The companies say their partnership is “aimed at revolutionizing the landscape of science-backed decision-making in the upstream energy industry.” Photo via Getty Images

Houston-based GeoMark Research and Peachtree Corners, Georgia-based Senslytics have formed a joint venture that will bring AI-fueled data and analysis to the upstream energy industry.

GeoMark Research provides geochemical and PVT (pressure, volume, temperature) data and analysis, while Senslytics produces AI software for the energy industry. The companies say their partnership is “aimed at revolutionizing the landscape of science-backed decision-making in the upstream energy industry.”

Among other things, the joint venture will:

  • Combine GeoMark’s geochemical and PVT data repository with Senslytics’ AI algorithms to develop applications for various aspects of fluid property estimation during the drilling process.
  • Provide tools that help subject matter experts “train” AI tools for data-driven decision-making.
  • Contribute to thought leadership in the AI and geochemical/PVT sectors through vehicles such as conferences, webinars, and publications.

“GeoMark Research is passionate about using our data and expertise to advance subsurface fluid understanding. Faster, better information improves our customers’ free cash flow. We are thrilled to partner with Senslytics and embark on this transformative journey together,” Ethan Brown, president of GeoMark, says in a news release.

Blake Bixler, CEO of Senslytics, adds: “Together, we will push the boundaries of what AI can achieve by unlocking insights from our two companies’ technical experts.”

GeoMark was founded in 1991 with the goal of performing regional oil studies in newly explored basins.

Today, the company operates three labs that provide geochemical services, studies, and databases. The labs are in Houston, Humble, and Lafayette, Louisiana.

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Fervo promotes strategy leader to COO as flagship geothermal project nears launch

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Houston geothermal unicorn Fervo Energy has named Sarah Jewett as its new COO.

Jewett steps into the role as the company prepares for its flagship Cape Station geothermal project to deliver its first power later this year.

Jewett joined Fervo in 2020 as director of strategy and most recently served as the company's senior vice president of strategy. She spoke with HETI on the potential of geothermal energy in 2024.

Before Fervo, Jewett served as senior director of corporate development for Houston-based Select Energy Services. She ran hydraulic fracturing crews for Schlumberger in the Permian Basin and Alaska's North Slope early in her career.

In the COO role, Jewett is tasked with creating "the centralized infrastructure required to execute on what the company believes is the most significant commercial opportunity for clean, firm power in history," according to a company release.

“What Sarah has built over the last six years has been foundational to the company’s success. From the time she joined, she has brought an unwavering people-first mindset and outstanding dedication to building things that last,” Tim Latimer, CEO and co-founder of Fervo, added in the release. “As we move into the next phase of our growth, there is no better person to lead the operating core of this company.”

Jewett holds an MBA from Harvard Business School and a bachelor's degree in mechanical engineering from Dartmouth College.

Fervo announced the addition of four heavyweights to its board of directors this spring, including Meg Whitman, former CEO of eBay, Hewlett-Packard, and Spring-based HPE. Shortly after, the company filed for its highly anticipated $1 billion-plus IPO. Read more here.

UH study finds Gulf Coast best positioned for emerging carbon removal technology

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The Gulf Coast is an ideal spot for deploying a new ocean-based carbon removal technology that uses seawater to capture and store carbon dioxide, according to a new study from the University of Houston.

The study was led by UH Cullen College of Engineering Professor Mim Rahimi and published in Nature’s Communications Sustainability journal. Abdelrahman Refaie, a PhD student at UH, authored the paper. It aimed to develop a plan for implementing an electrochemical marine carbon dioxide removal (e-mCDR) technology that treats seawater to increase the ocean’s ability to absorb and store carbon dioxide from the air.

Currently, oceans absorb about 30 percent of human-produced carbon dioxide emissions each year, according to UH, making it a great natural resource for carbon removal.

The team at UH scouted and analyzed 38 coastal facilities across the U.S.—including power plants, desalination plants, and liquefied natural gas (LNG) terminals—before determining the Gulf Coast as an attractive option. The South Hub, or the Gulf Coast along Texas and Louisiana, ranked the top-performing area for the technology due to the industrial infrastructure, affordable electricity, hydrogen transportation and storage networks.

Other regions like California and the Northeast also scored well due to their clean energy mix and carbon removal potential, according to UH.

“The South hub has one of the highest diversity factors between power plants, desalination and LNG,” Refaie said in a news release. “That means if, logistically, down the road LNG is not open for this implementation, then we have another option in the area. It reduces the risk factor.”

UH says the findings show how companies could commercialize the technology, which could boost coastal economies.

“The question we had wasn’t technical, rather, it was logistical in regard to implementation down the road,” Rahimi said. “This would be a roadmap if a company or the government wants to utilize this technology.”

Rahimi aims to increase awareness about e-mCDR technology and its potential impact. He recently discussed the ocean-centric carbon removal work with members of Congress in March at the Carbon to Sea’s 2026 Hill Day.

“I think faculty at the University of Houston can do more of this kind of work,” Rahimi said in a separate release. “Meeting with Members of Congress gives us a chance to help policymakers better understand the science and engineering happening at our university. That kind of engagement is an important part of moving new technologies forward. It also shows how the work we do on campus can have a real impact on communities beyond the university.”