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The US National Energy Technology Laboratory (NETL) is collaborating with the University of Kentucky and their subcontractor Virginia Tech to demonstrate a novel process for the extraction of REEs from coal using plasma. However, domestic coal is of interest as a potentially abundant and easily accessible REE source in the US.
The US Department of Energy (DOE) announced up to $64 million in federal funding for cost-shared research and development (R&D) projects under the funding opportunity announcement ( DE-FOA-0002057 ), “Critical Components for Coal FIRST Power Plants of the Future.”. AOI 2: Indirect Supercritical Carbon Dioxide Power Plant System.
million from the American Recovery and Reinvestment Act (ARRA) to expand an existing industrial and innovative reuse carbon mitigation project. Arizona Public Service’s ongoing algae-based carbon mitigation project, previously selected via competitive solicitation, will be expanded to include testing with a coal-based gasification system.
The US Department of Energy (DOE) selected eight projects to advance the development of transformational oxy-combustion technologies capable of high-efficiency, low-cost carbon dioxide capture from coal-fired power plants. Babcock & Wilcox Power Generation Group.
The US Department of Energy’s (DOE) Office of Fossil Energy (FE) has selected four projects for cost-shared research and development under the funding opportunity announcement (FOA), DE-FOA-0002180, Design Development and System Integration Design Studies for Coal FIRST Concepts.
The US Department of Energy (DOE) has issued a funding opportunity announcement ( DE-FOA-0000784 ) for up to $13 million to support the development of advanced coal gasification systems. AOI 1: Coal Feed Technologies - Low-rank Coal Feed or Coal-woody Biomass Feed Technologies. poplar, pine and hardwoods]).
The US Department of Energy (DOE) will award up to $24 million for research into technology that captures carbon emissions directly from the air, replicating the way plants and trees absorb CO 2. ( Concepts that combine exothermic and endothermic stages to exchange thermal flux across a barrier are discouraged. DE-FOA-0002481 ).
The US Department of Energy’s (DOE) Office of Fossil Energy (FE) has selected four projects aimed at reducing the energy and cost penalties of advanced carbon capture systems applied to power plants for further development. These penalties can add as much as 80’ to the cost of electricity for a new pulverized coal plant.
Awardees will receive approximately $16 million to advance the gasification process, which converts carbon-based materials such as coal into syngas for use as power, chemicals, hydrogen, and transportation fuels. Advanced Gasifier and Water-Gas Shift Technologies for Low-Cost Coal Conversion to High-Hydrogen Syngas.
The Funding Opportunity Announcement ( DE-FOA-0000703 ) for the awards is soliciting applications for R&D in two specific Areas of Interest: laboratory scale liquids production and assessment; and a feasibility study for a coal-biomass to liquids facility. Feasibility Study for a Coal-Biomass to Liquids Facility.
It aims to replace coking coal, traditionally needed for iron ore-based steelmaking, with fossil-free electricity and hydrogen. The result is expected to be fossil-free steelmaking technology, with virtually no carbon footprint. This steel will be used for testing purposes and may be used in a concept car.
The US Department of Energy has issued up to a $5-million Funding Opportunity Announcement (DE-FOA-0000103) to solicit laboratory-level R&D projects to develop novel technologies for producing hydrogen from coal. have led to the need for alternative methods of producing hydrogen from coal-based facilities.
AHEAD’s polygeneration concept for ammonia and hydrogen fuels for developing countries. The AHEAD concept for bringing power to off-grid areas in Africa is to make modest use of renewables where it makes sense, and to drive mass deployment of ammonia and hydrogen along with small engine generators, microturbines and fuel cell systems.
The US Department of Energy (DOE) has selected 8 research projects for funding that will focus on gasification of coal/biomass to produce synthetic gas (syngas) as a pathway to producing power, hydrogen, fuel or chemicals. will blend coal and biomass to develop a feedstock for co-gasification. Clean Coal Briquette Inc.
