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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.
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. Earlier post.). and Hitachi, Ltd.
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.
Ignite Energy Resources supercritical water process diagram. IER’s proprietary supercritical water technology (SCW) transforms low-ranked coals, including lignite, directly into higher-valued oils and cleaner coal products. tonnes of high-ranked coal. Source: IER. Click to enlarge. Source: IER. Click to enlarge.
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 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.
The National Energy Technology Laboratory (NETL) has released a follow-on study to its 2009 evaluation of the economic and environmental performance of Coal-to-Liquids (CTL) and CTL with modest amounts of biomass mixed in (15% by weight) for the production of zero-sulfure diesel fuel. Earlier post.). —White and Gray.
In addition, President Obama issued a Presidential Memorandum creating an Interagency Task Force on Carbon Capture and Storage to develop a comprehensive and coordinated federal strategy to speed the development and deployment of advanced lower-emission coal technologies. per gallon. Regulatory compliance – EPA and USDA.
The TCEP would integrate coal gasification, combined-cycle power generation, CO 2 capture, and. This is another important milestone for the Texas Clean Energy Project, coming on the heels of last month’s power purchase announcement with CPS Energy in San Antonio. urea production. CO 2 capture and shipment via pipeline shown at top.
Air Products will acquire Royal Dutch Shell’s Coal Gasification Technology business as well as Shell’s patent portfolio for Liquids (Residue) Gasification. As a leading industrial gas company, Air Products has extended its onsite supply model to use coal gasification to generate synthesis gas (syngas) for major projects.
Researchers at Wakayama University in Japan have produced a mixture of hydrogen and carbon monoxide gas by irradiating a mixture of carbon powder and distilled water with intense nanosecond laser pulses at room temperature. Photographs of a bottled mixture of Bincho-tan powder and water (a) before, (b) during, and (c) after irradiation.
Four of the charges are the direct result of the massive coal ash spill from the Dan River steam station into the Dan River near Eden, North Carolina, in February 2014. Results of these audits will be made available to the public to ensure compliance with environmental laws and programs.
Australia-based underground coal gasification (UCG) company Linc Energy ( earlier post ) has signed an exclusive agreement with the UK-based alkaline fuel cell technology company AFC Energy Plc and its related company, B9 Coal ( earlier post ). Peter Bond, Linc Energy CEO.
Overview of the Bluegas catalytic coal methanation process. billion from Wanxiang to finance and construct the first phase of a coal-to-natural gas facility that ultimately will have an annual production capacity of one trillion cubic feet (1 Tcf) (30 billion cubic meters) per year. Click to enlarge. pure methane).
million Funding Opportunity Announcement (FOA) ( DE-FOA-0001285 ) for a new technical track under the US-China Clean Energy Research Center ( CERC ) that addresses water-related aspects of energy production and use. It builds on the contents of The Water-Energy Nexus: Challenge and Opportunities, which DOE issued in June 2014.
Natural gas will play a leading role in reducing greenhouse-gas emissions over the next several decades, largely by replacing older, inefficient coal plants with highly efficient combined-cycle gas generation, according to a major new interim report out from MIT. The first two reports dealt with nuclear power (2003) and coal (2007).
UK Environment Secretary Michael Gove published a new Clean Air Strategy to cut air pollution backed up through new primary legislation. To legislate to ensure only the cleanest domestic fuels will be available for sale, preventing 8,000 tonnes of harmful particulate matter from entering the atmosphere each year. billion (US$4.7-billion)
Water splitting provides ions that continuously regenerate the ion exchange resin and enables electrochemical solution pH control. RW-EDI has many potential uses including direct production and separation of products, product purification, desalination, salt waste recovery, and water recycling. Top: RW-EDI stack. Source: Argonne/Nalco.
one of the largest US-based, publicly-traded water utilities, is going to transition portions of its larger vehicle fleet to compressed natural gas (CNG). CNG makes sense economically because of it is less expensive than fossil fuels and environmentally because it is a clean-burning fuel and thereby reduces carbon emissions.
SOFC systems currently available for distributed power generation applications are primarily large-scale (100 kW+). Thus, SOFC systems available today are heavily subsidized. Cleaning process for coal-derived syngas to be used as SOFC fuel and testing of single and multiple cells on syngas. data centers). data centers).
The Oleo Sponge, a patent-pending technology to clean oil spills invented at the US Department of Energy’s (DOE) Argonne National Laboratory, performed successfully in an experiment conducted off the coast of Southern California. After the oil is wrung out, Oleo Sponge can be used again. I was thrilled to see how well it performed.
Linc says the Pyromex process produces good quality syngas with almost no CO 2 gas emissions, and without the need for the consumption of high volumes of water or power. These coal areas were originally chosen by Tenneco as some of the better above ground gasification coalavailable in North America.
The Funding Opportunity Announcement (FOA) anticipates two awards being made: the first for $7 million in the area of Carbon Capture and Storage (CCS) and fossil-fuel-based Clean Energy Systems (CES); the second for $2 million in the area of international oil and natural gas. Carbon Capture and Storage and Clean Energy Systems.
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.
