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There is an accompanying need to develop new low-cost and low-carbon technologies for hydrogen production. Aurora Hydrogen is scaling its proprietary and highly efficient microwave pyrolysis technology to produce hydrogen and solid carbon from natural gas without generating CO 2 emissions or consuming water.
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.
The California Sustainable Energy Entrepreneur Development (CalSEED) program announced that the fourth cohort of innovative clean energy concepts has been approved by the California Energy Commission (CEC); 28 companies out of 212 were selected to receive grants of $150,000 each. Details of the 28 companies awarded a total of $4.2
IPG’s project will demonstrate the role of Flameless Ceramic Turbine technology in bringing EV charging to high-use and remote locations through clean, cheap, grid-independent power generation. Low-cost ceramics enable temperatures beyond the limitations of metals to deliver fuel efficiencies of power plants in small-scale distributed power.
million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogen production with nuclear energy. A well-established downstream syngas-to-synfuel conversion process, such as Fischer-Tropsch synthesis, converts the syngas to liquid synfuel for a total projected cost of less than $4/gallon.
Scientists from Stanford University, SLAC National Accelerator Laboratory and the Technical University of Denmark have identified a new nickel-gallium catalyst that converts hydrogen and carbon dioxide into methanol at ambient pressure and with fewer side-products than the conventional catalyst. You want to make methanol, not carbon monoxide.
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-carbon hydrogen production. HyNet – lowcarbon hydrogen plant. Contract value: £3.12 million (US$4.1
million to 25 early-stage, innovative projects as part of a portfolio of research investments intended to help achieve the state’s climate and clean energy goals. million in EPIC funding to 75 projects statewide to help California entrepreneurs bring early-stage clean energy technologies to market. Among the projects are.
CarbonClean, a developer of low-costcarbon capture technology, has entered into an agreement with power-to-fuels developer Liquid Wind. CarbonClean’s technology will capture biogenic carbon dioxide emissions from a local industrial site. The partnership has ambitions for future sites.
The US Department of Energy (DOE) launched the Clean Fuels & Products Shot , a new initiative that aims to reduce greenhouse gas emissions (GHGs) from carbon-based fuels and products significantly. Biomass and waste conversion technologies designed to use green electricity and hydrogen to maximize carbon retention in products.
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. Synergistic Heat Pumped Thermal Storage and Flexible Carbon Capture System - $1,000,000. The team’s approach uses a novel and low-cost heat-pump thermal storage system.
C-Zero’s technology, which was initially developed at the University of California, Santa Barbara, uses innovative thermocatalysis to split methane into hydrogen and solid carbon in a process known as methane pyrolysis. The methane decomposition reaction is moderately endothermic; the energy requirement per mole of hydrogen produced (8.9
The transportation sector is the largest source of greenhouse gas emissions in the United States, accounting for about 28% of total carbon emissions. Like bioenergy, hydrogen sits at the center of NREL’s strategy for a transportation system decoupled from carbon emissions.
million from the US Department of Energy (DOE) to develop and validate technology that will reduce the cost of manufacturing high-performance carbon fiber by 25% to make composite natural gas or hydrogen fuel tanks to power cars and trucks. The Institute for Advanced Composites Manufacturing Innovation (IACMI) will receive $2.7
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).
These project teams will pursue methods to create high-value carbon and hydrogen from methane (four projects, $14.4 million), or to produce super strong, durable concrete with lower cost and environmental impact (3 projects, $6.1 High Value, Energy Saving Carbon Products and Clean Hydrogen Gas from Methane, $3,479,624.
These new GaN power devices will enable the next generation of low-cost, fast, small, and reliable power electronics, which are key for efficient power conversion in data centers, solar farms, power grids, and electric vehicles. Stanford University. The Ohio State University. University of Washington. Columbia University.
The projects will feature collaborations with EERE’s Advanced Manufacturing Office on manufacturing reliable and affordable electrolyzers and with EERE’s Vehicle Technologies Office on developing low-cost, high-strength carbon fiber for hydrogen storage tanks. Carbon Composite Optimization Reducing Tank Cost.
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.
The composite blocks can be made from low-cost and locally sourced materials, including the excavated soil at the construction site, but can also utilize waste materials such as mine tailings, coal combustion residuals (coal ash), and fiberglass from decommissioned wind turbine blades. barrel per ton of feedstock.
78.09% nitrogen, 20.95% oxygen, 0.93% argon, 0.04% carbon dioxide, and small amounts of other gases) added—it is actually evacuated from the process so there is zero combustion inside the rotary reformer. In Steam CO 2 Reforming, there is no oxygen or air (i.e. 22 CCR § 66260.10 Definitions and 40 CFR § 260.10 Definitions).
Westinghouse Electric Company and Bloom Energy Corporation have entered into a Letter of Intent to pursue clean hydrogen production in the commercial nuclear power market. The companies are teaming to identify and implement clean hydrogen projects across the nuclear industry.
a Vancouver-based company that is developing a novel methane pyrolysis technology platform which produces clean and low-cost hydrogen, closed a CAD $79-million (US$62-million) Series A round. PMP uses the pulsed injection of thermal and mechanical energy, resulting in the automatic removal of carbon-buildup due to unsteady flow.