The US Department of Energy (DOE) in partnership with the US Air Force has issued a request for information (RFI)— DE-FOA-0000981 —on research & development aimed at greenhouse gas emissions reductions and cost competitiveness of Mil-Spec jet fuel production using coal-to-liquid (CTL) fuel technologies. Information Request.
Clariant and Siemens Fuel Gasification Technology will cooperate in the commercialization of a new, jointly developed sour gas shift (SGS) (sulfur removal) technology for coal gasification. The entrained-flow Siemens Fuel Gasifier (SFG) is able to produce syngas from a wide range of fuels, even for low ranks of coal. Click to enlarge.
The US Department of Energy’s National Energy Technology Laboratory (NETL) has issued a new Funding Opportunity Announcement (FOA) soliciting research projects that will address key challenges related to the utilization of coal-biomass mixtures for co-production of power and hydrogen, fuels, and/or chemicals.
The US Department of Energy (DOE) will award up to $36 million ( DE-FOA-0001791 ) to continue the development of carbon capture technologies to either the engineering scale or to a commercial design, with an eye to reducing fossil fuel power plant emissions. The technical and economic potential of the concept must have been evaluated.
Our Carbon2Chem concept has shown that it is possible to use steel mill gases for the production of various chemicals and thus achieve a circular carbon economy. Steel mill gas comprises 44% nitrogen, 23% carbon monoxide, 21% carbon dioxide, 10% hydrogen and 2% methane.
billion from the American Recovery and Reinvestment Act for the capture carbon dioxide from industrial sources for storage or beneficial use. Secretary Chu on Carbon Capture. Noting that coal accounts for roughly 25% of the world energy supply and 40% of the carbon emissions. million in Recovery Act funding and $22.5
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. More than 540 initial concept papers were received in the three focus areas. Earlier post.) Engineering E. per gallon.
Carbon Sciences, Inc., the developer of a biocatalytic process to transform CO 2 into low-carbon hydrocarbons (C 1 to C 3 ) for subsequent upgrading into higher-carbon fuels such as gasoline and jet fuel ( earlier post ), has also applied for an award under the FOA. Known as Funding Opportunity DE-FOA-0000015, the $2.4-billion
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. The application of ultrasonic energy forces dissolved CO 2 into gas bubbles. Battelle (PNNL).
The US Department of Energy (DOE) announced the award of approximately $72 million in federal funding to support the development and advancement of carbon capture technologies under two funding opportunity announcements (FOAs). Enabling Production of Low Carbon Emissions Steel Through CO 2 Capture from Blast Furnace Gases.
At the Geneva Auto Show, the China-based Hybrid Kinetic group unveiled the H600 microturbine range-extended electric vehicle sedan concept, produced together with its vehicle design and engineering partner, Pininfarina. The 60 kW microturbine range extender delivers 40% efficiency, low emissions, and a 10000-hour maintenance interval.
Concept of the service and mobile app for renewable charging. According to the US Energy Information Administration (EIA), US electricity generation in 2010 was 70% fossil fuels (coal 44.9%, natural gas 23.8%); 20% nuclear; and 10% renewable, of which 6.2% Click to enlarge. was conventional hydropower. Wind accounted for 2.3%.
Survey results for favorable impressions of energy and environmental concepts. According to a new survey from Pike Research, US consumer support for renewable energy sources, such as solar and wind, is high while support for cap and trade as a carbon management scheme is extremely low. Clean Coal: 47%. Source: Pike Research.
KHI has previously discussed the concept of such a hydrogen-carrying vessel as part of its Business Vision 2020. KHI is envisioning gasifying Australian brown coal (with carbon capture and sequestration) to produce the hydrogen, followed by liquefaction and shipment via the LH 2 tankers. Click to enlarge.
million carbon-capture pilot, funded in part by the US Department of Energy (DOE), at Kentucky Utilities’ E.W. The 2 megawatt thermal system will be the first megawatt-scale carbon-capture pilot unit in the Commonwealth. An integrated cooling tower that recovers energy from the carbon-capture system and improves power plant efficiency.
