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
HydroWing, in partnership with Tocardo, introduced the THyPSO (Tidal Hydrogenproduction, Storage and Offtake), a concept that creates green hydrogen from the sea, contributing to the wider global decarbonization of energy systems.
Transform Materials has developed a novel and sustainable microwave plasma reactor process to convert natural gas into high-value hydrogen and acetylene, thereby opening up a new pathway for green chemical manufacturing. Oxidation of methane also introduces impurities in the product stream.
million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogenproduction with nuclear energy. The 50 kW demonstration will prove that high-efficiency syngas production can be achieved at low capital-cost using GRC’s unique thermal-spray-based SOCC technology.
The BMW Group is beginning to test near-standard vehicles with a hydrogen fuel cell drive train in everyday conditions on European roads. Prototypes of the BMW i Hydrogen NEXT will examine how effectively the CO 2 -free drive train, model-specific chassis technology and vehicle electronics systems work together under real-life conditions.
Researchers at the University of Southampton have transformed optical fibers into photocatalytic microreactors that convert water into hydrogen fuel using solar energy. The microstructured optical fiber canes (MOFCs) with photocatalyst generate hydrogen that could power a wide range of sustainable applications. 9b01577.
to support its commercial-scale, emissions-free hydrogen manufacturing technology. Monolith Materials is the first US manufacturer to produce “turquoise hydrogen” on a commercial scale. Monolith’s hydrogen is classified as “turquoise hydrogen”. Monolith Materials, Inc. Monolith process.
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. The waste is heated to a high temperature and converted into a gas, from which pure hydrogen is extracted.
Researchers at the University of Oxford have developed a method to convert CO 2 directly into aviation fuel using a novel, inexpensive iron-based catalyst. Jet fuel can then be obtained from the products after industrially recognized treatments such as distillation or hydro-isomerization. —Yao et al.
Researchers from Japan’s NIMS (National Institute for Materials Science), the University of Tokyo and Hiroshima University have jointly conducted a techno-economic analysis for hydrogenproduction from photovoltaic power generation (PV) utilizing a battery-assisted electrolyzer. This approximately converts to US$1.92 to US$3.00/kg
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.
Methanol reformers convert easy-to-transport methanol into hydrogen. Transporting hydrogen can be a complex process. Transporting hydrogen can be a complex process. This paves the way for the production of green hydrogen in sunny regions and its conversion into methanol and its simplified transport.
Researchers at The Ohio State University have used a chemical looping process to produce hydrogen from hydrogen sulfide gas—commonly called “sewer gas”. Hydrogen sulfide is emitted from manure piles and sewer pipes and is a key byproduct of industrial activities including refining oil and gas, producing paper and mining.
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.
Idemitsu Kosan, one of Japan’s leading producers and suppliers of energy, has launched a feasibility study of clean hydrogenproduction in Japan generated from waste, including municipal waste. The goal is to launch a first hydrogenproduction facility around 2030 capable of processing 200-300 tons of waste per day.
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.,
Located near Beulah, North Dakota, the Synfuels Plant will be transformed into the largest and lowest-cost, blue hydrogenproduction facility in the United States. The redevelopment of the Synfuels Plant will cut this time in half and produce an estimated 310,000 metric tons of hydrogen per year.
The Yongsoo wave energy power plant, installed at berth 1 in the Korean Institute KRISO -Wave Energy Test Site (WETS), is preparing to produce green hydrogen from next year, according to a report from Ocean Energy Systems. The Yongsoo plant is a 500 kW fixed oscillating water column (OWC)-type wave energy converter. Source: OES.
AW-Energy Oy is entering the commercial hydrogen market by introducing a combined WaveRoller and HydrogenHub process for the production of green hydrogen. In AW-Energy’s concept, wave energy complements solar power production to enable large-scale green hydrogen. —Christopher Ridgewell, CEO of AW-Energy Oy.
million) ammonia cracker prototype designed to produce green hydrogen at industrial scale. The prototype will use ammonia to deliver 200kg of hydrogen a day—enough to power around 5-10 hydrogen fuel cell-electric buses. Ammonia has a high hydrogen density and is readily transportable in bulk. million (US$4.24
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.
A development team from CoorsTek Membrane Sciences, in collaboration with international research partners, have successfully used ceramic membrane technology to develop a scalable hydrogen generator that makes hydrogen from electricity and fuels including natural gas, biogas and ammonia with near zero energy loss.
Inspired by naturally occurring processes, a team of Boston College chemists used a multi-catalyst system to convert carbon dioxide to methanol at the lowest temperatures reported with high activity and selectivity. It can be produced from hydrogen and carbon dioxide, mitigating greenhouse gas emissions and storing hydrogen in the process.
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.
Next Hydrogen Solutions Inc., a designer and manufacturer of electrolyzers, recently signed a memorandum of understanding (MoU) with Black & Veatch, a global engineering, procurement, consulting and construction company, to offer a complete and integrated solution for producing large-scale green hydrogen for industrial customers.
