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Universal Hydrogen ( earlier post ) has signed LOIs with Icelandair Group (Iceland), Air Nostrum (Spain), and Ravn Air (Alaska) for aftermarket conversion of aircraft to hydrogen propulsion and for the supply of green hydrogen fuel using Universal Hydrogen’s modular capsules. Icelandair. Icelandair.
Deutsche Aircraft, the new purpose-driven German aircraft Original Equipment Manufacturer (OEM) ( earlier post ), and Universal Hydrogen Co. earlier post ) announced a technical collaboration to complete a design study to incorporate Universal Hydrogen’s modular capsule technology into the Dornier 328 program.
a developer of autonomous technology for the trucking industry, will use NVIDIA DRIVE autonomous vehicle compute platform solutions to power the Embark Universal Interface (EUI) and the Embark Driver software. Embark Trucks Inc., —Ajith Dasari, Head of Hardware Platform at Embark.
Ricardo will be testing the prototype at the engine development facility at the University of Brighton—the company’s long-term combustion engine research partner. We are working with a range of clients on hydrogen and renewable fuels to reduce carbon emissions in these challenging sectors.
Universal Hydrogen announced $20.5-million Founded in 2020 by aviation industry veterans Paul Eremenko, John-Paul Clarke, Jason Chua, and Jon Gordon, Universal Hydrogen is stitching together the end-to-end hydrogen value chain for aviation, both for hydrogen fuel and hydrogen-powered airplanes. Universal Hydrogen modular capsule.
Universal Hydrogen closed a $62-million new funding round; the oversubscribed round was completed less than six months after the company’s Series A ( earlier post ), bringing total raised to $85 million. Full-scale prototype of Universal Hydrogen's gaseous hydrogen module, with one capsule removed.
Universal Hydrogen was granted a special airworthiness certificate in the experimental category by the Federal Aviation Administration (FAA) to proceed with the first flight of its hydrogen-powered regional aircraft. —Paul Eremenko, co-founder and CEO of Universal Hydrogen Air New Zealand.
and Waseda University have started testing in Japan of a jointly developed recycling process that efficiently recovers high-purity rare-earth compounds from electrified vehicle motor magnets. In addition, Nissan is recycling REEs by removing magnets from motors that do not meet production standards and returning them to suppliers.
QM Power and the SPARK Lab at University of Kentucky shared the combined results of a large-scale, multi-objective design optimization study, and lab testing of a prototype motor designed to meet the 2025 power density goals set by the US Department of Energy (DOE). Ionel, FIEEE, who serves as the inaugural L. —Madhav Manjrekar.
Researchers from the Chinese Academy of Sciences and Tsinghua University have used a gallium, indium, tin and bismuth alloy to generate hydrogen, when placed in contact with an aluminum plate immersed in water. Hydrolysis of active metals is a widely known hydrogen production approach. The hydrogen is then used in a PEM fuel cell.
and Clemson University have partnered to advance development of electric-vehicle batteries that charge faster, last longer and can be scaled to fit a variety of vehicle classes. The CNI is located at the Clemson University Advanced Materials Research Laboratory in Anderson County. ATLIS Motor Vehicles, Inc.
The research array furthers the design and development of a system for offshore cultivation of tropical seaweeds to support large-scale production of biomass for biofuels and other valuable bioproducts. Founded in Woods Hole, Massachusetts in 1888, the MBL is a private, nonprofit institution and an affiliate of the University of Chicago.
Kazunari Domen from The University of Tokyo, Prof. Lianzhou Wang from The University of Queensland, Prof. Gang Liu from the Institute of Metal Research, CAS, has now initiated the establishment of international efficiency accreditation and testing protocols for particulate photocatalysts toward solar fuel production.
Methanol–water reforming could prove to be a promising solution for hydrogen production/transportation in stationary and mobile hydrogen applications. A team from Peking University and colleagues have now developed a nickel-supported over face-centered cubic (fcc) phase ? Under optimized conditions, Ni/?-MoC 0c10776.
