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Canada-based Aurora Hydrogen, a company developing emission-free hydrogen production technology, has raised $10 million in Series A funding led by Energy Innovation Capital. As the world looks to quickly decarbonize transportation and industry, hydrogen demand is expected to increase rapidly, from $130 billion today to $2.5
As part of a larger £90 million (US$117 million) package of awards to cut carbon emissions in industry and homes, the UK is awarding £28 million (US$36.5 million) to five demonstration phase projects for low-carbonhydrogen production. The hydrogen projects receiving funding are: Dolphyn. Acorn Hydrogen Project.
The Gold Hydrogen Program , a coalition of organizations seeking to support the scale of this clean energy resource, announced its launch and the debut of a pilot microbial Gold Hydrogen Process. Found naturally deep in the Earth, “gold hydrogen” is a resource that is produced biologically and in the subsurface.
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.
ABB and Canada-based Hydrogen Optimized have signed an agreement to expand the companies’ existing strategic relationship. KEY), the parent company of HOI, as they seek to accelerate the fast-emerging green hydrogen production segment with unique large-scale architecture. This includes an investment by ABB into Key DH Technologies Inc.
Proton ceramic electrochemical reactors can extract pure hydrogen from gas mixtures by electrolytically pumping protons across the membrane at 800 °C. Counterflowing streams balanced heat flows and maintained stable operating conditions that enabled 99% efficiency of hydrogen recovery. The process also has a low carbon footprint.
NuScale Power, along with Shell Global Solutions (Shell) and industry participants will develop and assess a concept for an economically optimized Integrated Energy System (IES) for hydrogen production using electricity and process heat from a NuScale VOYGR small modular reactor (SMR) power plant.
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.
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.
The project is supported by DOE’s Hydrogen and Fuel Cell Technologies Office within the Office of Energy Efficiency and Renewable Energy. The project partners will generate zero-carbonhydrogen onsite via electrolysis with solar and wind power and reformation of renewable natural gas from a Texas landfill.
million to build a hydrogen development and test facility at its Shoreham Technical Centre in the UK. Designed to support the company’s existing work in hydrogen, fuel cells and green alternative fuels, the new facility will deliver state-of-the-art test and development to advance capability in both alternative fuels and electric vehicles.
At the recent ACT Expo in Long Beach, California, Cummins debuted its 15-liter hydrogen engine. This version, with expected full production in 2027, pairs with clean, zero-carbonhydrogen fuel, a key enabler of Cummins’ strategy to go further faster to help customers reduce greenhouse gas (GHG) emissions.
“Blue” hydrogen—produced through steam methane reforming (SMR) of natural gas or coal gasification, but with CO 2 capture and storage—is being described as having low or zero carbon emissions. Our analysis assumes that captured carbon dioxide can be stored indefinitely, an optimistic and unproven assumption.
Australia-based Woodside has signed an agreement with Japanese companies JERA Inc, Marubeni Corporation and IHI Corporation to undertake a joint study examining the large-scale export of hydrogen as ammonia for use decarbonizing coal-fired power generation in Japan. Green hydrogen is produced from renewable energy using electrolysis.
University of Delaware engineers have demonstrated an effective way to capture 99% of carbon dioxide from the ambient air feed to an hydroxide exchange membrane fuel cell (HEMFC) air using a novel electrochemical system powered by hydrogen. It’s risky, but we managed to control this short-circuited fuel cell by hydrogen.
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.
With efficiencies above 90%, Topsoe’s proprietary SOEC electrolyzers offer superior performance in electrolysis of water into hydrogen—e.g., SOECs can be used for direct electrochemical conversion of steam (H 2 O), carbon dioxide (CO 2 ), or both into hydrogen (H 2 ), carbon monoxide (CO), or syngas (H 2 +CO), respectively.
The North American Council for Freight Efficiency (NACFE) released its latest Guidance Report , Making Sense of Heavy-Duty Hydrogen Fuel Cell Tractors. Almost every day there is a new announcement about hydrogen fuel cell electric trucks. We published this report to help make sense of hydrogen for commercial freight movement.
Researchers at MIT have developed a method that could significantly boost the performance of carbon capture and conversion systems that use catalytic surfaces to enhance the rates of carbon-sequestering electrochemical reactions. The movement through water is sluggish, which slows the rate of conversion of the carbon dioxide.
Global industrial software and technology leader Emerson announced a multi-year strategic framework agreement with BayoTech, a developer of modular steam methane reformers (SMRs) and other hydrogen solutions, to accelerate the delivery of hydrogen around the world.
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). Oxygen and hydrogen are generated during a water electrolysis reaction (top right). —Associate Director Lee.
The new companies are focused on creating electrochemical systems that can help reduce carbon emissions in hard-to-decarbonize sectors and represent the program’s fourth cohort. GCxN provides promising cleantech startups with technical resources to accelerate product commercialization while de-risking investment.
EPFL researchers have built a pilot-scale solar reactor that produces usable heat and oxygen, in addition to generating hydrogen with unprecedented efficiency for its size. This is the first system-level demonstration of solar hydrogen generation. Holmes-Gentle et al.
