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The Oklahoma Corporation Commission (OCC) approved a rebate program that enables Oklahomans to receive rebates for the purchase of a. vehicle powered by compressed natural gas (CNG); conversion of a vehicle to CNG; and for the purchase of a residential CNG fueling system.
According to an analysis by the US Energy Information Administration (EIA), planned additions over the next two years to the US crude oil pipeline infrastructure should relieve the bottleneck at Cushing, Oklahoma which has been caused by the oversupply of oil resulting from the growth of crude oil production in the US mid-continent and Canada.
Partners include Husky, Miliken, the National Renewable Energy Laboratory, Niagra, Oklahoma State University, Under Armor, and Unifi. Iowa State University (Ames, IA) - Modular Catalytic Reactors for Single-Use Polyolefin Conversion to Lubricating Oils from Upcycled Plastics (LOUPs) – DOE Funding: $2,500,000.
and the City of Cushing, Oklahoma announced that Southern Rock Energy Partners, LLC (SREP) has selected Cushing as the site for its 250,000 BPD next-generation, full conversion crude refinery. Cushing is the most significant trading hub for oil in North America. The Cushing Economic Development Foundation, Inc.
In the United States, the transportation sector accounts for two-thirds of total US oil consumption and about one-third of total anthropogenic greenhouse gas emissions. Ceramatec will utilize an efficient electrochemical deoxygenation process to develop cost-effective technology to separate oxygen from bio-oil.
Comparison of the percent differential for WTW (well-to-wheel) GHGs from gasoline produced from WCSB oil sands using different production processes relative to gasoline produced from reference crudes. The proposed Project is not likely to impact the amount of crude oil produced from the oil sands. Source: FEIS, Appendix V.
Schematic illustration of the reactions taking place at the water/oil interface in the solid-stabilized emulsions. Researchers at the University of Oklahoma have developed a new family of solid catalysts that can stabilize water-oil emulsions and catalyze reactions at the liquid/liquid interface. Source: Crossley et al.,
The potential benefits of this research range from decreasing oil consumption to increasing options for American farmers. Bartley, University of Oklahoma, Norman. Goal: Identify natural genetic variation in switchgrass that correlates with lignocellulose-to-biofuel conversion qualities.
Researchers at Oklahoma State University are developing a novel natural Gas and Biomass to Liquids (GBTL) technology that will synergistically use biomass (e.g. Bio-oil produced from biomass fast pyrolysis technology can be converted into hydrocarbons; however, this process is challenging due to the instability of bio-oil.
USDA’s report identifies numerous biomass feedstocks to be utilized in developing biofuels and calls for the funding of further investments in research and development of: Feedstock; Sustainable production and management systems; Efficient conversion technologies and high-value bioproducts; and. Decision support and policy analysis tools.
The process also uses less than half the water per gallon than required for the production of gasoline from conventional crude, and about one-third to one-quarter of the water per gallon required for the production of gasoline from oil sands oil, Bolson said. On average, approximately 3.0
The University of Oklahoma (Norman, OK) plans to develop, build, and validate a low-cost, field-installable, remotely-controlled natural gas compressor retrofit kit. Modular System for Direct Conversion of Methane into Methanol via Photocatalysis. AOI 2A: Multifunction Catalyst. Gas to Carbon Fiber Crystals (G2-CFX).
RTI International will work with ADM, Albemarle and ConocoPhillips to develop a novel single-step catalytic biomass pyrolysis process with high carbon conversion efficiency to produce stable bio-crude oil with low oxygen content. Towards Scale Solar Conversion of CO 2 and Water Vapor to Hydrocarbon Fuels. DOE grant: $2,200,000).
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