Researchers at the University of Melbourne (Australia) have demonstrated a method of direct hydrogen production from air— in situ capture of freshwater from the atmosphere using hygroscopic electrolyte and subsequent electrolysis powered by solar or wind with a current density up to 574 mA cm ?2. —Guo et al. Zavabeti, A.
Evonik has now developed a novel anion exchange membrane (AEM), which should contribute to the breakthrough of electrolytic production of hydrogen. CHANNEL stands for Cost-efficient Hydrogen production unit based on ANionN exchange membrane Electrolysis.
Biofuels producer Renewable Energy Group joined Iowa State University (ISU) at the BioCentury Research Farm (BCRF) to mark the start of a new hydrotreater pilot plant. The ISU BCRF is an integrated research and demonstration facility dedicated to biomass production and processing.
A team from Hamad Bin Khalifa University in Qatar has comprehensively reviewed various ammonia decomposition techniques to produce clean hydrogen by recovering the boil-off ammonia while integrating solar energy infrastructures onboard a ship for electricity and heat requirements. The review paper is published in the journal Fuel.
A local 5G campus network is now available at its main plant in Wolfsburg that initially covers the main production development center and the pilot hall. The pilot project will test whether the 5G technology meets the demanding requirements of vehicle production with a view to developing this for industrial series production in the future.
Researchers at Uppsala University have developed photocatalytic composite polymer nanoparticles (“polymer dots”) that show promising performance and stability for the production of hydrogen from water and sunlight. An open-access paper on the work appears in the Journal of the American Chemical Society. —Liu et al.
Conventional water electrolysis for the production of hydrogen faces technological challenges to improve the efficiency of the water-splitting reaction for the sluggish oxygen evolution reaction (OER). Noble metal-based ruthenium oxide (RuO 2 ) and iridium oxide (IrO 2 ) are used to enhance the oxygen generation rate.
Researchers at Monash University in Australia have conducted a lifecycle analysis and net energy analysis (LCA/NEA) of a hypothetical large-scale solar-electrolysis plant for the production of green hydrogen. of hydrogen is currently produced via water electrolysis and only a fraction of this production is powered by renewable energy.
Researchers at Tokyo Metropolitan University have developed a new practical method to make a flexible composite Al-doped LLZO (Al-LLZO) sheet electrolyte (75 ?m Credit: Tokyo Metropolitan University. This is both energy inefficient and time-consuming, making large-scale production of LLZO electrolytes difficult.
Researchers at the University of Turku in Finland have developed a thin-layer artificial biofilm technology for sustainable and long-term ethylene photoproduction. The team optimized the production system by varying different parameters, such as radiance, inorganic carbon level, and periodicity of medium renewal.
Researchers from the University of Toronto’s Faculty of Applied Science & Engineering and Fujitsu have applied quantum-inspired computing to find the promising, previously unexplored chemical family of Ru-Cr-Mn-Sb-O 2 as acidic oxygen evolution reaction catalysts for hydrogen production. Choubisa et al.
This figure shows the principles behind the new ceramic membrane used in the production of hydrogen. The end product is compressed hydrogen with a high degree of purity. It also has CO 2 as a by-product. When the protons and electrons are reunited on the other side of the membrane, the product is pure, compressed hydrogen.
Nebrija University (Spain) students undertook the redesign and technological improvement of a car of the Sodicars team that took part in the 2023 Dakar Rally in the top-class category (T1).The The agreement focuses in particular on the redesign of and technological improvements to Sodicars’ BV2 vehicle.
In February 2022, GTI Energy, S&P Global Commodity Insights and the National Energy Technology Laboratory (NETL) launched the Open Hydrogen Initiative (OHI), a collaboration to further transparency into the environmental impact of hydrogen production and help unlock its full potential as an important driver of energy transitions.
The new lineup includes a 256-gigabyte (GB) PCIe Gen3 NVMe ball grid array (BGA) SSD, 2GB GDDR6 DRAM and 2GB DDR4 DRAM for high-performance infotainment systems, as well as 2GB GDDR6 DRAM and 128GB Universal Flash Storage (UFS) for autonomous driving systems.
