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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.
Heliogen’s AI-enabled concentrated solar energy system is designed to create carbon-free steam, electricity, and heat from abundant and renewable sunlight. When combined with Bloom’s proprietary solid oxide, high-temperature electrolyzer, hydrogen can be produced 45% more efficiently than low-temperature PEM and alkaline electrolyzers.
Canada-based Carbon Engineering Ltd. (CE) CE) has received equity investment from two global energy companies: Oxy LowCarbon Ventures, LLC (OLCV), a subsidiary of Occidental Petroleum Corporation; and Chevron Technology Ventures (CTV), the venture capital arm of Chevron Corporation.
LeMond Composites, founded by three-time Tour de France champion Greg LeMond, has licensed a low-cost, high-volume carbon fiber manufacturing process developed at the US Department of Energy’s Oak Ridge National Laboratory (ORNL). Earlier post.)
According to the latest report from the United Nations (UN), the global population in 2018 was 7.6 By 2050, the global population is expected to soar to 9.7 The world has experienced significant urbanization in recent decades. billion and the urban population was 4.2 billion, with 68% of the population living in urban areas.
AQDS undergoes extremely rapid and reversible two-electron two-proton reduction on a glassy carbon electrode in sulfuric acid. First, scalability: AQDS contains only the Earth-abundant atoms carbon, sulphur, hydrogen and oxygen, and can be inexpensively manufactured on large scales. I’m excited that we have a good shot at it.
Group14 Technologies, a provider of silicon-carbon composite materials for global lithium-ion markets, announced that it has been selected as a winner of the Department Of Energy’s Energy Storage Grand Challenge and will receive a $3.96-million million award.
James Muckerman at the US Department of Energy’s (DOE) Brookhaven National Laboratory (BNL) have developed a new class of high-activity, low-cost, non-noble metal electrocatalyst that generates hydrogen gas from water.
to pursue opportunities in large-scale, low-cost and permanent carbon capture and storage (CCS). Importantly, FPX will have the right to use any intellectual property developed by CO 2 Lock, further raising the potential for development of a low- or zero-carbon nickel mining operation at Decar. FPX Nickel Corp.,
Tata Technologies, a global provider of engineering services and product development IT, was selected by Michelin to display its electric MObility (eMO) engineering study EV as part of the Michelin Challenge Design display at the 2012 North American International Auto Show (NAIAS) in Detroit. The eMO study. kWh air-cooled battery pack.
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The carbon dioxide can then be permanently stored or used in various products or applications. The biochar is rich in carbon and can be used as a fertilizer. Cambridge Carbon Capture Ltd.,
Researchers at Stanford University, with colleagues at Oak Ridge National Laboratory and other institutions, have developed a nickel-based electrocatalyst for low-cost water-splitting for hydrogen production with performance close to that of much more expensive commercial platinum electrocatalysts. and Stephen J. Department of Energy.
million in funding for 12 projects as part of Phase 1 of the Advanced Research Projects Agency-Energy’s (ARPA-E’s) FLExible Carbon Capture and Storage (FLECCS) program. Phase 1 FLECCS projects are: GE Global Research. Synergistic Heat Pumped Thermal Storage and Flexible Carbon Capture System - $1,000,000.
LeMond Carbon announced the results of an independent technical audit conducted by Bureau Veritas (BV) of its carbon fiber manufacturing process. The audit was conducted on a pilot line at Deakin University’s Carbon Nexus facility in Geelong, Australia. From Bureau Veritas audit of LeMond’s carbon fiber manufacturing process.
jointly announced that, toward the achievement of carbon neutrality, they will take on the challenge of expanding fuel options through the use of internal combustion engines at the (three-hour) Super Taikyu Race in Okayama on 13-14 November. Participating in races using carbon-neutral fuels. Kawasaki Heavy Industries, Ltd.,
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. With our leading fuel cell technology, we are working closely with partners to scale up hydrogen production in the US and globally. 22 CCR § 66260.10 Definitions).
Calysta says that in contrast to current algae- and sugar-based methods, a methane-based biofuel platform is expected to produce fuel at less than half the cost of other biological methods, allowing direct competition with petroleum-based fuels. Carbon feedstock. Comparison of biofuel platform efficiency (source: Calysta Energy).
Bank of America has joined Stanford University’s Global Climate & Energy Project (GCEP), a collaboration of academic and business experts that identifies and supports new avenues of research to make environmentally sustainable, low-cost energy available to everyone.
This one-step nitrogen-fixation strategy to produce ammonia is eco-friendly and lowcost, which converts widely available starting materials into a value-added product. The steam-treating of natural gas involved in the process also releases ample amounts of carbon dioxide. —Song et al.
The SBRP team will focus on an ISAS approach, which is a highly efficient system for producing liquid and solid biofuels, capturing and holding carbon from the atmosphere, enlarging habitats to increase biodiversity, and simultaneously releasing fresh water for higher value uses such as drinking water. Greening the Deserts of the Earth (GSI).
The storage battery market is expected to continue growing in light of the spread of renewable energy and electrified vehicles, as well as the global trend toward carbon neutrality.
ARPA-E’s first solicitation awarded $151 million to 37 projects aimed at transformational innovations in energy storage, biofuels, carbon capture, renewable power, building efficiency, vehicles, and other areas. Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. Earlier post.) Engineering E. per gallon.
Ultimately, SpinLaunch’s Orbital Accelerator will accelerate a launch vehicle containing a satellite up to 5,000 miles per hour using a rotating carbon-fiber-arm within a 300-ft diameter steel vacuum chamber. After full review, NASA and SpinLaunch will publish all non-proprietary launch environment information from the test flight.
