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In a breakthrough that edges carbon capture closer to circular economy goals, scientists at Caltech have developed a system ...
The polymerization of vinylidene fluoride in supercritical carbon dioxide was studied in a continuous stirred tank reactor using diethylperoxydicarbonate as the free radical initiator. Experiments ...
What if a machine could suck up carbon dioxide from the atmosphere, run it through a series of chemical reactions, and essentially spit out industrially useful plastic?
Solar and wind energy are highly variable, dependent on the day, weather and location of the facilities. At times, they can ...
What if a machine could suck up carbon dioxide from the atmosphere, run it through a series of chemical reactions, and essentially spit out ...
Solar and wind energy are highly variable, dependent on the day, weather and location of the facilities. At times, they can ...
Step inside the laboratory as Chibueze Amanchukwu and his team investigate the chemistry that could lead to better batteries ...
Acid vapor prevents salt buildup in CO2 reactors, enabling longer, more efficient operation. A team of researchers at Rice ...
We investigated the solvation and spectroscopic properties of SO2 at the air/water interface using molecular simulation. Molecular interactions from both Kohn−Sham (KS) density functional theory (DFT) ...
China emerges as the dominant contributor, accounting for 41.7% of all publications. This is followed by India, Mexico, the ...
The highest CO2 levels in 50,000 years is still 10 times less than our current anthropogenic climate nightmare.
New research warns that several methods of using the ocean for carbon removal could drastically deplete it of oxygen.