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
a global supplier of hydrogen fuel cell-powered commercial vehicles, announced a joint venture to build up to 100 hydrogen hubs across the United States and globally. into locally produced, renewable hydrogen for Hyzon’s fleet of zero-emission commercial vehicles. Raven SR , a renewable fuels company, and Hyzon Motors Inc.,
RWE's FUREC project, which aims to produce circular and green hydrogen from non-recyclable municipal solid waste in Limburg, the Netherlands, received a €108-million grant from the EU’s Innovation Fund. The plant is expected to produce 54,000 tonnes of hydrogen per year. A final investment decision is to be made in 2024.
Idemitsu Kosan, one of Japan’s leading producers and suppliers of energy, has launched a feasibility study of clean hydrogen production in Japan generated from waste, including municipal waste. The goal is to launch a first hydrogen production facility around 2030 capable of processing 200-300 tons of waste per day.
Renewable hydrogen systems manufacturer Ways2H Inc. announced the completion of a facility in Tokyo that will convert sewage sludge into renewable hydrogen fuel for fuel cell mobility and power generation. A new facility in Tokyo that will convert sewage sludge into renewable hydrogen gas for fuel-cell vehicles is nearing completion.
Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. In the gasification island’s catalyst-bed chamber, plasma torches generate such high temperatures (3500 ºC - 4000 ºC), that the waste feedstock disintegrates into its molecular compounds, without combustion ash or toxic fly ash.
which has developed its own integrated subcritical-water organic-waste power-generation system (ISOP) system, which decomposes organic substances using subcritical-water-treating technology and ultimately produces green energy products such as biofuels. methane and hydrogen), bio-coke, and the like.
The energy system will power and heat Raven SR’s S-Series hydrogen production facility at a sanitary landfill in Richmond, California. At the site, landfill gas (LFG) will be the primary fuel to provide power for the non-combustion process that converts waste to hydrogen. Earlier post.). Olaf Berlien, President and CEO of INNIO.
The Mayor of London, Sadiq Khan, launched England’s first hydrogen double-decker buses. The 20 new buses are the first of their kind to be launched in England; the new hydrogen fuel cell double decker buses are first being introduced on route 7 between East Acton and Oxford Circus. In addition to around £6 million (US$8.3
a provider of on-site hydrogen production, received an equity investment of up to $157 million from Newlight Partners LP, a growth equity investor, with participation from existing investors Cottonwood Technology Funds, Sun Mountain Capital and new investor Fortistar. BayoTech, Inc., Source: BayoTech.
Korea’s Doosan Heavy Industries & Construction has embarked on the development of technology for producing hydrogen using waste plastic and vinyl. The company has signed a business partnership MOU with RevoTech, a company that specializes in the continuous pyrolysis of waste plastic. —Doosan Heavy CSO Yongjin Song.
An optional solution is to place a hydrogen or ammonia production plant next to the floating nuclear power plant utilizing the CO 2 -free fission energy to produce hydrogen and ammonia. The design of the hydrogen, ammonia and power units will be optimized for efficient serial construction at SHI’s shipyards.
Australia-based Pure Hydrogen Corporation has entered an arrangement with PepsiCo Australia to trial a hydrogen-fueled prime mover at one of PepsiCo’s manufacturing sites in the City of Brisbane. Pure Hydrogen will supply PepsiCo with a Hydrogen Fuel Cell 160kW 6 x 4 Prime Mover (HFCV Prime Mover).
The technologies work as a system that converts organic waste into renewable hydrogen gas for use as a biofuel. The system combines biology and electrochemistry to degrade organic waste—such as plant biomass or food waste—to produce hydrogen.
China Petroleum & Chemical Corporation (Sinopec) officially launched China’s first methanol-to-hydrogen and hydrogen refueling service station in Dalian, China. The storage and transportation cost of methanol is also much lower than hydrogen, making methanol-to-hydrogen an attractive hydrogen production technology.