Carbon Clean, a developer of low-costcarbon capture technology, has entered into an agreement with power-to-fuels developer Liquid Wind. Carbon Clean’s technology will capture biogenic carbon dioxide emissions from a local industrial site. The partnership has ambitions for future sites.
Ranges of automotive fuel cell system costs at mass manufactured volume using technology from three UK companies supported by the Carbon Trust. Source: Carbon Trust. The UK, through its leading companies, is in pole position to benefit from an expanded global market for fuel cell vehicles. Click to enlarge.
Bosch process for the industrial synthesis of ammonia has, over the past century, led to a global revolution in agriculture to the extent that almost half the crops grown across the world today depend on ammonia-based fertilizers. The material costs, however, are very significantly less, the team observed. Current high-pressure (?700
According to the Intergovernmental Panel on Climate Change, greenhouse gas emissions must be reduced by 50%–85% by 2050 to limit global warming to two degrees Celsius (four degrees Fahrenheit). The transportation sector is the largest source of greenhouse gas emissions in the United States, accounting for about 28% of total carbon emissions.
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 SOEC is mainly built of abundant and low-cost ceramic materials in a metal housing. E tn , thermoneutral potential. Hauch et al.
has been expanding investments in green businesses and technologies to achieve its goal of net-zero greenhouse gas emissions in response to global climate change. SK Ecoplant is a global engineering and construction firm that has placed a priority on environmentally friendly energy and infrastructure projects.
Fulcrum BioEnergy, a clean energy company pioneering the creation of renewable, drop-in transportation fuels from landfill waste, successfully produced a low-carbon synthetic crude oil using landfill waste as a feedstock at its Sierra BioFuels Plant, the world’s first commercial-scale landfill waste-to-fuels plant.
This is the key to our ability to extract substantial crude oil from wells at lowcost. This complements GE Oil & Gas’ global position in advanced technology equipment and services. Glori Energy customizes its treatments to optimize the microbiology of each oil field. —Stuart Page, CEO of Glori Energy.
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). Abatement cost with hydrogen at $1/kg (7.4/MMBtu).
Combining biomass-to-energy for electricity or biofuel production with CO 2 capture and storage (Bio-CCS) could result in an annual global technical potential of up to 10 gigatonnes of negative CO 2 emissions in the year 2050, according to a study commissioned by IEA Greenhouse Gas R&D Programme to the global energy consultancy company Ecofys.
Carbon is seen as an attractive potential cathode material for aprotic (non-aqueous) Lithium-air batteries, which are themselves of great interest for applications such as in electric vehicles because of the cells’ high theoretical specific energy. Given the role of carbon as a possible porous positive electrode for nonaqueous Li?O
The UK’s Carbon Trust recently awarded £1.95 million) to two UK fuel cell companies—ACAL Energy and ITM Power—to help deliver a step change reduction in the cost of the technology to about $35/kW. Significant additional technological breakthroughs are needed to achieve this target of a 30% cost reduction.
The US Department of Energy (DOE) selected eight projects to advance the development of transformational oxy-combustion technologies capable of high-efficiency, low-costcarbon dioxide capture from coal-fired power plants. DOE Investment: $1,000,000; Recipient Cost-Share: $226,000. Pratt & Whitney Rocketdyne.
the developer of advanced lead-carbon PbC batteries ( earlier post ), recently completed a private placement of an aggregate of 45,757,572 shares of its common stock to institutional and individual investors at a price of $0.57 Axion Power International, Inc., per share for total gross proceeds of $26,081,490.
The major challenges for lithium production in this region relate to the harsh chemistry of the brine and the difficultly of developing a low-cost and highly selective process for lithium recovery. The new lithium recovery projects awarded funding are designed to help reduce costs and environmental impact.
ARPA-E’s first solicitation, announced earlier this year, was highly competitive and resulted in awarding $151 million to 37 projects aimed at transformational innovations in energy storage, biofuels, carbon capture, renewable power, building efficiency, vehicles, and other areas. Earlier post.)
Ammonia enables efficient, low-cost transport and storage of hydrogen. As a fuel that does not emit carbon dioxide when burned, ammonia is expected to offer advantages in reducing greenhouse gas emissions. In addition to this role as an energy carrier, it can also be used directly as a fuel in thermal power generation.
The US Department of Energy announced $33 million in funding for 17 projects as part of the Advanced Research Projects Agency-Energy’s (ARPA-E) Aviation-class Synergistically Cooled Electric-motors with iNtegrated Drives (ASCEND) and Range Extenders for Electric Aviation with LowCarbon and High Efficiency (REEACH) programs.
The US Department of Energy has selected 16 projects for almost $29 million in funding to develop advanced post-combustion technologies for capturing carbon dioxide from coal–fired power plants. Carbon Capture Scientific. GE Global Research. Awardee Project description. DOE share: $1,999,693; recipient share: $500,000.
Producing hydrogen has traditionally been associated with high carbon emissions, but by using renewable electricity—e.g., from an offshore wind farm—the process of producing hydrogen from water (electrolysis) can be decarbonized. —Anders Christian Nordstrøm, Vice President for Hydrogen, Ørsted.
Wave energy holds the greatest potential to generate constant low-cost green hydrogen. Our WaveRoller process enables a green hydrogen plant to achieve much higher production capacities at reduced costs by complimenting wave energy with solar or wind. The technology can be deployed as single units or in farms.
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