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By creating a conversion process for recycling carbon dioxide into feedstock, the CO2Recycling project is paving the way towards a sustainable chemical industry.
Quantifying the carbon storage potential of terrestrial ecosystems will have to take account of the relative contributions of photosynthesis and respiration to the global carbon cycle. The SOLCA project developed an ambitious approach to tackle this challenge.
A European bioengineer has pushed the boundaries of cell manipulation by pioneering a new, droplet-based method of study. His innovation, allowing for the highly detailed observation of cells, has resulted in the launch of a spin-off company as well as further research into cell cultures. Fuelled by a European Research Council (ERC) grant, the technology promises to open doors to new applications in pharmaceuticals, diagnostics and medical research.
An unexpected discovery by EU-funded researchers has opened up a new field of photovoltaic technology that promises a more efficient and economical way to convert solar energy into electrical power.
A European biologist has pioneered a new way of looking at biodiversity change, with the help of the European Research Council (ERC). A key result of this work has been the launch of an open-access biodiversity database, which will help researchers and conservation managers find sustainable solutions to protect wildlife.
Quantum computers are the Holy Grail of information theorists. For years, scientists have been trying to crack their mysteries, to harvest their interesting applications. They are predicted to have tremendous computational power, exponentially larger than the computers available today. However, so far, they have been difficult to actually build. Prof. Ashley Montanaro will investigate the path from the theoretical foundations of quantum computing their applications to real-life problems.
There is a web of filaments – essentially long strands of gas – that connects all the galaxies in the universe. This is known as the Cosmic Web and, so far, astrophysicist had only a partial idea of what it may have looked like. Now, ERC funded astronomer Michele Fumagalli, and his collaborators from the University of Durham and the RIKEN Cluster for Pioneering Research in Japan, are able to show the stunning images of this common thread that runs through our stars.
Water vapour has been detected in the atmosphere of a remote planet with habitable temperatures. Two ERC grantees at the University College London (UCL) were among the coauthors of study.
On a clear summer night, look up to the sky and what do you see? Ordinary matter such as planets, stars maybe even an asteroid. Millions of little specks, as far as the eyes can reach. This ordinary matter, also known as baryonic matter, is the primary observable component of our universe. But is what we see all that is out there?