Researchers from London South Bank University (LSBU), School of the Built Environment and Architecture, are investigating the use of metal hydrides to absorb, release and store hydrogen for fuel cell buses. Principle of a metal hydride tank for the reversible storage of hydrogen. From Adelhelm & Jongh (2011). EP/T022760/1.
potential customers for its proposed clean hydrogen production facility in Teesside in north-east ?England. In March, bp announced plans for a clean hydrogen facility in Teesside (H2Teesside) that would aim to ?produce produce up to 1GW of blue hydrogen—20% of the UK’s hydrogen target—by 2030. At the same ?time,
the developer of a gasification-based process that converts waste into clean hydrogen fuel for mobility, microgrids and power generation ( earlier post ), closed an investment from Pacific6 Enterprises, led by founding partner John C.
Raven SR, a US-based renewable fuels company ( earlier post ), plans to build a waste-to-hydrogen production facility in Aragón, Spain, following the opening of its subsidiary Raven SR Iberia in Zaragoza, announced earlier this month. Raven SR plans to bring the modular project online in 2023.
According to the IEA says that, producing all of today’s hydrogen just using electricity would require 3600 TWh—more than the annual electricity generation of the European Union. Energy experts say that the waste heat from Norway’s businesses and industries is the equivalent of 20 TWh of energy. 1 ) at 40 ?C, kWh (104.8 ± 0.6
Toshiba Energy Systems & Solutions Corporation (Toshiba ESS) announced that its hydrogen-based autonomous energy supply system H2One, which Toshiba ESS delivered and installed on the rooftop of Toranomon Hills Business Tower (Minato-ku, Tokyo), has started full-scale operation with the opening of commercial facilities.
Cemvita Factory announced multiple developments with its Gold Hydrogen business. Cemvita defines Gold Hydrogen as the biological production of hydrogen in the subsurface through the consumption of trapped or abandoned resources. The hydrogen production in this trial exceeded our expectations. billion in 2020.
The Abfallentsorgungs-Gesellschaft Ruhrgebiet mbH ( AGR ), a waste management company in Herten, North Rhine-Westphalia, Germany, has put a converted DAF CF 340 hydrogen fuel cell truck into operation as part of the EU-funded HECTOR (HydrogenWaste Collection Vehicles in North West Europe) project.
A microgrid based on renewable energies with hydrogen-powered fuel cells for emergency and peak power as well as hydrogen combustion engines can meet the special energy requirements of port facilities. The main role in this project, called “enerport II”, is played by fuel cells and mtu hydrogen engines—each with different tasks.
The EU-funded HyMethShip project developed a system that innovatively combined a membrane reactor, a CO 2 capture system, a storage system for CO 2 and methanol as well as a hydrogen-fueled combustion engine to power ships. The bottom part shows how hydrogen for the engine is obtained from methanol in the reactor (blue arrow).
a waste-to-fuels company, closed a $20-million strategic investment from Chevron USA, ITOCHU, Hyzon Motors and Ascent Hydrogen Fund. Raven SR plans to build modular waste-to-green hydrogen production units and renewable synthetic fuel facilities initially in California and then worldwide. Raven SR Inc., Earlier post.).
Spain-based global energy company Repsol and Talgo, a manufacturer of intercity, standard, and high speed passenger trains, will promote a renewable-hydrogen-powered train, fostering emission-free rail transport in the Iberian Peninsula. The Vittal One renewable hydrogen-powered train uses electric motors powered by hydrogen fuel cells.
Researchers at the Fraunhofer IFF in Germany are designing the distributed and modular production and distribution of green hydrogen for industry, business and transportation throughout the value chain—a hydrogen factory of the future. The hydrogen factory of the future. The outcome is always green hydrogen.
A team from the University of Cordoba in Spain and the University of Tehran in Iran has been searching for ways to increase hydrogen production by using microorganisms, specifically microalgae and bacteria. This knowledge may open new possibilities for the biohydrogen production from industrial wastes. —Fakhimi et al.
