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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. MHPS gas turbines have more than 3.5
An Israeli-Australian venture will use solar technology developed at Israel’s Weizmann Institute of Science to reduce carbon dioxide emissions from the burning of brown coal. which in 2011 acquired an exclusive worldwide license for the solar technology from Yeda, the Weizmann Institute’s technology transfer arm.
Energy Vault, a company developing grid-scale gravity energy storage solutions, has entered into an energy storage system agreement with DG Fuels, a developer of renewable hydrogen and biogenic-based, synthetic sustainable aviation fuel (SAF) and diesel fuel. Under the terms of the agreement, Energy Vault agreed to provide 1.6
The results show there is no realistic pathway to full decarbonization of internal combustion engine vehicles, and that only battery and hydrogen fuel-cell EVs have potential to be very low-GHG passenger vehicle pathways. The results reflect the full life-cycle GHG emissions of battery and fuel-cell EVs. Source: The ICCT. Source: The ICCT.
In a new piece of research, BloombergNEF (BNEF) finds that the levelized cost of hydrogen (LCOH 2 ) made from renewable electricity is set to fall faster than it previously estimated. Such low renewable hydrogen costs could completely rewrite the energy map. The key driver is the falling cost of solar PV electricity.
Energy company SGH2 is bringing the world’s biggest green hydrogen production facility to Lancaster, California. As the gases exit the catalyst-bed chamber, the molecules bind into a very high quality hydrogen-rich biosyngas free of tar, soot and heavy metals. This is game-changing technology. —Lancaster Mayor R. Rex Parris.
The Australian Government has established funding to support hydrogen-powered projects. The A$300 million (US$193 million) Advancing Hydrogen Fund will be administered by the Clean Energy Finance Corporation (CEFC). The CEFC Advancing Hydrogen Fund will draw on existing CEFC finance. —CEFC CEO Ian Learmonth.
An economically-sustainable hydrogen industry in Australia could soon be on the cards according to a blueprint released by CSIRO, the national science agency, which found that cost-competitiveness is firmly on the horizon. Source: CSIRO. —CSIRO Chief Executive Dr Larry Marshall.
Left, global light-duty fleet in the electric-favoring case; right, the hydrogen-favoring case. In both electric- and hydrogen-favoring cases, availability of low-carbon electricity and hydrogen prolonged the use of petroleum-fueled ICE vehicles. Top, without CCS and CSP; bottom, with CCS and CSP. Credit: ACS, Wallington et al.
Researchers from SRI International (SRI) are developing a methane-and-coal-to-liquids process that consumes negligible amounts of water and does not generate carbon dioxide. In conventional CTL approaches, energy is supplied by burning a portion of the coal feed, which then produces carbon dioxide. Process flow diagram. Source: SRI.
Scientists from the Max Planck Institutes for Chemical Energy Conversion and Coal Research and from the research group Photobiotechnology at Ruhr-Universität Bochum (RUB) have discovered a way of increasing the efficiency of hydrogen production in microalgae by a factor of five by using a combined metabolic engineering approach.
The consortium has been collaborating on the project for more than three years, which will consist of 25 gigawatts (GW) of renewable solar and wind energy at full capacity to produce millions of tons of zero-carbon green hydrogen per annum. Green hydrogen is expected by some to grow into a US$2.5-trillion trillion market by.
In addition to having access to Québec’s vast water resources to generate green, renewable power at competitive prices, Hydro-Québec has everything it needs to support the development of green hydrogen. Green hydrogen, is produced through the electrolysis of water rather than from methane, a process that produces high levels of GHG emissions.
The US Department of Energy (DOE) Fuel Cell Technologies Office’ (FCTO) 2014 Hydrogen and Fuel Cells Program Annual Progress Report ( earlier post )—an annual summary of results from projects funded by DOE’s Hydrogen and Fuel Cells Program—described progress in the field of hydrogen production. Source: DOE.
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 replaces the coal gasification used by others with biomass gasification and natural gas reforming.
