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PEUGEOT has become one of the first manufacturers to offer in series production, from 2021 onwards in the compact utility van segment, an electric version powered by a hydrogen fuel cell in addition to its battery-electric version. It emits only water vapor through the exhaust pipe. kg at a pressure of 700 bar.
SSAB, LKAB and Vattenfall have now produced hydrogen-reduced sponge iron on a pilot scale. The test production was carried out in HYBRIT’s pilot plant in Luleå and shows that it is possible to reduce iron ore with fossil-free hydrogen, instead of removing the oxygen with coal and coke. So far, about 100 tons have been produced.
Australia-based Global Energy Ventures (GEV) and Pacific Hydro Australia Developments Pty Ltd (Pacific Hydro) have executed a Memorandum of Understanding (MOU) to explore opportunities regarding the production, storage, loading, ground and marine transportation of green hydrogen produced by Pacific Hydro’s Ord Hydrogen Project.
reduced by 100% fossil-free hydrogen instead of coal and coke, with good results. The hydrogen gas used in the direct reduction process is produced by electrolysis of water with fossil-free electricity, and can be used directly or stored for later use. The steel is now being delivered to the first customer, the Volvo Group.
Specifically, to expand options for producing, transporting, and using fuel, the five companies intend to unite and pursue the three initiatives of: Participating in races using carbon-neutral fuels; Exploring the use of hydrogen engines in two-wheeled and other vehicles; and. Continuing to race using hydrogen engines.
BP, Nouryon (formerly AkzoNobel Specialty Chemicals), and the Port of Rotterdam will collaborate to explore the opportunity of making green hydrogen via water electrolysis for BP’s refinery in Rotterdam, the Netherlands, which has the potential for significant reductions in CO 2 emissions. BP’s Rotterdam refinery.
a global supplier of clean energy and water treatment technologies, based on a 100% enterprise value of approximately €1.2 With regards to hydrogen, De Nora’s strength stems from its position in the manufacture of electrodes for electrochemical industrial applications. The company has a consolidated leadership in numerous sectors.
Researchers at KAUST have developed and used a novel way of increasing the chemical reactivity of a two-dimensional molybdenum disulfide material to produce a cheap and effective catalyst for water splitting to produce hydrogen. The speed of this hydrogen evolution reaction can be increased using a catalyst on the electrodes.
The Argonne National Laboratory’s Systems Assessment Group announced 2016 release of the suite of GREET (Greenhouse gases, Regulated Emissions, and Energy use in Transportation Model) models and associated documentation. electricity generation mix based on Energy Information Administration (EIA)’s Annual Energy Outlook (AEO) 2016.
One will be a PHEV version of the new Chrysler Town & Country minivan to be introduced in 2016; the second will be a PHEV version of a new full-size crossover vehicle to be introduced in 2017. FCA will launch a PHEV minivan in 2016 to comply with ZEV requirements. Variable flow water pump and electric auxiliary water pump.
A study by two researchers at Sandia National Laboratories has concluded that building and operating a high-speed passenger ferry solely powered by hydrogen fuel cells within the context of the San Francisco Bay is technically feasible, with full regulatory acceptance as well as the requisite associated hydrogen fueling infrastructure.
Scientists from the US Department of Energy’s National Renewable Energy Laboratory (NREL) and Lawrence Berkeley National Laboratory (Berkeley Lab) are providing researchers with a guide to how best to measure the efficiency of producing hydrogen directly from solar power. PEC water-splitting was first noted in scientific publications in 1972.
Toyota opened the 2014 Consumer Electronics Show (CES) with a strong affirmation of the benefits of and potential for hydrogen fuel cell technology. “ The prototype has consistently delivered a driving range of about 300 miles (~500 km), zero-to-sixty acceleration of about 10 seconds, with no emissions other than water vapor.
In Denmark, Air Liquide inaugurated HyBalance, a pilot site for the production of carbon-free hydrogen. The facility uses electrolysis technology to balance the electricity grid and to store surplus electricity in the form of hydrogen that will be used in industry and transportation. The electrolyzer, with a capacity of 1.2
The team uses green electricity to split water into hydrogen and oxygen in an electrolysis step. The hydrogen is then converted to methanol using a suitable carbon dioxide source such as flue gas in a specially developed process (FlexMethanol). —Christian Schweitzer, managing director of BSE.