Audi’s Neckarsulm site is the first automotive plant in the Volkswagen Group to use RFID (radio-frequency identification) technology for vehicle identification throughout the entire production process, thereby laying another cornerstone for fully connected production. —Peter Kössler, Board Member for Production and Logistics.
In this analysis, I examined the relation between crude-oil production and crude-oil reserves in the world overall and in the United States alone. This variable is inversely related to the reserves-to-production ratio.) Production (billion barrels). Production as % of reserves. Production (billion barrels).
The Volvo Cars Tech Fund and Volta Energy Technologies join existing investors Anzu Partners and the University of Minnesota. Niron will use the funding to build its pilot production facility in Minnesota and accelerate the development of its Clean Earth Magnet technology. million in new financing.
—co-author Irene Yuste, chemical engineer at CoorsTek Membrane Sciences and PhD candidate at the University of Oslo. Proton ceramic membranes have been under development at universities and corporate laboratories for three decades, with thousands of scientists contributing to incremental improvements. Clark et al.
Excess energy produced by photovoltaics and wind energy could be stored through the electrocatalytic production of fuels from CO 2. However, the electrocatalytic formation of products with two or more carbon atoms (C 2+ ) is very challenging. In contrast, pure copper foil produces C 1 products but hardly any C 2+ products.
The enhanced durability of Co–N–C relative to Fe–N–C is attributed to the lower activity of Co ions for Fenton reactions that produce radicals from the main oxygen reduction reaction by-product, H 2 O 2 , and the significantly enhanced resistance to demetallation of Co–N–C. Along with PNNL, researchers from Washington University in St.
Now, a team from the University at Buffalo, Southern Illinois University, University of South Carolina and Brookhaven National Laboratory reports a highly active and stable Ru-free catalyst from earth-abundant elements for efficient carbon-free hydrogen generation via ammonia decomposition. C, the hydrogen production rate (57.75
A consortium comprising Engie Solutions, Siemens Gas and Power, Centrax, Arttic, German Aerospace Center (DLR) and four European universities is implementing the HYFLEXPOWER project funded by the European Commission under the Horizon 2020 Framework Program for Research and Innovation (Grant Agreement 884229).
in close collaboration with GTI and The University of Texas at Austin, has launched a US Department of Energy project, Demonstration and Framework for H2@Scale in Texas and Beyond. At the Port of Houston, the project team will conduct a feasibility study for scaling up hydrogen production and use. Frontier Energy, Inc.,
The EU-funded research project HyFlexFuel recently successfully produced biocrudes via hydrothermal liquefaction (HTL) from a variety of biomasses, including sewage sludge, food waste, manure, wheat straw, corn stover, pine sawdust, miscanthus and microalgae in a pilot-scale continuous HTL plant at Aarhus University (Denmark).
Electrolytic hydrogen production powered by renewable energy is seen as an environmentally friendly means to ameliorate global climate and energy problems. The material can be used as either an anode or a cathode, and demonstrates high activity and stability in the production of hydrogen and oxygen in the electrolysis of water.
The first cells were produced using manual settings to refine the product design for future automated production. Shailesh Upreti who has previously worked with Distinguished Professor Stanley Whittingham, a Nobel laureate for his work on lithium-ion battery development and a resident professor at Binghamton University.
Led by Bosch, the University of Stuttgart, and the Karlsruhe Institute of Technology (KIT), a total of thirty companies will define the foundations for software-defined manufacturing (SDM) over the next three years in the SDM4FZI research project (Software-Defined Manufacturing for the Vehicle and Supplier Industry).
The Department for Industrial Furnaces and Heat Engineering (IOB) at RWTH Aachen University is researching the efficient and clean combustion of hydrogen for the aluminum and steel industry in the EU project “HyInHeat” alongside 30 partners from twelve countries. Priority is also given to the refractory lining to prove sustainability.
A team from the University of Calgary and Rice University has used flash joule heating (FJH) ( earlier post ) to convert low-value asphaltenes—a by-product of crude oil refining—into a high-value carbon allotrope, asphaltene-derived flash graphene (AFG). Flash graphene from asphaltenes. (A)
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