Its hybrid electric and hydrogen powertrain aims to reduce downtime related to energy recharging while reducing the carbon footprint, including the battery. Although this solution is a vision for a passenger car, Renault Group through Hyvia (joint venture with Plug Power) already offers hydrogen solutions on LCVs.
The two companies plan to build the first US modular thermochemical waste-to-hydrogen production facility in California in the fourth quarter of 2020, with a pipeline of additional projects to follow in 2021. Ways2H Inc., Ways2H Inc.,
Berlin-based Graforce Hydro GmbH, the developer of a plasma electrolyzer—the Plasmalyzer —is applying its technology for the highly efficient generation of hydrogen from industrial waste water. Graforce is producing hydrogen using the plasmalysis process in its demonstration plant in Berlin.
Extended road testing of the vehicle is underway in Asia and represents a significant step towards the commercialization of e1’s onboard hydrogen generation technology. The company stated that it is becoming increasingly engaged with partners around the world on a wide range of hydrogen energy projects.
The funding will help Sierra Energy further develop and commercialize its FastOx gasification technology, which converts virtually any waste into clean, renewable energy and fuels without burning. Waste is fed into the top of the gasifier vessel through an airlock. Purified oxygen and steam are injected into the base.
The consortium behind the WESTKÜSTE100 project received the go-ahead and funding approval from the Federal Ministry of Economic Affairs and Energy that will make it Germany’s first hydrogen project included in the “real-world laboratories fostering the energy transition” program. —refinery managing director Jürgen Wollschläger.
The European Union adopted strategies for energy system integration and hydrogen, paving the way “towards a more efficient and interconnected energy sector, driven by the twin goals of a cleaner planet and a stronger economy.”. Hydrogen strategy. The Renovation Wave will be an important part of these reforms.
Norway-based research organization SINTEF is currently heading a major EU-funded project called HARARE , which aims to use hydrogen to recover copper and aluminum from copper slag and bauxite residues (red muds), respectively. HARARE stands for “Hydrogen As the Reducing Agent in the REcovery of metals and minerals from metallurgical waste”.
Green, the Hoyt Hottel Professor in Chemical Engineering, is developing a technology that allows liquid organic hydrogen carriers (LOHCs) not only to deliver hydrogen to the trucks, but also to store the hydrogen onboard. Their findings were recently published in the ACS journal Energy and Fuels.
The EU-India Clean Energy and Climate Partnership included a plan to develop a waste-to-hydrogen facility in Pune, led by the Pune Municipal Corporation (PMC) and The Green Billions Limited (TGBL). million metric tons of waste using Refuse-Derived Fuel (RDF) and. The 450 crore ($54M) project was intended to process 3.8
Together with eight project partners, it is now seeking public funding to build one of the world’s first hydrogen-powered high-speed vessels. The boat will be equipped with hydrogen fuel cells from TECO 2030 and will be built by the shipyard Grovfjord Mekaniske Verksted (GMV), which is located near Narvik.
million in federal funding for cost-shared research and development projects under the funding opportunity announcement (FOA) FE-FOA 0002397 , University Turbines Systems Research (UTSR) — Focus on Hydrogen Fuels. There is renewed interest in the use of hydrogen, a clean-burning fuel, for turbine-based electricity generation.
MW total) are planned for delivery in 2023 and will support the expansion of CPKC’s Hydrogen Locomotive Program. These locomotives have been undergoing field testing in 2022 and early 2023 with successful tests, proving the capabilities of Ballard’s hydrogen fuel cell technology in locomotive applications.
The Italian city of Bolzano is the first customer to order Solaris Urbino 12 hydrogen buses. Twelve Solaris hydrogen buses will follow the last year’s delivery of battery vehicles. heat pump that allows to use waste heat from the fuel cell. Earlier post.) The contract includes an 8 year-long service and maintenance package.
Spain-based energy and petrochemical company Repsol has produced renewable hydrogen using biomethane as raw material for the first time. This renewable hydrogen was used to manufacture fuels with a low carbon footprint, such as gasoline, diesel, or kerosene for aviation. Repsol has had a circular economy strategy in place since 2018.
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