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Alyssa Carrell started her science career studying the tallest inhabitants in the forest, but today is focused on some of its smallest ā the microbial organisms that play an outsized role in plant health.
The United States could triple its current bioeconomy by producing more than 1 billion tons per year of plant-based biomass for renewable fuels, while meeting projected demands for food, feed, fiber, conventional forest products and exports, according to the DOEās latest Billion-Ton Report led by ORNL.

New computational framework speeds discovery of fungal metabolites, key to plant health and used in drug therapies and for other uses.

Scientists from more than a dozen institutions have completed a first-of-its-kind high-resolution assessment of carbon dioxide removal potential in the United States, charting a path to achieve a net-zero greenhouse gas economy by 2050.

Four scientists affiliated with ORNL were named Battelle Distinguished Inventors during the labās annual Innovation Awards on Dec. 1 in recognition of being granted 14 or more United States patents.

Scientists at ORNL used their knowledge of complex ecosystem processes, energy systems, human dynamics, computational science and Earth-scale modeling to inform the nationās latest National Climate Assessment, which draws attention to vulnerabilities and resilience opportunities in every region of the country.

Anne Campbell, a researcher at ORNL, recently won the Young Leaders Professional Development Award from the Minerals, Metals & Materials Society, or TMS, and has been chosen as the first recipient of the Young Leaders International Scholar Program award from TMS and the Korean Institute of Metals and Materials, or KIM.

Scientists at ORNL used their expertise in quantum biology, artificial intelligence and bioengineering to improve how CRISPR Cas9 genome editing tools work on organisms like microbes that can be modified to produce renewable fuels and chemicals.

91°µĶų scientists identified a gene āhotspotā in the poplar tree that triggers dramatically increased root growth. The discovery supports development of better bioenergy crops and other plants that can thrive in difficult conditions while storing more carbon belowground.

In fiscal year 2023 ā Oct. 1āSept. 30, 2023 ā 91°µĶų was awarded more than $8 million in technology maturation funding through the Department of Energyās Technology Commercialization Fund, or TCF.