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Aramco pledges $100 million research funding to KAUST

KAUST ·

Aramco has signed an MoU with KAUST, pledging to fund up to $100 million in R&D projects over the next 10 years. The collaboration will focus on areas like energy transition, sustainability, materials transition, upstream technologies, and digital solutions. Specific research areas include liquids-to-chemicals conversion, low-carbon aviation fuels, hydrogen, and carbon capture. Why it matters: This major investment will accelerate innovation in critical areas like sustainable energy and materials science, aligning Saudi Arabia's research priorities with its economic diversification goals.

Wa'ed Ventures Backs KAUST Spinout Terraxy to Scale Desert Greening Technology

KAUST ·

Terraxy, a startup spun out of King Abdullah University of Science and Technology (KAUST), has secured $3 million in a Seed-2 funding round led by Wa’ed Ventures, the venture capital arm of Aramco, with participation from KAUST. This funding will support the scaling of Terraxy's proprietary soil enhancer, Carbosoil, from pilot to industrial production and enable the establishment of a 30,000-square-meter commercial facility in Al Zulfi, Saudi Arabia. Carbosoil improves plant growth and yield by up to 70% while enhancing water and nutrient retention in sandy soils for landscaping and carbon capture. Why it matters: This investment highlights Saudi Arabia's strategy to commercialize deep-tech research from local institutions to achieve national sustainability, food security, and desert greening objectives.

ATRC Entities and ADNOC Sign Landmark R&D Partnership to Advance Sustainable Energy Solutions

TII ·

The Technology Innovation Institute (TII) and ASPIRE, both part of the Advanced Technology Research Council (ATRC), have signed an R&D agreement with ADNOC to advance sustainable energy solutions. The partnership will focus on carbon storage monitoring and battery optimization using quantum technology, as well as initiatives in autonomous robotics and propulsion systems. TII's quantum sensing tech will enhance CCS safety, while magnetic field analysis will improve battery recycling and lifespan prediction. Why it matters: This collaboration between research institutions and a major energy player signals the UAE's commitment to leveraging advanced technology for sustainable energy solutions and carbon reduction.

Saudi innovation converts greenhouse gas into valuable product

KAUST ·

KAUST researchers have developed a system to convert captured carbon dioxide into industrial-grade ethylene using a high-pressure electrolyzer. The system operates under realistic industrial conditions and uses captured, high-pressure CO₂. It reduces the energy cost of producing ethylene by 0.8 gigajoules per metric ton compared to existing electrolysis systems. Why it matters: This innovation presents a direct path for transforming greenhouse gas emissions into valuable chemical products, aligning with Saudi Arabia's circular economy goals.

An innovative way to explore the Red Sea’s precious Blue Carbon ecosystems

KAUST ·

KAUST researchers, partnering with the Queensland Government, discovered 34 previously unknown seagrass meadows in the Red Sea by tracking the foraging behavior of green turtles. They tagged and tracked 53 turtles, revealing that the turtles were approximately 20 times more reliable at identifying seagrass meadows compared to the Allen Coral Atlas. This method also proved to be significantly more cost-effective than traditional methods like airplanes with hyperspectral sensors. Why it matters: This study highlights a novel, cost-effective approach to mapping blue carbon ecosystems, crucial for carbon capture and marine habitat preservation, and provides valuable data for sustainability policies in the Red Sea region.

SEC and KAUST supporting Saudi to reach carbon reduction targets with new technology at Rabigh

KAUST ·

Saudi Electricity Company (SEC) and KAUST have launched a pilot study at SEC’s Rabigh power plant to demonstrate a cryogenic technology that captures multiple pollutants and greenhouse gases, including carbon dioxide. The technology captures over 98% of carbon dioxide from flue gas, as well as sulfur dioxide, nitrogen oxides, and particulate matter, using a single system, unlike current technologies. The streamlined post-processing has a smaller environmental footprint and lower costs. Why it matters: This project supports Saudi Arabia's net-zero carbon goals and offers a potentially more efficient and cost-effective method for retrofitting existing power plants.

Researchers create salts for cheap and efficient CO2 capture

KAUST ·

Researchers at KAUST, USTC, and SUSTech have developed a method for carbon capture and storage using guanidinium sulfate salt to create clathrate structures that trap CO2 molecules. This salt-based structure mimics methane hydrate activity and captures CO2 through physisorption, without water or nitrogen interference. The method allows CO2 to be carried as a solid powder at ambient temperature and pressure, offering a less energy-intensive alternative to traditional methods. Why it matters: This innovation introduces a new, energy-efficient way to store and transport CO2 as a solid, potentially revolutionizing carbon capture and storage technologies in the region and beyond.

Saudi Arabia takes carbon capture to clean heights through KAUST partnership with ENOWA and SEC

KAUST ·

KAUST, ENOWA, and SEC are partnering on a pilot project to capture 30 tonnes of CO2 per day from SEC’s Green Duba power plant at NEOM, using cryogenic carbon capture technology. The captured carbon will be used for food and beverage applications and to produce e-fuels. Saudi Electricity Company will build and operate the pilot plant. Why it matters: This partnership demonstrates Saudi Arabia's commitment to decarbonization and showcases the potential of cryogenic carbon capture for reducing the Kingdom's carbon footprint.