Quantitatively Analyzing Nanoscale Hydrogen Distribution in Materials
Researchers demonstrated a path to quantitatively map hydrogen pick up in model steels.
Storing Hydrogen on Materials
Newly funded research will look at the underlying science of controlling hydrogen interactions with two-dimensional materials composed of carbon, boron, and nitrogen.
Containing Hydrogen in a Materials World
Researchers at the Department of Energy’s Pacific Northwest National Laboratory and Sandia National Laboratories have joined forces to reduce costs and improve the reliability of hydrogen fueling stations.
PNNL Partnering on Center for Hydrogen Safety
Many industries are increasingly looking at hydrogen as a relatively new but efficient, clean, and quiet power source.
Mechanism of Iron-based Hydrogen Bond Cleavage Revealed
Scientists at PNNL's Center for Molecular Electrocatalysis (CME) are working to understand the fundamental reactivity of H2 that could contribute to making hydrogen a more widely used fuel source.
Residual Impurities Affect the Stability of Hydrogen Atoms in Irradiated Gibbsite
Hydrogen atoms released and trapped in irradiated gibbsite are destabilized by synthetic-precursor residuals.
STARS Align: PNNL-developed Technology Deployed at Hydrogen Fueling Station
Patented microchannel heat-exchange technology enables the production of hydrogen from methane, the main ingredient of natural gas, while producing 30 percent less carbon dioxide than conventional processes.
Renewable Hydrogen Fuel Being Studied for the Port of Seattle
A research team is exploring the safety and feasibility of clean hydrogen to replace some fossil fuel in medium- and heavy-duty vehicles and maritime uses at the Port of Seattle.
New Project Evaluates Long-term Hydrogen Storage Risks in the Emerald City
PNNL is working with the Port of Seattle and Seattle City Light to assess the risks of long-term hydrogen storage that can bring clean power for decarbonization.
Understanding How Trace Impurities in Nuclear Waste Change the Hydrogen Yield of Irradiated Gibbsite
Using multiple specialized techniques, IDREAM researchers gained a better understanding of how trace impurities within gibbsite affect the hydrogen yield.