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At the 17 th Supercharging conference this week in Dresden, Controlled Power Technologies (CPT) will launch what it says is the first water-cooled electric supercharger developed for “quasi-continuous” boosting of commercial diesel engines, including those developed for off highway applications. tonnes gross vehicle weight.
Bosch is starting volume production of a new drive unit consisting of an electric motor and an integrated inverter for lightcommercial vehicles. By embedding the electric drive module in the vehicles’ existing water-cooling circuit, an oil-based cooling circuit is no longer necessary.
Researchers have developed a nickel-stabilized, ruthenium dioxide (Ni-RuO 2 ) anode catalyst for proton exchange membrane (PEM) water electrolysis. The Ni-RuO 2 catalyst shows high activity and durability in acidic OER for PEM water electrolysis. Illustration by Zhen-Yu Wu. 2 , suggesting potential for practical applications.
The Sparc Green Hydrogen process combines concentrated solar (CS) with photocatalytic water splitting. This testing has shown a hydrogen production and efficiency benefit from exposing certain photocatalyst materials to concentrated light and heat. one level closer to a commercially deployable product.
Researchers in Israel have designed a separate-cell photoelectrochemical (PEC) water-splitting system with decoupled hydrogen and oxygen cells for centralized hydrogen production. Photoelectrochemical Water Splitting Cell Architectures. (A) A paper describing their system is publishedin the journal Joule. —Landman et al.
Researchers from the University of Houston (UH) have developed a cobalt(II) oxide (CoO) nanocrystalline catalyst that can carry out overall water splitting with a solar-to-hydrogen efficiency of around 5%. The generation of hydrogen from water using sunlight could potentially form the basis of a clean and renewable source of energy.
A research team led by Daegu Gyeongbuk Institute Of Science And Technology (DGIST) Professor Jong-Sung Yu in Korea, with colleagues at UC Berkeley and Xi’an Jiaotong University in China, has successfully developed a new catalyst synthesis method that can efficiently decompose water into oxygen and hydrogen using solar light.
This project will complete key engineering design and demonstration tests to enable cost-competitive, carbon-neutral production of synthetic jet fuel and diesel using nuclear energy from existing lightwater reactors. 3M Company will develop an isotope recovery process to enable commercial deployment of molten salt reactors.
Researchers led by MIT professor Daniel Nocera have produced an “artificial leaf”—a solar water-splitting cell producing hydrogen and oxygen that operates in near-neutral pH conditions, both with and without connecting wires. light-to-electricity efficiency, respectively, and when illuminated with 1 sun of AM 1.5
Minneapolis-based Xcel Energy will work with Idaho National Laboratory to demonstrate a system that uses a nuclear plant’s steam and electricity to split water. The new project is the first to pair a commercial electricity generator with high-temperature steam electrolysis (HTSE) technology. Earlier post.) Prairie Island.
Much of the focus is on how to effectively decarbonise commercial and working vehicles including vans, buses, HGVs, and zero-emission emergency vehicles. Hydrogen is a clean fuel, producing only water when burned. The £77 million is made up of £38.4 million from Government, backed by a further £38.7 NEXTGENZEBS – Wrightbus. million.
Researchers at Stanford University, with colleagues at Oak Ridge National Laboratory and other institutions, have developed a nickel-based electrocatalyst for low-cost water-splitting for hydrogen production with performance close to that of much more expensive commercial platinum electrocatalysts. V with good stability.
Rice University researchers have created an efficient, low-cost device that splits water to produce hydrogen fuel. The current flows to the catalysts that turn water into hydrogen and oxygen, with a sunlight-to-hydrogen efficiency as high as 6.7%. It utilizes water and sunlight to get chemical fuels. Illustration by Jia Liang.