The Government of Canada has launched its Hydrogen Strategy , a framework that seeks to position Canada as a global hydrogen leader, cementing this low-carbon and zero-emission fuel technology as a key part of a path to net-zero carbon emissions by 2050. The Strategy is underpinned by a federal investment of $1.5
Although the thermocatalytic ammonia decomposition reaction (ADR) is an effective way to obtain clean hydrogen, it relies on the use of expensive and rare ruthenium (Ru)-based catalysts, making it not sustainable or economically feasible. A complete ammonia conversion to hydrogen was achieved at an economically feasible 450 ?C
With clean hydrogen gaining recognition worldwide as a carbon-free fuel capable of making a significant contribution to addressing climate change, Southern California Gas Co. SoCalGas) will field test a new technology that can simultaneously separate and compress hydrogen from a blend of hydrogen and natural gas.
In a first, University of Sydney researchers have found evidence of how hydrogen causes embrittlement of steels. When hydrogen moves into steel, it makes the metal become brittle, leading to catastrophic failures. Hydrogen embrittlement of high-strength steel is an obstacle for using these steels in sustainable energy production.
Researchers in Mexico have used a genetically engineered Escherichia coli to scale-up the co-production of hydrogen (H 2 ) and ethanol (EtOH) using hemicellulosic hydrolysates from wheat straw pretreated (WSP) as substrate from a 0.01 to 10 L process. A paper on their work is published in the journal Fuel. coli WDH). 5,603.0 ± 233.5
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.
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.
Air Products is a world-leading industrial gas company that produces and transports hydrogen and other essential industrial gases to many customer facilities in Louisiana, across the US Gulf Coast and around the world. The project will create 170 permanent jobs with a total annual payroll of $15.9
As the global energy market shifts from coal, petroleum fuel, and natural gas to more environmentally friendly primary energy sources, hydrogen is becoming a crucial pillar in the clean energy movement. Understanding where the hydrogen goes under strain in a bulk material is critical to understanding embrittlement.
Ovako, a European manufacturer of steel and one of the largest steel recyclers in the Nordic countries, is inaugurating the hydrogen plant at its Hofors mill. Ovako’s hydrogen plant is the world’s first facility for producing fossil-free hydrogen to heat steel before rolling. kWh/Nm 3 of hydrogen gas produced, up to 2.2
Methanol–water reforming could prove to be a promising solution for hydrogen production/transportation in stationary and mobile hydrogen applications. MoC catalyst which exhibits extraordinary hydrogen production activity in the aqueous-phase methanol reforming reaction. Under optimized conditions, Ni/?-MoC 0c10776.
Graphdiyne (GDY) is a new two-dimensional (2D) carbon allotrope, similar to graphene. Ammonia is by its nature a high-density hydrogen carrier. to release the hydrogen—their high cost is a challenge for widespread application, the authors note. —Liu et al.
ENGIE has taken the Final Investment Decision in the development of one of the world’s first industrial-scale renewable hydrogen projects, to be located in the Pilbara region of Western Australia. Yuri roadmap. As announced in 2021, the Yuri project is being developed with the support of a $47.5-million
Ammonia has recently emerged as a liquid storage and transport medium that has shown promising stability for long-distance hydrogen transport. At 108 kg H 2 /m 3 , liquefied ammonia (NH 3 ) can store 50% more hydrogen than liquid hydrogen. Now, researchers at the Korea Institute of Science and Technology (KIST) led by Drs.
Solid-oxide-fuel-cell manufacturer Bloom Energy is entering the commercial hydrogen market by introducing hydrogen-powered fuel cells and electrolyzers that produce renewable hydrogen. Bloom’s technologies can be critical in enabling South Korea to execute on its government-mandated Hydrogen Economy Roadmap.
The decisive factor for the switch to battery-electric vehicles is the energy cost advantage compared to hydrogen and diesel. Electricity and hydrogen are the two key energy carriers for a low-carbon future, and hydrogen will play a vital role in industry, shipping and synthetic aviation fuels. Plötz (2022).
The joint research team of KIMM and HMC injected hydrogen directly into the combustion chamber of the engine of an existing HMC hybrid vehicle, with a pressure of more than 30 bar.
Mitsubishi Power Americas and Texas Brine Company are collaborating to develop large-scale long-duration hydrogen storage solutions to support decarbonization efforts across the eastern United States. Long-duration hydrogen storage is a key enabling technology for the transition to a net zero carbon energy future.
The UK government has launched a Hydrogen Strategy intended to create a thriving low-carbonhydrogen sector—blue and green—in the UK over the next decade and beyond. The government says that a booming, UK-wide hydrogen economy could be worth (£900) million (US$1.24
The new system mimics a natural chloroplast to convert carbon dioxide in water into methane, very efficiently using light. Photosynthesis is the process by which chloroplasts in plants and some organisms use sunlight, water and carbon dioxide to create food or energy.
Researchers at the University of Ontario Institute of Technology are developing a new method to dissociate water vapor into hydrogen gas by microwave-generated plasma (plasmolysis). A) An experimental setup for full microwave hydrogen production and (b) Schematic of the plasma reactor placed inside the microwave. Chehade et al.
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