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San Juan River-Raton-Black Mesa Basin (Arizona, Colorado and New Mexico): New Mexico Institute of Mining and Technology plans to determine the rare earth elements and critical minerals resource potential in coal and related stratigraphic units in the San Juan and Raton basins in New Mexico. DOE Funding: $1,204,129. DOE Funding: $1,499,999.
Accelergy Corporation has begun production of a synthetic fuel from coal and biomass, to be evaluated by the United States Air Force (USAF) as the industry benchmark for 100% synthetic jet fuel. Tags: Aviation Biomass CoalCoal-to-Liquids (CTL) Fuels. Groenewold, Director of the EERC. Camelina oil.
million in federal funding to develop conceptual designs of commercially viable technologies that will extract rare earth elements (REEs) from US coal and coal by-product sources. University of NorthDakota (Grand Forks, ND). Each project will receive up to $150,000 in DOE funding. Tetra Tech, Inc. Tetra Tech, Inc.
The universities—located in Georgia, Texas, NorthDakota, Louisiana, California, and New York—will investigate the technology needed for the efficient operation of turbines using coal-derived synthesis gas (syngas) and high hydrogen content (HHC) fuels. University of NorthDakota , Grand Forks, N.D.
and NuCoal Energy Corporation recently executed a Memorandum of Understanding (MOU) wherein Sparton and NuCoal will jointly evaluate the potential of NuCoal’s lignitic coal holdings in Saskatchewan to host commercial germanium and uranium mineralization. The quantities are dependent on the amounts of metal contained in the coal feedstock.
The selected projects are intended to improve the economics of IGCC plants and promote the use of the US’abundant coal resources. For example, a 60%-efficient gasification power plant can cut the formation of carbon dioxide by 40% compared to a typical coal combustion plant, the DOE said.
In a project ( DE-FC26-04NT42237 ) funded by the US Department of Energy’s Office of Fossil Energy, Pratt & Whitney Rocketdyne has developed a high-pressure dry-solids feed pump that could make gasification economically competitive by improving efficiencies and introducing low-rank Western coal as a viable feedstock option. Source: NETL.
The 24-month, $945,000 grant is focused on the design and demonstration of a one ton per day OmniGas gasifier to process biomass, coal, and blends thereof. OmniGas uses a patent-pending molten slag approach to produce syngas that can be used by more than 14,000 US industrial consumers of large volumes of natural gas. Earlier post.).
The two projects selected—an existing power plant in NorthDakota 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).
The TCEP would integrate coal gasification, combined-cycle power generation, CO 2 capture, and. Whiting will be the first in the Permian to purchase CO 2 from a power project that will be produced through the coal-gasification process. The TCEP integrates coal gasification, combined-cycle power generation, CO 2 capture, and.
The Energy & Environmental Research Center (EERC) at the University of NorthDakota, in partnership with Cummins Power Generation, Inc., has begun a project to demonstrate the production of heat and power from high-moisture biomass.
Under this cost-shared research and development (R&D), DOE is awarding $51 million to nine new projects for coal and natural gas power and industrial sources. Many of these R&D efforts can be applied across both the energy and the industrial sectors. AOI 1 (Subtopic 1.1): CO 2 Capture and Compression from Industrial Sources.
The Energy & Environmental Research Center (EERC) at the University of NorthDakota also has been awarded a subcontract by Science Applications International Corporation (SAIC) to help produce 100% renewable jet fuel from algae. Actual usage in the fleet will depend on industry production capability. Earlier post.)
The universities will develop solutions to specific technical challenges and barriers that must be overcome to enable the development of advanced gas turbines and gas turbine-based systems that will operate reliably, cleanly, efficiently, and cost effectively when fueled with coal-derived hydrogen, synthesis gas (syngas) and natural gas fuels.
The projects will develop technologies for use in a new generation of advanced turbines that operate using coal-derived synthesis gas (syngas) and high hydrogen content (HHC) fuels. Physics-based design guides that can be used by the gas turbine industry to predict (and mitigate) flame holding tendencies will be developed.
If leak rates are too high, natural gas does not compare favorably with one alternative, coal, in terms of climate impact. The CIRES and NOAA team is planning another aircraft mission this spring, to expand emissions measurements from gas-producing regions stretching from Texas to NorthDakota. tons (33,000 lbs) per hour, or 0.18-0.41%
Solar is fledgling in South Dakota and not expected to grow – according to the Solar Energy Industries Association ( SEIA ), the state has 268 MW of installed solar. Bismarck, NorthDakota-based utility Basin Electric, which is purchasing Wild Springs’ solar power, went with the “all-of-the-above” line.
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