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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.”. —Assistant Secretary for Fossil Energy Steven Winberg.
South Africa state-owned power utility Eskom reports that a design study is currently under way for an underground coal gasification (UCG) demonstration plant, which will include a 250,000 Nm 3 /h gas production plant and a 100 MW to 140 MW gas turbine plant. The coal seam lies between 280 m and 300 m deep.
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.
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. Osaki CoolGen Corporation is a 50-50 joint venture between Chugoku Electric Power Co, Inc.
(Beijing Guoneng) has awarded KBR a contract to provide licensing, engineering services and proprietary equipment for the implementation of KBR’s and Southern Company’s Transport Integrated Gasification technology (TRIG) at a power plant operated by Dongguan Tianming Electric Power Co., that is managed and operated by Southern Company.
Stroll, play, talk, celebrate -do whatever you want on the public street without sucking up gas fumes or fearing for your life from drunk drivers, texting drivers, drivers eating or putting on makeup or just plain dangerous behind the wheel lunatics. It’s long been time to kick coal out of L.A.’s
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. If biogas is substituted for conventional natural gas, total GHG emissions can further significantly reduced (190 gCO 2 /mile). Process flow diagram. Source: SRI.
Haldor Topsoe A/S announced that Huineng, a large-scale SNG (Substitute Natural Gas) plant, went successfully on-stream near the city of Ordos, located in Inner Mongolia in the northern part of China. The Huineng SNG plant is owned and operated by the private Chinese company Huineng CoalElectricity Group and represents an investment of US$1.1
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. Gas Technology Institute. DOE Investment: $988,000; Recipient Cost-Share: $828,000.
The US Department of Energy (DOE) has granted Reaction Design one of seven awards for a project intended to support the full-scale implementation and operation of highly efficient coal-based power generation technologies with near-zero emissions. Reaction Design also leads the Model Fuels Consortium. Earlier post.).
will market energy-efficient coal-fired power plants in Asia, leveraging a bilateral emissions offset mechanism between Japan and other countries that enables Japan to receive carbon reduction credits in return for providing low-carbon technologies and equipment. Marubeni’s technology is designed to increase power plant efficiency.
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 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.).
The US Department of Energy has selected 7 projects to participate in the University Coal Research (UCR) program. The projects aim to improve the basic understanding of the chemical and physical processes that govern coal conversion and utilization, by-product utilization, and technological development for advanced energy systems.
Australia’s Syngas Limited has engaged Rentech to provide Fischer-Tropsch fuels production preliminary engineering services for Syngas’ proposed commercial scale coal and biomass to liquids (CBTL) fuels facility in Southern Australia, known as the Clinton Project. Gas Conditioning. Additionally, the Clinton coal fluidizes well.
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.
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. of global electricity demand. Credit: Chen et al.,
Comparison of coal consumption and CO 2 emissions for co-production and separate production of liquids and power. Conventional CTL plant gasifies coal to produce a syngas which is then converted in a Fischer-Tropsch reactor to products. The liquids output capacity of CTL plants is 50,000 barrels/day. Source: Mantripragada and Rubin.
A new study by Michael Wang and Jeongwoo Han at Argonne National Laboratory and Xiaomin Xie at Shanghai Jiao Tong University assesses the effects of carbon capture and storage (CCS) technology and cellulosic biomass and coal co-feeding in Fischer-Tropsch (FT) plants on energy use and greenhouse gas (GHG) emissions of FT diesel (FTD).
gasified coal—by eliminating the coking problem. The resulting lower-temperature SOFCs could provide a cleaner, more efficient alternative to conventional power plants for generating electricity from coal reserves. An open access paper on their work was published 21 June in the journal Nature Communications.
The system uses proprietary technology to autonomously orchestrate the lifting and lowering of the bricks, storing the potential energy in the elevation gain, and generating then discharging electricity as the bricks are lowered. DGF replaces the coal gasification used by others with biomass gasification and natural gas reforming.
The Los Angeles Department of Water and Power (LADWP) has taken steps to transition out of the use of coal-fired electricity earlier than mandated by California state law. LADWP currently owns a 21% interest in the 2250 megawatt (MW) Navajo Generating Station, receiving 477 MW of coal-fired power from the plant.
In regions where the share of coal-based electricity is relatively low, EVs can achieve substantial GHG reduction, the team reports in a paper in the ACS journal Environmental Science & Technology. According to the 12 th Five-Year Plan of the China Coal Industry (2011?2015)
Australia’s CSIRO (Commonwealth Scientific and Industrial Research Organization, Australia’s national science agency) and Australia Pacific LNG (a coal seam gas to LNG joint venture between Origin and ConocoPhillips) have launched a new research alliance to support the development of the coal seam gas (CSG) industry.
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 ). A downside of AFCs has been CO 2 contamination of the electrolyte, reducing efficiency.
