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An Ohio State University team has demonstrated the successful operation of Coal-Direct Chemical Looping (CDCL)—which chemically harnesses coal’s energy and efficiently contains the carbon dioxide produced before it can be released into the atmosphere. Hot iron and coal ash are left behind. 2 millimeters across.
DICE involves converting coal or biomass into a water-based slurry (called micronised refined carbon, MRC) that is directly injected into a large, specially adapted diesel engine. The fuel burns to produce intense temperature and pressure in the engine, which provides highly efficient power to turn electrical generators.
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.
Australia-based Carbon Energy signed its first. international technology license agreement with Chinese coal giant Shanxi Coal. Transportation and Sales Group (Shanxi Coal), to be its exclusive underground coal gasification (UCG) technology partner for the Shanxi Province. services provided by Carbon Energy; and.
The US Department of Energy (DOE) intends to provide up to $100 million in awards ( DE-FOA-0002116 ) for the Coal FIRST (Flexible, Innovative, Resilient, Small, and Transformative) initiative (announced in November 2018), which aims to develop coal plants of the future that will provide secure, stable, reliable power with near-zero emissions.
Biocoal exhibits the same energy density and material handling properties as coal, but unlike coal, it is carbon-neutral, contains no heavy metals, and produces less ash, smoke and volatile off-gases. CSR plans to break the world record for steam locomotive speed, reaching 130 mph (209 km/h). Locomotive 3463. Click to enlarge.
The amount of methane released into the atmosphere as a result of coal mining is likely approximately 50% higher than previously estimated, according to research presented at the recent annual meeting of the American Geophysical Union. The authors point out that less coal production doesn’t translate to less methane.
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. Additional analyses include the evaluation of pressurizing the limestone chemical looping combustion process.
The first China-developed hydrogen fuel cell hybrid locomotive—from core power to main components—has started trial runs on a 627 km railway line for coal transport in north China’s Inner Mongolia Autonomous Region. Li Lingtao, deputy chief engineer with CRRC Datong Co., Source: Xinhua. and the Hydrogen Energy Co.,
This reduction is achieved through a closed-loop carbon recycling system, which could replace 90% of the coke typically used in current blast furnace-basic oxygen furnace systems and produces oxygen as a byproduct. A double perovskite, Ba 2 Ca 0.66 This reacts with the iron ore in the furnace to produce CO 2.
DKRW Advanced Fuels LLC (DKRW) announced that its wholly owned subsidiary, Medicine Bow Fuel & Power LLC (MBFP), has entered into a fixed price Lump Sum Turn Key (LSTK) Engineering Procurement and Construction (EPC) contract with the Sinopec Engineering Group (SEG). gasoline (MTG) technologies. Earlier post.). SEG is a share?controlled
Materials to pursue the offtake of blue ammonia from ExxonMobil’s planned low-carbon hydrogen project at its integrated complex in Baytown, Texas. The company says that blue ammonia will replace conventional coal as a main fuel and accelerate energy transition with less carbon footprint and cleaner power.
Jacobson, professor of civil and environmental engineering at Stanford University, suggests that carbon capture technologies are inefficient and increase air pollution. All sorts of scenarios have been developed under the assumption that carbon capture actually reduces substantial amounts of carbon.
This FOA, issued in August 2017, is a $50-million funding opportunity for projects supporting cost-shared research and development to design, construct, and operate two large-scale pilots to demonstrate transformational coal technologies. Some of these technologies are now ready to proceed to the large-scale pilot stage of development.
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.
Using barium oxide nanoparticles, a team of researchers led by Georgia Tech has modified the surface of conventional anodes for solid oxide fuel cells (SOFCs) to enable operation at lower temperatures (750 °C) with carbon-containing gases—e.g., gasified coal—by eliminating the coking problem. note in their paper.
The US Department of Energy’s (DOE) Office of Fossil Energy has selected seven projects to receive approximately $44 million in federal funding for cost-shared research and development through the funding opportunity announcement, Design and Testing of Advanced Carbon Capture Technologies. Description. Membrane Technology and Research, Inc.
Coal and coal production waste contain a wide variety of valuable rare earth elements that can be converted into clean energy technology components. The US currently has more than 250 billion tons of coal reserves, more than 4 billion tons of waste coal, and about 2 billion tons of coal ash at various sites across the country.
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.,
Flow diagram of coal tar hydrogenation process. Researchers in China report the production of gasoline and diesel from coal tar via an optimized catalytic hydrogenation using two serial fixed beds, the first with a hydrofining catalyst of MoNi/?-Al million tons of coal tar was further processed. Credit: ACS, Kan et al.
million grant from the Commonwealth of Pennsylvania to move forward on the construction of a facility to demonstrate its integrated coal-biomass-to-liquids (CBTL) technology platform ( earlier post ) at Intertek PARC, located at the U-PARC facility in Pittsburgh. Accelergy Corporation has received a $1.3-million
“Blue” hydrogen—produced through steam methane reforming (SMR) of natural gas or coal gasification, but with CO 2 capture and storage—is being described as having low or zero carbon emissions. Our analysis assumes that captured carbon dioxide can be stored indefinitely, an optimistic and unproven assumption.
