This site uses cookies to improve your experience. To help us insure we adhere to various privacy regulations, please select your country/region of residence. If you do not select a country, we will assume you are from the United States. Select your Cookie Settings or view our Privacy Policy and Terms of Use.
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Used for the proper function of the website
Used for monitoring website traffic and interactions
Cookie Settings
Cookies and similar technologies are used on this website for proper function of the website, for tracking performance analytics and for marketing purposes. We and some of our third-party providers may use cookie data for various purposes. Please review the cookie settings below and choose your preference.
Strictly Necessary: Used for the proper function of the website
Performance/Analytics: Used for monitoring website traffic and interactions
The flagship project MethanQuest was launched in September 2018, and on it a total of 29 partners from research, industry and the energy sector have come together to work on processes for producing hydrogen and methane from renewables and for using them to achieve climate-neutral mobility and power generation.
With existing and forthcoming emissions mandates, DANNAR and Nuvera would be able to meet the needs of organizations and industries seeking clean energy options for mobility. accommodates all standard Caterpillar, Bobcat or John Deere attachments and is submersible in up to four feet of water. The DANNAR 4.00
project for industrial-scale production of green hydrogen via the electrolysis of water using ?renewable Electrolysis splits water into hydrogen and oxygen gases. power, industry and transport sectors, especially those that are hard-to-electrify or ?expensive-to-electrify. renewable power, producing zero emissions.
Researchers from the University of Michigan and McGill University in Canada report photochemical syngas synthesis using a core/shell Au@Cr 2 O 3 dual cocatalyst in coordination with multistacked InGaN/GaN nanowires (NWs) with the sole inputs of CO 2 , water, and solar light. mol/g cat /h with widely tunable H 2 /CO ratios between 1.6
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. Image: NASA.
Stanford researchers, with a colleague from King Fahd University of Petroleum and Minerals, have developed a simple and environmentally sound way to make ammonia with tiny droplets of water and nitrogen from the air. Water microdroplets are the hydrogen source for N 2 in contact with Fe 3 O 4. The conversion rate reaches 32.9 ± 1.38
Dow and X-Energy Reactor Company entered into a joint development agreement (JDA) to demonstrate the first grid-scale advanced nuclear reactor for an industrial site in North America. Earlier post.) Built with a high-temperature-tolerant graphite core structure, the Xe-100 is designed for a 60-year operational life.
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.
Both half reactions of water electrolysis—hydrogen and oxygen evolution—are unfortunately slow and require a lot of power. 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. Zhang, S.L., and Lou, X.W.
The Sparc Green Hydrogen process combines concentrated solar (CS) with photocatalytic water splitting. The Sparc Green Hydrogen process combines concentrated solar (CS) with photocatalytic water splitting. The company’s key development allows for reduced photocatalyst use and integration with existing concentrated solar systems.
Engineers at the University of Pittsburgh Swanson School of Engineering are using membrane distillation technology to enable drillers to filter and reuse the produced water in the oil and gas industry, in agriculture, and other beneficial uses. The team is back in the lab to find a fix. Shamlou, Elmira & Vidic, Radisav & Khanna, Vikas.
In a Saturday video originally posted by user on Douyin , the Chinese version of TikTok, a driver utilizes the Supervised FSD system while performing what’s called the “water challenge,” in which a cup of water is balanced on the driver’s side window ledge to see if driving is smooth enough to avoid spilling.
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 resulting hydrogen will initially be used at the power plant, but it could eventually be sold to other industries. Earlier post.) Prairie Island.
Norwegian wholesaler Asko is among the first to operate a goods vehicle that runs on hydrogen, thanks to a collaborative effort by research scientists and industry. —Project Manager Anders Ødegård at SINTEF Industry. In addition to solar, Asko is a major industrial wind power producer.
Unlike exhaust from burning coal and gas that contains CO 2 , burning hydrogen emits only water vapor and oxygen. Hydrogen is not a greenhouse gas, but its chemical reactions in the atmosphere affect greenhouse gases such as methane, ozone, and stratospheric water vapor. Sand et al. A global warming potential of 11.6 Skeie, R.B.,
Demand for large-scale hydrogen projects from industry is steadily increasing. In response, H-TEC SYSTEMS, a subsidiary of MAN Energy Solutions, has developed a new Modular Hydrogen Platform (MHP)—a scalable system for the industrial production of green hydrogen.
This award marks the first Advanced Class Gas Turbines in the industry specifically designed and purchased as part of a comprehensive plan to sequentially transition from coal, to natural gas and finally to renewable hydrogen fuel, and creates a roadmap for the global industry to follow. Earlier post.). and Hitachi, Ltd.
UK governments plans to boost EV industry To support the UK automotive industry in its transition to ZEVs, the government has confirmed that, following the 2030 ban on new petrol and diesel models, full hybrids and plug-in hybrids will remain These hybrid models can be sold until 2035, after which, only new ZEVs will be permitted for sale.
The water-atomized steel powder delivers mechanical properties superior to conventional metal manufacturing techniques, paving the way for advances in the use of 3-D printing technology for metal parts. —Rio Tinto Iron and Titanium Managing Director Stéphane Leblanc.
Canada’s Minister of Innovation, Science and Industry, Hon. The company’s IMSR power plant will provide high-efficiency on-grid electricity generation, and its high-temperature operation has many other industry uses, such as zero-carbon hydrogen production. The IMSR uses molten salt as coolant and fuel. Source: Terrestrial Energy.
The partnership is part of Europe’s strategic industry initiative, the European Battery Alliance, aimed at building an independent, sustainable, and resilient battery industry in Europe. Over time, production volumes are expected to increase substantially. —CEO of EIT InnoEnergy Germany, Christian Müller.