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 DOE will not consider testing on natural gas flue gas.
The US Department of Energy (DOE) has selected four advanced coal gasification projects for funding of up to $5.9 The projects will test membrane technology to separate hydrogen and carbon dioxide (CO 2 ) from coal or coal/biomass-derived synthesis gas (syngas), such as from Integrated Gasification Combined Cycle (IGCC) power systems.
Syngas Limited has raised A$530,000 (US$532,000) via a share placement to contribute toward the continued development of the proposed coal-and-biomass-to-liquids Clinton Project in South Australia. Coal is the primary feedstock, supplemented with non-food biomass to reduce carbon emissions. Gasification. Air Separation.
The US-China Electric Vehicles Initiative builds on the first-ever US-China Electric Vehicle Forum in September 2009. The two leaders emphasized their countries’ strong shared interest in accelerating the deployment of electric vehicles in order to reduce oil dependence, cut greenhouse gas emissions and promote economic growth.
has been chosen to provide the coal gasification technology for the Taylorville Energy Center (TEC), a 730-megawatt (gross) advanced coal generating plant being developed near Taylorville, Ill. TEC will be one of the first commercial-scale, coal gasification plants with carbon capture and storage (CCS) capability in the US. .
Project is a public-private partnership formed for the purpose of developing the world’s first commercial-scale, coal-fueled oxy-combustion electric generation project integrated with carbon capture and geologic storage. Earlier post.) The FutureGen 2.0 Project (DOE/EIS-0460). For the FutureGen 2.0 Click to enlarge. million tons (1.1
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. General Electric Company. Columbia University, and ATS Rheosystems/REOLOGICA.
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.
Even if you have 100 percent capture from the capture equipment, it is still worse, from a social cost perspective, than replacing a coal or gas plant with a wind farm because carbon capture never reduces air pollution and always has a capture equipment cost. In both plants, natural gas turbines power the equipment.
Ignite Energy Resources (IER), developer of a supercritical water technology, and TRUenergy have entered into a Memorandum of Understanding (MoU) to develop a commercial demonstration plant that will apply IER’s direct coal-to-oil and upgraded dry coal process to the brown coal at TRUenergy’s Yallourn mine in Australia.
The system also holds the potential to reduce the cost of producing chemicals, transportation fuels, and substitute natural gas from gasified coal. The system also holds the potential to reduce the cost of producing chemicals, transportation fuels, and substitute natural gas from gasified coal. Background.
Valued at approximately $67 million (including $15 million in non-federal cost sharing) over four years, the overall goal of the research is to develop CO 2 capture and separation technologies that can achieve at least 90’ CO 2 removal at no more than a 35’ increase in the cost of electricity. Neumann Systems Group, Inc.:
million) ammonia cracker prototype designed to produce green hydrogen at industrial scale. The prototype will use ammonia to deliver 200kg of hydrogen a day—enough to power around 5-10 hydrogen fuel cell-electric buses. We have just 13 years to deliver a net-zero electricity grid for the UK. million (US$4.24 Source: CSIRO.
The EMS (Earth and Mineral Science) Energy Institute at Penn State has developed a conceptual novel process configuration for producing clean middle-distillate fuels from coal with some algal input with minimal emissions. Principal inputs are coal, water, non-carbon electricity, and make-up solvent. EMS Energy Institute process.
The TCEP would integrate coal gasification, combined-cycle power generation, CO 2 capture, and. We now have sales commitments in place for all three of TCEP’s main commercial products—electric power, urea for fertilizer, and CO 2 for enhanced oil recovery—and that is obviously key to getting this project underway.
The strategy is centred around two main technology routes, as introduced in the first ArcelorMittal Europe climate action report published earlier this year: The use of hydrogen in DRI-EAF (Direct Reduced Iron - Electric Arc Furnace) and, also, the blast furnace. The expansion of its Smart Carbon route, also utilizing hydrogen.
Researchers from the University of Birmingham have designed a novel adaptation for existing blast furnaces that could reduce CO 2 emissions from the steelmaking industry by nearly 90%. The novel recycling system captures the CO 2 from the top gas and reduces it to CO using a perovskite crystalline mineral lattice. Kildahl et al.
The Hydrogen Energy Supply Chain ( HESC ) project will convert brown coal from the AGL Loy Yang mine into hydrogen at an adjacent site and then transport the gas by road in high pressure tube trailers to a liquefaction terminal at the Port of Hastings. The liquefaction process will cool the hydrogen gas to ?253°C
A detailed study by researchers from China and the US has concluded that Fischer-Tropsch synthetic liquid fuels (FTL) are typically less costly to produce when electricity is generated as a major coproduct than when the plants are designed to produce mainly liquid fuels. published in the ACS journal Energy & Fuels.
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