Japan-based JGC Corporation recently was awarded a contract by Osaki CoolGen Corporation for engineering, procurement and construction (EPC) services of the core facilities for an Integrated Coal Gasification Combined Cycle (IGCC) demonstration plant. The CoolGen demonstration plant is a part of this initiative.
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.
Energy Vault’s advanced gravity energy storage solutions are based on the proven physics and mechanical engineering fundamentals of pumped hydroelectric energy storage, but replace water with custom-made composite blocks, or “mobile masses”, which do not lose storage capacity over time. barrel per ton of feedstock.
A new assessment of the viability of coal-to-liquids (CTL) technology by researchers from the MIT Joint Program on the Science and Policy of Global Change (JPSPGC) found that without climate policy, CTL has the potential to account for around a third of global liquid fuels by 2050. Credit: Chen et al., 2011 Click to enlarge.
million cooperative agreement with the US Department of Energy to test an innovative method for producing liquid transportation fuels from coal and biomass, thereby improving the economics and lifecycle impacts of coal-to-liquid (CTL) and coal-biomass-to-liquid (CBTL) processes. Southern Research Institute has entered into a $1.5-million
Australia-based Woodside has signed an agreement with Japanese companies JERA Inc, Marubeni Corporation and IHI Corporation to undertake a joint study examining the large-scale export of hydrogen as ammonia for use decarbonizing coal-fired power generation in Japan. Green hydrogen is produced from renewable energy using electrolysis.
The US Department of Energy (DOE) will award up to $14 million to six projects aimed at developing technologies to lower the cost of producing electricity in integrated gasification combined cycle (IGCC) power plants using carbon capture. EPRI will team with Dooher Institute of Physics and Energy, Worley Parsons Group, Inc.,
has created a wholly-owned subsidiary, NetZero Metals, to begin the research and development of a processing facility that would be located in the Timmins, Ontario region with the goal of utilizing existing technologies to produce zero-carbon nickel, cobalt and iron products. Canada Nickel Company Inc.
The US Department of Energy (DOE) has selected nine universities for awards for research projects that will continue to support innovation and development of advanced, lower emission coal technologies. The projects selected for awards include: Improved Alloys. DOE Share: $293,519). Brown University.
The contract is one of the first major commercial agreements in the US for the sale of liquid transport fuels made from coal. The Medicine Bow project will use Carbon Basin coal optioned from DKRW partner (and coal mine operator) Arch Coal to produce refined hydrocarbon liquid products. We have received front end.
The Government of Saskatchewan has approved construction of the Boundary Dam Integrated Carbon Capture and Storage Demonstration Project—among the first commercial-scale carbon capture and storage facilities in the world. Cansolv, a wholly owned subsidiary of Shell Global Solutions, will supply the carbon capture process.
In a fairly bleak assessment of global progress towards low-carbon energy, the International Energy Agency (IEA) concluded that, despite a few bright spots such as the rapid expansion of renewable technologies and the growth of hybrid and EV sales, the progress is far below that required to achieve a 2 °C pathway—i.e., Source: IEA.
Startup US Fuel Corporation (USF), which plans to design, build, own and operate scalable facilities near coal mine sites to convert coal into synthetic fuels, will acquire coal-to-diesel intellectual property (IP) that USF co-developed with an executive team consisting of Paul Adams and Steve Luck. Andrew Halarewicz, Sr.
The Department of Energy (DOE) is funding six research and development projects that will repurpose domestic coal resources for high-value graphitic products and carbon-metal composites that can be employed in clean energy technologies. Understanding ultra-conductive carbon metal composite wire for electric motors. Earlier post.)
Syngas can be made in many ways, but one of those, methane dry reforming, is increasingly important because the chemical inputs are methane and carbon dioxide, two potent and problematic greenhouse gases. —Rice chemist and engineer Naomi Halas, a co-corresponding author on the paper. —Linan Zhou.
Yu Jianfeng, chairman of CNNC, said that the corporation will accelerate the progress of mass constructing Hualong One reactors and developing new series technologies in a bid to promote the Hualong One to export and achieve the target of carbon neutrality. million tons of standard coal and emission of 8.16
Built on the Paran River , which forms part of the border between the two nations, Itaipu transformed a once-contested hydroelectric resource into a shared engine of economic progress. To acknowledge Itaipus monumental engineering achievement , on 4 March the dam was recognized as an IEEE Milestone during a ceremony in Hernandarias, Paraguay.
The US Department of Energy (DOE) has selected eight new projects to further advanced coal research under the University Coal Research Program. The selected projects are intended to improve coal conversion and use and will help propel technologies for future advanced coal power systems. DOE Share: $299,998).
The US Department of Energy (DOE) announced approximately $36 million in federally-funded financial assistance to advance carbon capture technologies. Selected projects for this FOA will fall under two areas of interest: Scaling of Carbon Capture Technologies to Engineering Scales Using Existing Host Site Infrastructure.
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.
The US Department of Energy (DOE) will issue a funding opportunity ( DE-FOA-0001791 ) for projects to design and to test advanced carbon capture technologies. The FOA will have two areas of interest: Scaling of carbon dioxide capture technologies to engineering scales using existing host site infrastructure; and.
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. Coal and water could be used as input where natural gas is not available.
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