As the world looks to quickly decarbonize transportation and industry, hydrogen demand is expected to increase rapidly, from $130 billion today to $2.5 Aurora’s technology is highly scalable, with units that can supply a broad range of applications from distributed fueling to hydrogen injection and industrial processes.
ETH Zurich spin-off Synhelion has started the construction of DAWN—its own industrial plant to produce synthetic fuels using solar heat. Located in Jülich, Germany, the facility will demonstrate the entire process from concentrating sunlight to producing synthetic liquid fuel on an industrial scale. Earlier post.)
The technology developed by the UBC researchers—thermal methane cracking (TMC)—can produce up to 200 kilograms of hydrogen a day using natural gas, without using water, while reducing or eliminating greenhouse gas emissions. SMR still emits a significant amount of carbon dioxide and uses large quantities of water and energy.
As the heavy-duty transportation industry seeks greener alternatives to combustion engines, HT-PEM fuel cells promise a clean, efficient alternative. HT-PEM fuel cells have potential to revolutionize the heavy-duty transportation industry. —Rod Borup, Los Alamos program manager for Fuel Cells and Vehicle Technology.
million) ammonia cracker prototype designed to produce green hydrogen at industrial scale. This innovative green ammonia cracker could be a game-changer for scaling up the green hydrogen industry – an important step to drive the energy transition. A Siemens Energy-led consortium has begun work in Newcastle, UK on a new £3.5
These are important raw materials for the petrochemical industry and are presently also only obtained from fossil crude oil. Jet fuel can then be obtained from the products after industrially recognized treatments such as distillation or hydro-isomerization. Fe 5 C 2 by CO 2 /water in the first hours of the catalytic reaction.
The DOE’s Pacific Northwest National Laboratory (PNNL) and its licensee Moselle Technologies , have won two Cooperative Research and Development Awards (CRADA) and a 2021 DOE Advanced Manufacturing Office award to advance the process of using magnetic nanoparticles for capturing strategically important elements from water sources.
The feed-stock reduction is achieved primarily by supplementing the process with oxygen and hydrogen produced by water electrolysis units that are powered by clean wind and solar generated electricity. DGF’s cellulosic feedstock does not impair food supply and is essentially water neutral. —Christopher J.
Northvolt and Stora Enso recently signed a letter of intent on a purchase of the Kvarnsveden Mill and the surrounding industrial area in Borlänge, Sweden. With its access to energy, industrialwater and the broad production know-how in the region, Kvarnsveden is an optimal site for a gigafactory.
Veolia has been a major supplier to the pulp and paper industry since the 1960s for HPD black liquor evaporation systems. The Veolia black liquor evaporation systems for the pulp and paper industry feature methanol rectification and handling systems, among other characteristics.
Topsoe intends to construct the world’s largest and most advanced industrial-scale electrolyzer production plant. To produce hydrogen, it utilizes electricity to split water molecules (H 2 O) into hydrogen (H 2 ) and oxygen (O 2 ). This is accomplished by three components: an anode, a cathode, and an electrolyte.
Their feedback will help ensure the trucks become a dependable, preferred work truck, and help Xcel Energy and the industry better prepare for the electric vehicle transition. Xcel Energy crews will use these trucks in real working conditions during a six- to 12-month pilot. The company currently has 1,000 aerial bucket trucks in its fleet.
Scottish Enterprise, Transport Scotland and the Hydrogen Accelerator, based at the University of St Andrews, have appointed Arcola Energy and a consortium of industry leaders in hydrogen fuel cell integration, rail engineering and functional safety to deliver Scotland’s first hydrogen powered train.
Just over a century ago, the discoveries by Haber and Bosch made possible the industrial production of ammonia and ammonia-based fertilizers that today feed the world and are the source of most of our nitrogen-containing chemicals, materials, and pharmaceuticals. Credit: Joule , MacFarlane et al. —MacFarlane et al. Generation 1.
As a comparison, LNG tankers use ballast water to compensate the loss of weight following delivery to ensure enough draft. The tanks will have a much lower boil off than those currently used in the maritime industry. Liquid hydrogen provides unique challenges in ship design and engineering.
The system’s efficiency of more than 80% for producing green hydrogen from renewable electricity and water vapor is far higher than that of conventional electrolyzers. A crucial step for implementing these processes on an industrial scale is pushing the development of electrolyzers and synthetic processes.
Green hydrogen, which is produced using an electrolyzer powered by renewable electricity to split water into hydrogen and oxygen, is expected to play an important role in the energy transition in coming decades with overall hydrogen demand expected to grow 5-7x over the next 30 years according to the Hydrogen Council.
The €15-million campus will allow the BMW Group to develop its position as technology leader in the utilization of additive manufacturing in the automotive industry. Our goal is to industrialize 3D printing methods more and more for automotive production, and to implement new automation concepts in the process chain.
They precipitated lithium phosphate with a purity of 99.94% directly from the enriched solution, thereby meeting the purity requirements for application in the lithium battery industry. Preliminary economic analysis shows that the process can be made profitable when coupled with the Chlor-alkali industry.
Expanding the use of salt caverns for hydrogen energy storage in other regions offers a significant opportunity to create an infrastructure for clean energy resources throughout the US to benefit industries such as power, transportation and manufacturing that are targeting net zero carbon emissions. Texas Brine gas storage cavern wellhead.
We organize all of the trending information in your field so you don't have to. Join 5,000+ users and stay up to date on the latest articles your peers are reading.
You know about us, now we want to get to know you!
Let's personalize your content
Let's get even more personalized
We recognize your account from another site in our network, please click 'Send Email' below to continue with verifying your account and setting a password.
Let's personalize your content