Hydrogen for reverse water gas shift reaction to avoid producing CO 2 during the process is produced by electrolyzing water, driven by solar power. For comparison, they also modeled the production of methanol using only biomass as a fuel and also using coal as source of both carbon and energy. Hertwich and Zhang (2009).
In the coming weeks, DOE will issue a draft of a solicitation that would make up to $8 billion in (self-pay) loan guarantee authority available for a wide array of advanced fossil energy projects under its Section 1703 loan guarantee program. Other efforts will include: Natural Gas. Energy Efficiency.
Gerrit Voordouw at the University of Calgary, will sample and explore the biological processes at work in oil wells, oils sands, tailings ponds, and coal beds. The project hopes to decrease water use and lower the emission of greenhouse gases of oil sand production, and enhance the extraction of clean burning natural gas from coal beds.
In the US, despite their relative maturity, natural gas resources continue to grow, and the development of low-cost and abundant unconventional natural gas resources, particularly shale gas, has a material impact on future availability and price. It is clean and flexible. Source: IEA. Click to enlarge.
However, by being able to use a raw CO 2 flue gas stream in our CO 2 -to-Fuel technology, we are no longer dependent on the success or commercial availability of carbon capture systems. This cost is perhaps the single biggest economic barrier to any large-scale CO 2 applications, such as carbon sequestration.
Coal supplies nearly 50% of domestic electricity. In order for low-cost electricity from coal-fired power plants to remain available, the DOE said, economical methods for capturing and storing the greenhouse gas emissions from these plants must be developed. Headwaters Clean Carbon Services , Lawrenceville, N.J.
Algae cultures tend to be relatively dilute, and the energy requirement to remove water from the cultures can be a significant portion of the energy balance. Additionally, few of current harvesting and dewatering technologies available today are amenable to scaling for larger production scenarios of 1,000 acre or larger algal farms.
Current research and development efforts are advancing technologies that could provide step-change reductions in both cost and energy penalty compared to currently available technologies. Further, approximately 70% of smog producing nitrogen oxide (NO x ) is destroyed, supporting clean air initiatives, such as the US Clean Power Plan.
The main project goal is to develop a framework for evaluating proposals to reduce atmospheric carbon dioxide concentrations while maintaining food security, water quality, biodiversity and other benefits, Stoy said. Today, EPSCoR is available through seven federal research and development agencies.
The reaction chamber is enclosed by a membrane wall, cooled with pressurized water and can accommodate feed with much ash. 1,200 °C), the raw syngas is practically tar-free and has a low CH 4 content; thus simplifying downstream syngas cleaning. Because of the high gasification temperature (above ca.
The Consortium that is funded through this solicitation will form a new technical track under the US-China Clean Energy Research Center , a bilateral initiative to encourage R&D collaboration and accelerate technology development and deployment in both countries. Funding available is $12.5 Clean Vehicles. Energy and Water.
Expanded the power sector in GREET with several natural gas and coal combined heat and power (CHP) and carbon capture and storage (CCS) technologies. Also updated energy and water consumption for lithium-ion battery manufacturing. Also updated energy and water consumption for lithium-ion battery manufacturing.
As motor oil ages in use, the additives are consumed, and the oil picks up water, sludge and other contaminants. An oft-cited data point its that 1 gallon of motor oil can contaminate 1 million gallons of drinking water. Removal of water and light hydrocarbons such as fuel.
Methanol, like ethanol, is an alcohol with inherent issues such as its solubility in water and corrosiveness. About two-thirds of China’s methanol feedstock is produced from coal and the remainder from coking gas (a by-product of steel production) and natural gas. Methanol in China.
Due to the high water demand for biofuel production and limited treatment technologies, IntAct anticipates that such a system, if proven, will be in high demand as worldwide capacity and production increases significantly in the coming years. At the conclusion of Phase I, Eltron Research & Development, Inc.
There are a very limited number of instruments available to identify the processes that create particles in the upper troposphere,” said Wang. “We This is important, especially in the relatively clean upper troposphere. To make clouds, you need water to nucleate or freeze. The emission sources are limited up there.
This makes it a valuable resource for balancing the intermittency of renewable energy sources and for providing a clean energy solution across various sectors. This is primarily done through a process called electrolysis, which involves splitting water (H2O) into hydrogen (H2) and oxygen (O2) using an electric current.
Sources of clean and renewable energy are increasingly being integrated by utilities around the world. Basically, renewable energy , also known as clean energy or green energy, never runs out. It comes from natural sources that continuously regenerate, such as sunlight, wind, water (in motion), and geothermal. power generation.
A full list by state of the all the projects is available here. Los Angeles Department of Water and Power. The project will be implemented by a unique Texas not-for-profit corporation created to research, develop and implement smart grid clean energy systems. NSTAR Electric & Gas Corporation (MA). City of Painesville (OH).
According to a report by the UN’s Intergovernmental Panel on Climate Change, the margin of error in measuring emissions by DOEs can be as high as: 10% for the cement and fertilizer industries; 60% for the oil, gas, and coal industries; and. Offset Quality Initiative, Ensuring Offset Quality (July 2008), available at: [link].
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