PNNL Team Awarded Best Paper of 2018 by Emission Control Science and Technology
Editors of the journal Emission Control Science and Technology deemed “Coating Distribution in a Commercial SCR Filter” Best Paper in 2018. The authors include PNNL's Mark Stewart, Carl Justin Kamp, Feng Gao, Yilin Wang, and Mark Engelhard.
Wang Honored with National Catalysis Award
Yong Wang, a PNNL laboratory fellow, has received the 2019 Catalysis and Reaction Engineering Practice Award from the American Institute of Chemical Engineers.
PNNL, LanzaTech Collect FLC Award
PNNL and collaborator LanzaTech were honored April 24 for their partnership in the development and commercialization of an ethanol-based synthetic paraffinic jet fuel that can use any sustainable ethanol as a feedstock.
Not “The Jetsons”—But Getting There
Researchers develop tools to advance tomorrow’s infrastructure-to-vehicle communications and traffic routing concepts.
Hydrothermal Liquefaction and Upgrading of Wastewater-Grown Microalgae: 2021 State of Technology
From Steel Mill to DOE Laboratory, Arun Devaraj Seeks Perfection
Materials scientist Arun Devaraj is committed to improving the quality and performance of metals with a big assist from atom probe tomography.
Culprit Nabbed in the Death of a Catalyst
Several years ago, a relatively new catalyst for vehicle emission control began showing failure. A team at PNNL found that this seemingly suicidal catalyst wasn’t actually self-destructing but was the victim of an external assailant.
Making Every Atom Count to Reduce Auto Emissions
Researchers at PNNL and their collaborators have made a significant improvement to a catalyst that is more rugged and can reduce tailpipe pollution at lower temperatures than existing methods.
Simmons Recognized at DOE Merit Review
PNNL materials scientist Kevin Simmons is part of a collaboration that was recognized for work in hydrogen safety, codes and standards recently at the DOE Hydrogen and Fuel Cells Program annual merit review and peer evaluation.
The Future of Cooling? A Molecular Pump
Researchers at PNNL have introduced an alternative method using a molecular-based pump that could potentially use a quarter less energy than the age-old mechanical pump.