Electric vehicles are the next frontier in the clean energy transition, and we are committed to making charging EVs easy, convenient and affordable for customers. million EVs would reduce carbon emissions by nearly 5 million tons annually by 2030, or about three tons of carbon reduction per vehicle. Powering 1.5
The Bloom Energy Servers are a proven market leader in clean, reliable, and resilient on-site power. This expansion of our product offering enables zero-carbon electricity and transportation solutions. Bloom Energy announced in June 2019 that its fuel cells could run on hydrogen to generate zero-carbon electricity.
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.
Steel production could be made with almost no carbon emissions through $278 billion of extra investment by 2050, according to a new report from research firm BloombergNEF (BNEF). Producing green steel from hydrogen and electric furnaces will require massive amounts of clean energy, and a shift to higher grades of iron ore.
JERA & Uniper are collaborating to facilitate the development of the initial production of 2 MTPA of clean ammonia with expansion potential up to 8 MTPA, to accelerate the production and supply of zero-carbon fuels from the US for use in the US, Europe, Japan, and greater Asia. The company is based in Düsseldorf.
Establishing ambitious carbon-intensity targets and a regulatory framework for carbon capture and storage. British Columbia (BC) has the resources to produce both green and blue hydrogen with lowcarbon intensity. More than 98% of BC’s electricity is renewable, enabling the production of green hydrogen via electrolysis.
The project would capture and send for storage up to two million tonnes of carbon dioxide (CO?) Clean hydrogen is an essential complement to electrification on the path to net zero. Blue hydrogen, integrated with carbon capture and storage, can provide the scale and reliability needed by industrial processes.
Nikola Corporation and KeyState Natural Gas Synthesis , a clean hydrogen and chemicals production facility under development, are working together to create Pennsylvania’s first low-carbon hydrogen production value chain, which includes full integration of commercial carbon capture and storage.
The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. improved oilseed crop that uses carbon more efficiently than. University of Massachusetts, Amherst.
Startup ClearFlame Engine Technologies announced a partnership with Alto Ingredients, a leading producer of specialty alcohols and essential ingredients, to conduct pilot demonstrations of ClearFlame’s solution for diesel engines using low-cost ethanol in Class 8 trucks.
Clean Energy Ventures , a $110-million venture capital firm investing in early-stage climate tech startups, is leading the investments in two battery startups: one in the upstream ( N th Cycle ) and one in the downstream ( Volexion ). million in funding from investors led by climate tech venture capital firm Clean Energy Ventures.
Rolls-Royce announced that following a successful equity raise, it has established the Rolls-Royce Small Modular Reactor (SMR) business to bring forward and deliver at scale the next generation of low-cost, low-carbon nuclear power technology. Earlier post.). —UK Business and Energy Secretary Kwasi Kwarteng.
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 UK’s Department for Transport (DfT) is providing £30 million (US$45 million) in new funding to further encourage a shift to lowcarbon transport. million) in a second round of the Green Bus Fund Competition to buy new lowcarbon buses. The £30 million was a commitment included in last year’s Pre-Budget Report.
The companies have initiated the partnership with a non-recurring engineering (NRE) agreement to develop low-carbon technology for the conversion of critical metals—first virgin and later recycled material—into battery-grade cathode active material (CAM) precursors, which are essential to 6K Energy’s advanced cathode manufacturing.
Nikola’s Energy business unit and TC Energy are actively collaborating to identify and ro develop projects to establish the infrastructure required to deliver low-cost and low-carbon hydrogen at scale in line with each company’s core objectives.
AW-Energy says that its wave energy device, when combined with other renewable energy sources, can enable significant green hydrogen cost reductions and is a viable solution in the drive to execute the world’s clean energy hydrogen roadmap. Wave energy holds the greatest potential to generate constant low-cost green hydrogen.
The US Department of Energy (DOE) announced $3 million in funding for 10 high-performance computing projects that will advance cutting-edge manufacturing and clean energy technologies. Improvements in manufacturing processes that result in significant national energy savings and carbon emissions. All Selectees. PROJECT TITLE.
France-based energy major Total SA and Clean Energy Fuels Corp. million shares of Clean Energy’s common stock for $83.4 million, to become Clean Energy’s largest stockholder with ownership of 25% of Clean Energy’s outstanding shares of common stock. million shares of Clean Energy’s common stock for $83.4
The projects will support the development and improvement of clean energy and efficiency technologies of strategic national interest. million for carbon fiber manufacturing and processing to construct the Carbon Fiber Technology Center. The US Department of Energy (DOE) is awarding $104.7 ORNL will also receive $20.2
8 Rivers Capital announced the development of the 8RH2 CO 2 Convective Reformer—a technology for the production of ultra-lowcarbon hydrogen from natural gas. It uses the oxy-combustion of carbon fuels and a high-pressure supercritical CO 2 working fluid in a highly recuperated cycle that captures all emissions by design.
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