Nuvera is a developer of fuel cells for commercial power, especially for motive applications. MPS base unit can be customized with any of the more than 250 commercially available work attachments and tools that lift, grab, push, extract and haul. The DANNAR 4.00 The DANNAR 4.00
Located near Alexandria, Louisiana, Sundrop Fuels plans to break ground late this year on its inaugural commercial plant, which will produce up to 50 million gallons of renewable gasoline annually. The Sundrop Fuels installation represents the first commercial production of biofuels using the MTG process. Earlier post.). End Point, °C.
A team of scientists at the University of Cambridge has reported the light-driven photoreforming of cellulose, hemicellulose and lignin to H 2 using semiconducting cadmium sulfide quantum dots in alkaline aqueous solution. CdS is an inexpensive, visible-light-absorbing photocatalyst with a bulk electronic bandgap of around 2.4
A new way of anchoring individual iridium atoms to the surface of a catalyst significantly increased its efficiency in splitting water molecules, scientists from the Department of Energy’s SLAC National Accelerator Laboratory and Stanford University reported in an open-access paper in Proceedings of the National Academy of Sciences (PNAS). …we
Researchers from Trinity College Dublin have shed new light on the formation mechanisms of a rare earth-bearing mineral that is in increasingly high demand across the globe for its use in the green energy and tech industries. Vegetation appears red, grassland is light brown, rocks are black, and water surfaces are green.
Researchers in Canada have demonstrated a new photochemical diode artificial photosynthesis system that can enable efficient, unassisted overall pure water splitting without using any sacrificial reagent. overall water splitting reaction. These free charges split water molecules into hydrogen and oxygen. … in neutral (pH?~?7.0)
High priority is placed upon accelerating timelines for the commercialization and deployment of small modular reactor (SMR) technologies through its SMR Licensing Technical Support program. The development of clean and affordable nuclear power options is a key element of the DOE Nuclear Energy Research and Development Roadmap.
With the assistance of TR’s on-site production and supply equipment, creating hydrogen both via water electrolysis and steam reforming of natural gas, biogas or bioethanol, Loop will be able to provide more convenient and cost-effective hydrogen solutions to their global customers. —George Rubin, Chief Commercial Officer of Loop Energy.
Researchers in Japan report that a commercially available TiO 2 with a large number of surface oxygen vacancies, when photo-irradiated by UV light in pure water with nitrogen—successfully produces ammonia (NH 3 ). —Hirakawa et al. 7b06634.
The new engines are designed for light- to heavy-duty distribution transport and for service in light- and medium-duty construction and long-haul transport. This lightweight yet solid design was first seen in a commercial vehicle engine a year ago, in the OM 471.
ICO is commencing a commissioning phase during October, with equipment undergoing final completion testwork ahead of continuous commercial concentrate production expected across Q4 2022. The deposits are unusually rich in Co, Cu, Fe, As, Au, B, Bi and light rare earths, but low in Ni (relative to Co), Ag, Pb, and Zn. Idaho Cobalt Belt.
Researchers at KAUST have developed a novel molybdenum-coated catalyst that can efficiently split water in acidic electrolytes and that could help with the efficient production of hydrogen. Scientists are searching for ways of improving the water-splitting reaction by developing an optimal catalyst. Source: KAUST. Reference Resources.
As a leading manufacturer of mobile (portable) generators, Denyo will work with Toyota to start verification tests with the aim of commercializing it. and Toyota Motor Corporation have jointly developed a fuel cell power supply vehicle that uses hydrogen to generate electricity.
The Government of British Columbia and Eagle Graphite confirmed release of the first tranche of grant funding in support of a 2-year program to develop and commercialize silicon-modified battery anodes made with graphite from Eagle’s Black Crystal graphite quarry and plant in Valhalla, British Columbia.
Omega Seiki Mobility unveils M1KA light electric commercial vehicle. a commercial electric vehicles manufacturer has unveiled its first electric four-wheeler lightcommercial vehicle (LCV) the M1KA. Read further to know more about Omega Seiki Mobility M1KA lightcommercial electric vehicle.
Water-splitting systems require a very efficient catalyst to speed up the chemical reaction that splits water into hydrogen and oxygen, while preventing the two gases from recombining back into water. Therefore, inhibition of these back reactions is of paramount importance for photocatalytic water splitting.
