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Joining the DOE HyBlend Program, 18-R6160

Principal Investigator
Inclusive Dates 
07/01/21 - Current

Background

Hydrogen will be a key resource as the world seeks carbon-neutral energy sources, and utilizing hydrogen blended with natural gas (HyBlend) for power generation and heating will help to reduce greenhouse gas emissions. By using the existing pipeline infrastructure and conventional natural gas power generation machinery, greenhouse gas emissions can be readily reduced in the very near term. However, pipeline operators and power generating companies are concerned with the potential degradation effects of blended natural gas on existing pipeline infrastructure and power-generating machinery. The Department of Energy is currently funding a team of six national labs to perform basic research on the effects of blended natural gas on existing pipelines and pipeline materials to address industry concerns. This team is required to secure industry and academic support through in-kind and cash contributions, and this HyBlend program provides SwRI with an opportunity to better prepare for the hydrogen economy.

Approach

Through in-kind project support, SwRI will join the national lab team and more than 20 industry and academic organizations to support the HyBlend program. SwRI will provide technical expertise and unique testing and characterization capabilities to evaluate pipeline material compatibility with blended natural gas. Very few studies have explored material performance and effects of blended natural gas on the mechanical properties of pipeline materials in relevant environments.

Accomplishments

The primary accomplishment to date was SwRI, along with the national labs and industrial partners, signing the Cooperative Research and Development Agreement (CRADA). Everything is now in place for the HyBlend program to begin. With the official start of the project, the in-kind cost share tasks will be defined in the ensuing months. It is anticipated that SwRI’s in-kind cost share will be materials testing in high pressure blended natural gas with hydrogen, metallurgical characterization, and fractography.