatives to urea in the selective catalytic reduction (SCR) process requires that formic acid released upon their thermolysis in the hot exhaust is rapidly decomposed to carbon dioxide. This work aims at t ...
The aim of this paper is to explore the long-term relevance of negative emissions for the attainment of Paris agreement goals. For this purpose, we extend a game theoretic meta-model used to assess the future of Paris agreement to the time horizon 2100 and ...
Our reliance on fossil fuels, which is unsustainable due to dwindling reserves, has led to various environmental issues. Lignocellulosic biomass could serve as a renewable source of carbon and energy for the production of fuels and chemicals. While several ...
At current emission level, humanity would have used up their remaining carbon footprint budget from now to eternity within four years or less, when compared to the emissions compatible with keeping global warming within a limit of 1.5°C. Therefore, zero ne ...
Paul Scherrer Institute, World Resources Forum2019
Climate warming affects plant physiology through genetic adaptation and phenotypic plasticity, but little is known about how these mechanisms influence ecosystem processes. We used three elevation gradients and a reciprocal transplant experiment to show th ...
In order to reduce the CO2 emissions in the transportation sector, one can electrify the vehicle, switch to biofuel, or capture and store CO2 on board. In this study, integration of an on board CO2 capture and storage unit with an internal combustion engin ...