Newswise — Seaweed farming has captured global attention as a potential solution to remove atmospheric carbon dioxide and offer eco-friendly alternatives to carbon-intensive food and industrial ...
A soil-dwelling microbe has shown a surprising ability to trap carbon dioxide and turn it into rock. Scientists have discovered that Bacillus megaterium, a common bacterium long known for its role in ...
Two new studies have outlined novel ways to capture small amounts of carbon, and which could be scalable for larger applications. In one study, investigators developed a system that uses bacterial ...
Researchers reveal how bacterial organelles self-assemble, uncovering enzyme structures that could drive advances in carbon capture, crop yields, and sustainable materials. (Nanowerk News) The ...
Harvard and Stanford researchers genetically engineered the marine bacterium Alteromonas macleodii to accelerate olivine weathering, boosting atmospheric carbon capture. Tested in custom bioreactors, ...
Researchers from Aarhus University (AU) have developed a new technology that uses microorganisms to convert the CO 2 in flue gas directly for new purposes—for example fuels or substances for the ...
Tucked away in the most extreme nooks and crannies of the Earth are biodiverse galaxies of microorganisms — some that might help scour the atmosphere of the carbon dioxide mankind has pumped into it.
Autotrophic carbon fixation by microorganisms underpins the entry of inorganic carbon into the biosphere, driving essential biogeochemical cycles from deep ocean trenches to soil horizons and ...
Illustration showing the overview of seaweed-associated microbes, their beneficial functions functions that shape seaweed health and resilience against pathogens and environmental change. The right ...