BACKGROUND Environmental, geopolitical, and economic factors are reshaping our view of global energy and manufacturing demands. Addressing these challenges may require a …
It is unequivocal that the increases in atmospheric carbon dioxide (CO2), methane (CH4) and nitrous oxide (N2O) since the pre-industrial period are caused by human activities. The …
As the main component of natural and shale gas, seabed clathrates, and biogas, methane (CH 4) is an abundant C1 resource for added-value chemicals. CH 4 is of critical importance …
Additive manufacturing (AM) is energizing the fields of chemistry and materials science to develop new inks for new applications within fields such as aerospace, robotics, and …
Bacteria that oxidize methane to methanol are central to mitigating emissions of methane, a potent greenhouse gas. The nature of the copper active site in the primary metabolic …
Atmospheric methane removal (eg in situ methane oxidation to carbon dioxide) may be needed to offset continued methane release and limit the global warming contribution of this …
A Zhakeyev, P Wang, L Zhang, W Shu… - Advanced …, 2017 - Wiley Online Library
The global energy infrastructure is undergoing a drastic transformation towards renewable energy, posing huge challenges on the energy materials research, development and …
Additive manufacturing (AM) technologies are expanding the boundaries of materials science and providing an exciting forum for interdisciplinary research. The ability to fabricate …
FJ Tucci, AC Rosenzweig - Chemical reviews, 2024 - ACS Publications
Methane is a potent greenhouse gas that contributes significantly to climate change and is primarily regulated in Nature by methanotrophic bacteria, which consume methane gas as …