The Yuchai YCK16H hydrogen-fueled engine was successfully ignited in Yulin, Guangxi. liters and a maximum horsepower of 560 hp, is the largest hydrogen-fueled engine with the largest displacement and horsepower in China. The engine, with a displacement of 15.93
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. —Alex Lewis, CEO.
In a review paper published in the journal ChemSusChem , researchers from Australia’s CSIRO conclude that the combination of synthetic biology and materials chemistry will provide many viable options to allow the use of nitrogenase for energy applications, such as the production of green ammonia for use as a preferred liquid carrier for hydrogen.
Airbus is developing a hydrogen-powered fuel cell engine. The A380 MSN1 flight test aircraft for new hydrogen technologies is currently being modified to carry liquid hydrogen tanks and their associated distribution systems. There are two ways hydrogen can be used as a power source for aircraft propulsion. Earlier post.).
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.
through its subsidiary dedicated to the deployment of technologies for the energy transition, NextChem , signed today a memorandum of understanding (MoU) to support the production of green hydrogen via electrolysis in the United States. (EGPNA), and Maire Tecnimont S.p.A., —Salvatore Bernabei, CEO of Enel Green Power.
The EU project HyInHeat is researching the use of hydrogen in the aluminum and steel industry. The main objective of HyInHeat is the integration of hydrogen as fuel for high-temperature heating processes in the energy-intensive industries. The EU is contributing €17.7 million in funding to the €24-million project.
Syzygy Plasmonics , LOTTE Chemical and LOTTE Fine Chemical (LOTTE Chemical HQ), and Sumitomo Corporation of Americas (SCOA) announced a joint development agreement to test a photocatalytic reactor for clean hydrogenproduction. Among other climate-focused goals, the company is setting the stage to advance the hydrogen economy in Korea.
Yara signed a contract with Linde Engineering for the construction and delivery of a green hydrogen demonstration plant at Yara’s ammonia production facility at Herøya Industripark in Porsgrunn, Norway. Green ammonia is the key to reducing emissions from world food production and long-distance shipping.
Bakken Energy, a developer of affordable clean hydrogen supply, signed a Memorandum of Understanding with each of Cummins Inc. to work together on the design of the Heartland Hydrogen Hub to serve the needs of long-haul trucking. The industry-led Hub will include Bakken Energy’s large scale affordable clean hydrogenproduction.
Ricardo has developed a hydrogen-fueled research engine which could offer a renewable, economic and durable technology solution to accelerate zero-carbon emissions in heavy duty trucks, off-highway machines and marine vessels. —Adrian Greaney, Director of Technology and Digital at Ricardo Automotive and Industrial EMEA Division.
thyssenkrupp’s proprietary water electrolysis technology for the production of. green hydrogen meets the requirements for participation in the primary control reserve market. Our plants are thus making a significant contribution to ensuring both a stable power supply and the cost-effectiveness of green hydrogen.
The implementation of this project, the first industrial-scale power-to-X-to-power demonstrator with an advanced hydrogen turbine, will be launched at Smurfit Kappa PRF’s site—a company specialized in manufacturing recycled paper—in Saillat-sur-Vienne, France. In this case, the “X” will be hydrogen.
Rolls-Royce and easyJet report the world’s first run of a modern aero engine on hydrogen. The ground test was conducted on an early concept demonstrator using green hydrogen created by wind and tidal power. The success of this hydrogen test is an exciting milestone. —Grazia Vittadini, Chief Technology Officer, Rolls-Royce.
Korea’s Doosan Heavy Industries & Construction has embarked on the development of technology for producing hydrogen using waste plastic and vinyl. Doosan is working on developing a hydrogen reformer that has the capacity to produce 0.3 —Doosan Heavy CSO Yongjin Song.
GKN Hydrogen and Southern California Gas Co. SoCalGas) will work with the US Department of Energy’s (DOE’s) National Renewable Energy Laboratory (NREL) on an innovative green hydrogen storage solution. GKN Hydrogen’s HY2MEGA can enable safe, long duration clean energy storage without the need for compression. Supported by $1.7
Researchers at Illinois Institute of Technology (IIT), with colleagues at the University of Pennsylvania and the University of Illinois at Chicago have developed an electrolyzer capable of converting carbon dioxide into propane in a manner that is both scalable and economically viable. —Esmaeilirad et al.
The new system mimics a natural chloroplast to convert carbon dioxide in water into methane, very efficiently using light. However, it is difficult to convert carbon dioxide in water because many photosensitizers or catalysts degrade in water. A paper on this team’s latest work was published in Nature Catalysis.
Just a few months into a joint innovation project ( earlier post ), engineers from Bosch Engineering and Ligier Automotive have built a high-performance vehicle with a hydrogen engine. The demonstrator is based on the Ligier JS2 R race car, which was modified for hydrogen operation.
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