The falling cost of making hydrogen from wind and solar power offers a promising route to cutting emissions in some of the most fossil-fuel-dependent sectors of the economy, such as steel, heavy-duty vehicles, shipping and cement, according to a new report from BloombergNEF (BNEF). Summary of the economics of a hydrogen economy.
The EMS (Earth and Mineral Science) Energy Institute at Penn State has developed a conceptual novel process configuration for producing clean middle-distillate fuels from coal with some algal input with minimal emissions. Principal inputs are coal, water, non-carbon electricity, and make-up solvent. Schobert (2015) Click to enlarge.
Rice University researchers and colleagues at Princeton and Syzygy Plasmonics have developed a plasmonic photocatalyst for the direct decomposition of hydrogen sulfide gas into hydrogen and sulfur, as an alternative to the industrial Claus process. A paper on the work appears in ACS Energy Letters. —Naomi Halas. Bayles, Henry O.
The European H2FUTURE project consortium, comprising voestalpine, Siemens, VERBUND, and Austrian Power Grid, together with the research partners K1-MET and ECN, officially gave the green light to the construction of a 6 MW “green” hydrogen pilot production plant—the world’s largest—at a voestalpine Linz steel plant.
These facilities typically use approximately one ton of coal to produce one BBL of hydrocarbons, with a life cycle CO 2 emissions calculation that is slightly worse than equivalent fuels derived from conventional oil refining. DGF replaces the coal gasification used by others with biomass gasification and natural gas reforming.
In the short- to medium-term, hydrogen technology could be used to replace compressed natural gas (CNG) in some areas with minor changes to the existing infrastructure, according to GlobalData, a leading data and analytics company. Hydrogen fuel can be stored for long periods, in quantities limited only by the size of storage facilities.
Schema of synfuel synthesis through solar-driven biomass gasification. Solar energy produces both heat for gasification and H 2 via electrolysis. High temperature heat for biomass gasification is obtained from a molten-salt system in a solar concentrating tower. Land area for solar energy collection (m 2 /ton fuel/yr).
Green ammonia is produced from green hydrogen, which in turn is produced from renewable electricity (solar and wind) via an electrolysis process. The product can also be cracked back to hydrogen gas for further applications. Japan is expected to be a large importer of green ammonia in the future.
Generation 2 moves the Haber-Bosch process to renewable sources of hydrogen. The process generates H 2 from natural gas or coal through steam reforming and combines it with N 2 , which has been separated from air by a cryogenic process, to form NH 3. The reaction between N 2 and H 2 requires temperatures in excess of 400 ?
Furthermore, BASF supports the realization of large-scale Important Projects of Common European Interests (IPCEIs) White Dragon and Green HiPo (pending EU approval), through materials for power generation, hydrogen generation, and power storage. The MEA is the heart of the fuel cell, determining the overall system performance.
In a major new report on hydrogen, the International Energy Agency says that the time is right to tap into hydrogen’s potential to play a key role in a clean, secure and affordable energy future. A wide variety of fuels are able to produce hydrogen, including renewables, nuclear, natural gas, coal and oil.
First, it considers the performance of both mature and novel hydrogen production processes, multiple electricity generation pathways and several alternative drivetrains. Direct chemical conversion processes for hydrogen offer efficiency gains which can reduce or eliminate the gap between EV and FCV operational WTW performance.
Deep declines in wind, solar and battery technology costs will result in a grid nearly half-powered by the two fast-growing renewable energy sources by 2050, according to the latest projections from BloombergNEF (BNEF). Wind and solar grow from 7% of generation today to 48% by 2050. —Matthias Kimmel, NEO 2019 lead analyst.
India’s first solar-powered hydrogen fueling station, supplied by Air Products was inaugurated recently at an event with chief guest Shri Piyush Goyal, Union Minister for Power, Coal, and New and Renewable Energy, in conjunction with Shri Upendra Tripathy, Secretary, Minister of New and Renewable Energy.