View footage of the Toyota Mirai HFCEVs [link] Each vehicle in our light duty over-the-road fleet is driven an average of 10,000 miles per year. The zero-emissions Toyota Mirai HFCEVs have a driving range of 400 miles and since they run on hydrogen the only by-product is water.
The aluminum produced using solar power is processed in the light metal foundry at BMW Group Plant Landshut to manufacture body and drive train components, including those needed for electric drive trains. Aluminum is light, strong and infinitely recyclable. Light metal foundry at BMW Group Plant Landshut.
At the time, about a decade ago, I was helping to refine a system for fabricating chips using extreme ultraviolet (EUV) light. To produce EUV light, we would focus an intense laser pulse onto 30-micrometer-wide droplets of tin flying through a chamber filled with low-density hydrogen.
million including industry cost-share contributions, will allow industry-led teams to advance the state of domestic commercial nuclear capability. Two awards will advance flexible operation of light-water reactors with integrated hydrogen production systems. These projects, valued at $26.9
The inoperable boiling water reactor plant serves as a training ground to prepare for radiological and nuclear incidents and disaster scenarios. SwRI’s EnRicH entry featured a four-axis drone equipped with several sensors—light detection and ranging (LIDAR), a time-of-flight camera and radiation detectors. —Eric Thorn.
The lightcommercial vehicle (LCV) has spent the last few weeks operating from one of SSE’s sites in Aberdeen, which is located next to a hydrogen fuel station. The company has developed hydrogen-fuel-cell-powered lightcommercial demonstrator vehicles (LCV) under two agreements with AVL Powertrain and Ballard Power Systems Inc.
A cheaper, cleaner and more sustainable way of making hydrogen fuel from water using sunlight is closer with new research from the University of Bath’s Centre for Sustainable Chemical Technologies. They also work in low light conditions and can produce a higher voltage than silicon cells. We achieve a record stability of 30?h
Over the last decade, momentum has been building to transform the Haber- Bosch (H-B) ammonia industry toward renewable sources of hydrogen, for example, from water electrolysis or solar thermal cycles. The H-B process is no longer required; instead, the reaction is driven by electrochemical reduction and the H source is water.
A 2009 report commissioned by the Army Environmental Policy Institute (AEPI) developed a methodology for calculating casualty factors for fuel and water resupply convoys in theater operations. million award from DEVCOM C5ISR Center for the development of a Light Weight High Efficiency Generators.
NuScale Power has developed a new modular lightwater reactor nuclear power plant to supply energy for electrical generation, district heating, desalination, and other process heat applications. NuScale will be able to deliver its first module to a client in 2027.
NuScale continues to maintain strong program momentum toward commercialization of its SMR technology, including supply chain development, standard plant design, planning of plant delivery activities, and startup and commissioning plans. —NuScale Vice President of Regulatory Affairs Tom Bergman.
The largest scale example of the commercial application of this technology is its Secunda plant in Mpumalanga, which converts synthesis gas—a mixture of carbon monoxide (CO) and hydrogen (H 2 )—derived from coal gasification and supplemented by reformed natural gas into 160,000 bbl of products per day.
Natural Resources Canada (NRCan) is seeking expressions of interest from firms which wish to enter into a commercial licensing arrangement to bring to market its methane oxidation catalyst. This catalyzes the oxidation of methane to carbon dioxide and water using excess oxygen in the exhaust stream. Background.
Power management company Eaton’s eMobility business has been awarded a contract to supply a 24-to-12-volt DC-DC converter for use in a commercial heavy-duty battery electric vehicle (BEV) that will power accessories, such as antilock brakes and lighting.
The new Ford EcoBlue diesel engine production line at Dagenham Engine Plant will reduce water and energy consumption by more than 50%. Water usage per engine will be among the lowest at any Ford manufacturing facility worldwide, delivering an anticipated annual saving of 17.5 The all-new 2.0-liter
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