Since 2005, when major greenhouse-gas emitters among the Kyoto signatories were issued caps on their emissions and permitted to buy credits to meet those caps, there has been more than $300 billion worth of carbon transactions. The approval process for carbon offsets has two goals. This concept is often called “additionality.”
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.)
TMRC’s project partners include Penn State, Jeddo Coal Company and McCarl’s. In 2019 a consortium including Texas Mineral Resources consortium successfully completed a US Department of Energy Office of Fossil Energy grant to produce multiple separated rare earth minerals from Pennsylvania coal mining waste material.
The US Department of Energy’s (DOE) National Energy Technology Laboratory (NETL) has selected eight projects to receive almost $25 million in funding to construct small- and large-scale pilots for reducing the cost of CO 2 capture and compression through DOE’s Carbon Capture Program. FuelCell Energy Inc. Source: FuelCell Energy.
For FY 2014, the Hydrogen Production sub-program continued to focus on developing technologies to enable the long-term viability of hydrogen as an energy carrier for a range of applications with a focus on hydrogen from low-carbon and renewable sources.
The team first used chemical looping on coal and shale gas to convert fossil fuels into electricity without emitting carbon dioxide into the atmosphere. The researchers later applied the concept to hydrogen sulfide and invented the SULGEN process, which converts hydrogen sulfide into hydrogen.
The traditional process of producing ammonia has used “grey” or “black” hydrogen from either natural gas or coal. million) proof-of-concept facility showcased an ammonia-based energy storage system that turned electricity, water and air into ammonia without releasing carbon emissions. million (US$1.8-million)
billion from the American Recovery and Reinvestment Act to expand and accelerate the commercial deployment of carbon capture and storage (CCS) and reuse technology. The Department is posting Notices of Intent to issue this funding, supporting the following initiatives: Clean Coal Power Initiative. Industrial Carbon Capture and Storage.
The US Department of Energy (DOE) announced up to $30 million to help lower the costs of the onshore production of rare earths and other critical minerals and materials from domestic coal-based resources. ( However, rare earth elements occur naturally, including in domestic coal and coal wastes.
Previously, the DICP team proposed a new catalyst concept based on metal oxide-zeolite (OXZEO) bi-functional catalysts. The OXZEO concept provided a new technology platform for the highly efficient utilization of coal and other carbon resources. Direct syngas conversion to isoparaffin-rich gasoline over OXZEO catalyst.
The two projects selected—an existing power plant in North Dakota and a new facility in California—will incorporate advanced technologies to reduce carbon dioxide emissions. The selection of the two projects is part of the third round of the Clean Coal Power Initiative (CCPI).
Simplified flowsheet of the proposed solar hybridized coal- to-liquids (SCTL) process with the proposed solar hybridized dual fluidized bed (SDFB) gasifier. As one approach to reducing the overall carbon intensity of FT fuels, there is growing interest in introducing concentrated solar power as a heat source into the gasification process.
MBD Energy (MBD) recently committed to purchase an initial OriginOil extraction unit for piloting at one of Australia’s three largest coal-fired power plants. MBD Energy expects OriginOil technology to support a pilot Bio-CCS (Bio-based Carbon Capture and Storage) algal synthesizer system at Queensland’s Tarong Power Station.
This will reduce the carbon footprint of our supply chain by 900,000 tonnes per year, while at the same time driving the transformation of the steel industry. With its versatile properties, steel is nevertheless one of the key materials for automotive manufacturing and will be no less important for future vehicle concepts and generations.
The 1,000 wind turbines that the spheres could anchor could, on average, replace a conventional on-shore coal or nuclear plant. Ocean Renewable Energy Storage (ORES) System: Analysis of an Undersea Energy Storage Concept,” Proceedings of the IEEE , vol. The work was supported by a grant from the MIT Energy Initiative. Slocum, A.H.;
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