ITM Power, with its partners Mainova Aktiengesellschaft and NRM Netzdienste Rhein-Main GmbH, has injected hydrogen into the German gas distribution network from the Thüga Group’s power-to-gas demonstration plant. By the end of 2016, the partners will have gained experience of how the system works under real-world conditions.
Recently, c-Si modules have been implemented in solar-hydrogen devices, demonstrating SHE [solar-to-hydrogen efficiency] of 9.7%. As the V OC of the presented c-Si cells is only ∼600 mV, four cells need to be connected in series to achieve stable water splitting performance. Schüttauf et al. Schüttauf et al. Schüttauf et al.
Nissan’s public interest in ethanol-fueled solid-oxide fuel cells stretches back several years to its announcement of the e-Bio Fuel cell system in 2016. The e-Bio Fuel Cell system featured an an SOFC stack and an on-board reformer to convert 100% ethanol or ethanol-blended water (55% water, 45% ethanol) to hydrogen.
The US Department of Energy (DOE) has signed a cooperative agreement with Hydrogen Energy California LLC (HECA) to build and demonstrate a hydrogen-powered electric generating facility, complete with carbon capture and storage, in Kern County, Calif. Sequestration of 2 million tons per year of CO 2 is slated to begin by 2016.
A team of researchers at Ulsan National Institute of Science and Technology (UNIST), Korea University, and the Korea Advanced Institute of Science and Technology (KAIST) has developed a new type of multilayered (Au NPs/TiO 2 /Au) photoelectrode that could boost the ability of solar water-splitting to produce hydrogen. 2016.01.004.
Two product streams exit this reactor, free fatty acids (mixed with water) and sweet water (glycerol mixed with water). Water is removed from the free fatty acid (FFA) stream prior to the next processing step: deoxygenation. The free fatty acid (FFA) and low concentrations of hydrogen are fed into a deoxygenation reactor.
When placed in water, the device immediately began splitting water at a solar-to-hydrogen conversion efficiency of 6.2%—matching The strategy of depositing photoactive materials on the engineered light-trapping architectures offers a new photoelectrode architecture for high-performance PEC water-splitting cells.
Researchers from Virginia Tech developed an in vitro artificial enzymatic pathway that can produce hydrogen at extremely high rates by splitting water energized by carbohydrates (e.g., It is highly expected that green, cost-competitive, distributed H 2 will be produced via water splitting powered by solar energy directly or indirectly.
A team of researchers from Missouri University of Science and Technology and National and Kapodistrian University of Athens in Greece have developed a highly efficient transition metal selenide-based coordination complex, [Ni{(SePiPr 2 ) 2 N} 2 ] for oxygen evolution and hydrogen evolution reactions (OER and HER, respectively) in alkaline solution.
By utilizing a redox material such as ceria (CeO 2 ) as a reactive medium, STCs can produce hydrogen and carbon monoxide—i.e., syngas—from water and CO 2. Schematic illustration of direct hydrocarbon (C x H y O z ) formation from water and carbon dioxide during the reoxidation of reduced ceria doped with a catalyst (Cat.).
Nuvera Fuel Cells, LLC, a provider of heavy-duty hydrogen fuel cell engines for on- and off-road mobility, signed a memorandum of understanding with Netherlands-based clean technology engineering company Urban Mobility Systems (UMS). Nuvera currently offers 45 and 60 kW systems.
ISO has published TS 19880-1 for hydrogen fueling stations ( Earlier post.) ISO 19880 recommends the minimum design characteristics for safety and, where appropriate, for performance of public and non-public fueling stations that dispense gaseous hydrogen to light-duty fuel cell electric vehicles. gaseous hydrogen dispensers.
Researchers at KTH Royal Institute of Technology in Stockholm have developed a new cost-effective electrocatalyst for water-splitting to produce hydrogen. Water splitting is considered one of the most promising strategies to produce chemical fuels such as hydrogen. —Fan et al.
of Canadian natural gas demand in 2016, up from 11.8% From 2005 to 2016, natural gas purchased by oil sands projects more than tripled, from 0.73 Bcf/d in 2016. During that same period (2005-2016) in situ production also more than tripled—from 439,000 barrels per day (Mb/d) to an estimated 1.461 Mb/d.
