RSS feed source: US Energy Information Administration

In-brief analysis

September 15, 2026

Data source: U.S. Energy Information Administration, Liquefaction Capacity File
Note: LNG=liquefied natural gas; FLNG=Floating Liquefied Natural Gas

On August 28, 2026, Cheniere Energy, Inc., completed its Corpus Christi Liquefaction Stage 3 Project (CCL Stage 3) in Texas, taking custody and control of the seventh and last liquefied natural gas (LNG) train in the project.

CCL Stage 3, which started producing LNG in December 2024, is part of the larger Corpus Christi LNG Terminal in San Patricio County, Texas. The additional capacity expands the total nominal capacity of the facility to 3.1 billion cubic feet per day (Bcf/d), or 3.9 Bcf/d peak capacity. With the addition, the Corpus Christi terminal became the second-largest facility in the United States after Sabine Pass in Louisiana, which has a nominal capacity of 3.6 Bcf/d

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RSS feed source: US Energy Information Administration

The senior IPA advisor will also support strategic leadership and provide programmatic guidance to the NSF Office of Advanced Cyberinfrastructure (NSF OAC), which supports the exploration, acquisition, development and provision of state-of-the-art cyberinfrastructure and artificial intelligence resources, tools, services and workforce development essential to drive innovation and discovery across all fields of science and engineering. NSF OAC’s investments expand access to advanced research capabilities, accelerate scientific discovery and help develop the workforce needed to sustain the nation’s research and innovation enterprise.

These resources, tools and services include large-scale advanced computing, data and AI platforms and services, software frameworks and programming environment tools, data repositories and networks of various reach and scale. In addition, OAC supports the training of researchers and educators to use cyberinfrastructure to further their research and education goals, as well as the professionals who create, deploy and provision these resources, tools

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Advanced technologies are transforming industry, society, and people’s daily lives. Shelly Zhang, an NSF-supported researcher, discusses her work using additive manufacturing and topology optimization to create new structures, including a 3D thermal cloaking device.

Listen to NSF Discovery Files wherever you get your podcasts.

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RSS feed source: US Energy Information Administration

The U.S. National Science Foundation today announced a $20 million investment to launch a two-year pilot supporting small businesses in commercializing their deep-technology ventures. The pilot aims to address a persistent gap separating federally funded deep technology research from commercial success. The investment ensures that the U.S. remains at the forefront of global innovation.

“NSF invests in small businesses that bring the most innovative, cutting-edge technologies to the market,” said Erwin Gianchandani, NSF Assistant Director for Technology, Innovation and Partnerships. “By helping these companies go further in bridging the so-called ‘valley of death,’ we can build on NSF’s R&D investments and help more breakthrough innovations reach the market, strengthening U.S. competitiveness and economic growth.”

“We are grateful to NSF for its continued confidence in UCF and for the opportunity to help shape the future of research translation and commercialization,” said University of Central Florida (UCF) President Alexander N. Cartwright. “Discovery reaches its greatest potential when it moves beyond the laboratory and improves lives, strengthens industries and creates opportunities. UCF’s National Commercialization and Translation Institute (NCTI) builds on UCF’s growing national leadership in helping promising technologies become products, companies and economic growth. With Central Florida’s extraordinary concentration of talent, industry, and innovation, UCF is well positioned to build a model that can deliver impact for Florida and across the nation.”

Led by UCF’s NCTI, the pilot

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