Over the past year, there has been an increase in the percentage of Republicans, particularly conservative Republicans, who view the expansion of exploration and production of oil, coal and natural gas as a more important priority for addressing the nation’s energy supply than the development of alternative energy sources.
Two studies—led by a team from Seattle City Light, Pacific Northwest National Laboratory (PNNL), and Sandia National Laboratories—are exploring the potential of shifting from fossil fuel to clean hydrogen as fuel to power medium-and heavy-duty vehicles. million DOE award, $150,000 City Light = $1.5 million project total).
H 2 Bioil is created when biomass, such as switchgrass or corn stover, is heated rapidly to about 500 °C in the presence of pressurized hydrogen. This paper contains a comprehensive financial analysis of the H2Bioil process with hydrogen derived from different sources. —Singh et al. We’re in the ballpark.
Australia’s federal government agency for scientific research CSIRO is creating a Future Science Platform (FSP) focused on hydrogen energy systems. The creation of a Hydrogen FSP will support the development of technologies that allow Australia to export its solar energy, as well as providing low emissions energy solutions for Australians.
ENEOS Corporation and Origin Energy signed a memorandum of understanding to conduct a study on a potential business collaboration for the development of a CO 2 -free hydrogen supply chain between Japan and Australia. Specifically, Origin will focus on use of renewable energy supply and water electrolysis cells for hydrogen production.
The cost of electrofuels—fuels produced by catalyst-based systems for light capture, water electrolysis, and catalytic conversion of carbon dioxide and hydrogen to liquid fuels—remains far away from viable, according to a new analysis by Lux Research. Hydrogen-to-fuels. Biotech Fuels Solar'
Further, according to Rystad Energy, Big Oil is expected to pump in $166B into new oil and gas ventures over the next five years, thus dwarfing the currently specified outlay of just $18B (less than 10% of capex) for solar and wind energy projects. Good case in point: Italian multinational oil and gas giant Eni S.p.A. 2 Total SA.
Toshiba Corporation will participate in the Levenmouth Community Energy Project in Fife, Scotland, a major 4-year project to investigate the potential of hydrogen as a future fuel. This marks Toshiba’s first hydrogen research project outside Japan.
For several months now, 20 teams of Australian high-school students have been designing fuel-cell cars to compete in the country’s inaugural Hydrogen Grand Prix. The task: make the most of a 30-watt fuel cell and 14 grams of hydrogen gas. Welcome to Australia, where a green-hydrogen boom is in full swing.
bp and thyssenkrupp Steel have signed a memorandum of understanding (MoU) focused on the development of long-term supply of low-carbon hydrogen and renewable power in steel production, helping accelerate the steel industry’s wider energy transition. thyssenkrupp Steel accounts for 2.5%
The life-cycle water consumption of fuel cell electric vehicles using hydrogen produced from natural gas with steam methane reforming is almost 50% less than the life-cycle water consumption of conventional internal combustion engine vehicles using gasoline, according to a study by researchers at Argonne National Laboratory (ANL).
The EU Innovation Fund will award a grant of €88 million to Neste’s green hydrogen and CO 2 capture & storage project, which aims to reduce greenhouse gas emissions at the Porvoo refinery in Finland. SHARC will also scale the production of green hydrogen to help make it a viable transportation fuel itself.
If the US military increases its use of alternative jet and naval fuels that can be produced from coal or various renewable resources, including seed oils, waste oils and algae, there will be no direct benefit to the nation’s armed forces, according to a new RAND Corporation study. —Alternative Fuels for Military Applications.
Politécnica de Valencia (Spain) have found that noble metal nanoparticles supported on titanium dioxide or cerium dioxide can catalyze the industrially important water gas shift (WGS) reaction for hydrogen production at ambient temperatures using visible light irradiation. Catalysts Hydrogen Production Solar' Energy Environ.
The plant, which can convert six megawatts of input power, will utilize renewable electricity for electrolysis, producing oxygen and hydrogen, the latter which could one day power fuel-cell vehicles. These processes include those for the production of ammonia, methanol and hydrogen. Fuels Hydrogen Natural Gas Power Generation Wind'
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