A team from the Ruhr-Universität Bochum, Technische Universität München and Universiteit Leiden has doubled the catalytic activity of electrodes for water electrolysis by applying a monolayer of copper the platinum electrodes. 2012) “Production of hydrogen from renewable resources and its effectiveness,” Int. mg cm -2 ). Schuhmann, A.
Researchers at Argonne National Laboratory have analyzed the water consumption for transportation fuels in the United States using an extended lifecycle system boundary that includes the water embedded in intermediate processing steps. Increases in population, energy and food demand now strain previously abundant sources of water.
A team of researchers from the University of Houston and the California Institute of Technology has developed an active and durable earth-abundant transition metal dichalcogenide-based hybrid catalyst for water-splitting that exhibits high hydrogen evolution activity approaching the state-of-the-art platinum catalysts.
Major corporate and public sector partners in Japan are launching an effort to test a full carbon-neutral hydrogen supply chain powered by renewable wind energy. While hydrogen is most commonly created through steam methane reforming, it can also be created from water through electrolysis. Use of fuel cell forklifts.
All are invited to submit, from 25 June to 20 September, innovative scientific research projects using Essential Small Molecules on these topics: Topic #01 on hydrogen production: “Lower-CO 2 H 2 ”. How to produce cost competitive hydrogen while reducing greenhouse gas emissions?
The US Department of Energy (DOE) announced approximately $30 million in available funding ( DE-FOA-0001647 ), subject to appropriations, for research and development of low-cost hydrogen production, onboard hydrogen storage, and proton exchange membrane fuel cells to advance the widespread commercialization of fuel cell electric vehicles.
The team reports on their host-guest system of Ta:TiO 2 |BiVO 4 as a photoanode for use in solar water splitting cells in an open-access paper in the journal ACS Central Science. The host–guest nanowire architecture allows for simultaneously high light absorption and carrier collection efficiency for efficient solar water oxidation.
Researchers in China, along with colleagues in the US, have developed a new catalyst that shows outstanding hydrogen-production activity and stability in the low-temperature aqueous phase reforming of methanol (APRM). The new catalyst, the researchers suggest, paves a way towards a commercially achievable hydrogen-storage strategy.
Australia-based hydrogen solid state storage and distribution company Hydrexia has entered an agreement with Netherlands-based HyGear, supplier of industrial gases and on-site generation systems, to supply hydrogen in Europe. According to Hydrexia, its systems are about half the capital cost ($/kg-H 2 ) of compressed hydrogen storage.
Hydrogenics Corporation, a leading developer and manufacturer of hydrogen generation and hydrogen-based power modules, signed a 10-year exclusive agreement to supply Alstom Transport with hydrogen fuel cell systems for Regional Commuter Trains in Europe. The power module does not require onboard water for humidification.
A research team from University of Western Ontario, McMaster University and Beijing Computational Science Research Center has developed an effective synthesis method to produce isolated single platinum (Pt) atoms and clusters for use as catalysts for the hydrogen evolution reaction (HER) in water splitting to produce hydrogen.
A team of researchers at the University of Southern California has developed a robust, reusable iridium catalyst that enables hydrogen gas release from neat formic acid. Formic acid (HCO 2 H, FA) is a hydrogen carrier; it can release hydrogen under mild conditions with only CO 2 as a by-product. Jeff Joseph A. Lo & Travis J.
Rocks formed beneath the ocean floor by fast-spreading tectonic plates may be a large and previously overlooked source of free hydrogen gas, a new Duke University study suggests. In the Duke model, hydrogen production rates increase with spreading rate and the net thickness of serpentinizing peridotite (S-P) in a column of lithosphere.
A team of researchers from the UK’s Cardiff University’s Cardiff Catalysis Institute and Queen’s University Belfast have shown that significant amounts of hydrogen can be unlocked from fescue grass—without significant pre-treatment—using sunlight and a metal-loaded titania photocatalyst. Reaction conditions: 0.36 g Caravaca et al.
For 2021, Toyota has fully rebooted the Mirai, originally offered in 2016, as a premium rear-wheel drive sports-luxury fuel cell electric vehicle (FCEV) with striking design, cutting-edge technology, more engaging driving performance and a significantly longer EPA-estimated range rating.
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