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Researchers at the University of Delaware have shown that ruthenium deposited on titania is an active and selective catalyst for breaking down polypropylene into valuable lubricant-range hydrocarbons with narrow molecular weight distribution and low methane formation at low temperatures of 250 °C with a modest H 2 pressure. 1c00874.
The University of Delaware has signed the first license for its vehicle-to-grid (V2G) technology with AutoPort, Inc., Bi-directional power converter up to 18 kW. The company currently is completing four vehicles for the State of Delaware and expects to have the first 100 vehicles produced in the next 12 to 18 months, he said.
AC Propulsion will launch the conversion program by developing the electric propulsion system and conversion process for the full-size vans that are used by service fleets nationwide. The converted vans will run on electricity only and will charge directly from the power grid. Earlier post.). Earlier post.).
Researchers at the University of Delaware have developed an inexpensive bismuth?carbon carbon monoxide evolving catalyst (Bi-CMEC) that can be used in conjunction with ionic liquids to convert CO 2 to carbon monoxide (CO) using electricity. Carbon Capture and Conversion (CCC) Fuels Power Generation'
AC Propulsion and AutoPort , an automotive conversion, restyling and processing company, will partner in engineering, development and conversion to provide an Electric Vehicle conversion prototype and report for the United States Postal Service. AutoPort will convert the vehicle on-site at its facilities in New Castle, Delaware.
Researchers at Brookhaven National Laboratory (BNL) and the University of Delaware have developed a catalytic strategy to promote the selective breaking of a carbon-oxygen bond—an essential step the conversion of lignocellulsoic biomass via hydrodeoxygenation to fuels and chemicals. —Anibal Boscoboinik.
One way to mitigate high feedstock cost is to maximize conversion into the bioproduct of interest. This maximization, though, is limited because of the production of CO 2 during the conversion of sugar into acetyl-CoA in traditional fermentation processes. Wiedel, Jennifer Au, Maciek R. Antoniewicz, Eleftherios T.
As a result, there is a critical need to create new pathways for biofuel conversion that reduces carbon waste, prevents the loss of CO 2 emissions, and in turn, maximizes the amount of renewable fuel a conversion process yields. University of Delaware. The awardees are: LanzaTech, Inc. National Renewable Energy Laboratory.
Light-Material Interactions in Energy Conversion (LMI). Tailor the morphology, complex dielectric structure, and electronic properties of matter so as to sculpt the flow of sunlight and heat, enabling light conversion to electrical energy with unprecedented efficiency. Solid-State Solar-Thermal Energy Conversion Center (S3TEC).
Louisiana Governor John Bel Edwards and PBF Chalmette Refinery Manager Steven Krynski announced that the company is studying the possible conversion of an idled refinery unit into a renewable diesel production complex. Bernard Parish consider the project. PBF is one of the largest independent refining companies in the US.
distribution center and currently serves approximately 500 grocery stores in Virginia, Maryland, Delaware, West Virginia, Washington, D.C. The conversion to natural gas will reduce the fleet’s annual oil consumption by more than 1 million gallons and result in 1,300 fewer tons of greenhouse gas emissions.
One program, Reducing Emissions using Methanotrophic Organisms for Transportation Energy (REMOTE, earlier post ), provides $34 million to 15 projects to find advanced biocatalyst technologies that can convert natural gas to liquid fuel for transportation. process intensification approaches for biological methane conversion.
Researchers at the University of Delaware have developed a highly selective nanoporous silver catalyst capable of electrochemically reducing carbon dioxide to carbon monoxide with 92% efficiency. The carbon monoxide then can be used to produce synthetic fuels and chemicals. The researcher reported their findings in Nature Communications.
Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. Microchannel Reactor for Ethanol to n-Butene Conversion. Conversion of 2,3-Butanediol to Biojet Fuel: Scale-up and Technoeconomic Analysis of Energy-Efficient Separations and Fermentative Diol Production. University of Delaware.
The group investigating the production of bio-hydrocarbons will produce hydrocarbons by pioneering processes for chemically converting plant material and by natural microbial and fungal processes that are even less-explored. Quick conversion of biomass. Carpita, Maureen C. McCann, and Fabio H. Ribeiro, all from Purdue University.
The SEPTA buses will be deployed in the City of Philadelphia and surrounding suburbs of Delaware, Montgomery, Bucks, and Chester, supporting four million people living in and around southeastern Pennsylvania. The option uses electrification to power accessory components for additional fuel economy. Increases brake responsiveness.
The new superjunction structure will surpass the theoretical trade-off between on- resistance and breakdown voltage observed in conventional unipolar GaN, leading to more efficient and cheaper power converters. 3D-Printed Ceramic Thermocatalytic CO 2 Reactor with High Carbon Conversion and Energy Efficiencies - $3,100,104. UC Berkeley.
streamline the process by which green plants convert carbon. production of oil, which is stored in seeds and is convertible to. plants, and it is a liquid that can be extracted readily, separated, and converted into biodiesel fuel. converted into a fuel mixture that is comparable to diesel or. The team will. field trials.
However, they currently operate using ethanol fuel, converted into hydrogen and carbon monoxide prior to entering the fuel cell in a process called reforming. Developments from the project may be useful for other energy conversion technologies, such as ammonia production and high-temperature direct liquid fuel cells.
Dramatically increase our fundamental knowledge of the physical structure of biopolymers in plant cell walls to provide a basis for improved methods for converting biomass into fuels. Center for Direct Catalytic Conversion of Biomass to Biofuels (C3Bio). $20. Solar Energy Conversion in Complex Materials (SECCM).
The 16 REFUEL projects seek to develop scalable technologies for converting water and molecules from the air into energy-dense, carbon-neutral liquid fuels (CNLFs) using electrical energy from renewable sources. Renewable Electricity-Powered Carbon Dioxide Conversion to Ethanol for Storage and Transportation (Category 1) The Opus 12, Inc.
Delaware Transit Corporation, Delaware: $1,500,000. Solar Panel Installations at DTC facilities: Retrofits Delaware Transit Corporation facilities with solar panels, which will generate cost savings through fossil fuel energy reductions. Ames Transit Agency, Iowa: $1,600,000.
Today’s technologies for making biofuels all rely on photosynthesis—either indirectly by converting plants to fuels or directly by harnessing photosynthetic organisms such as algae. This process is less than 1% efficient at converting sunlight to stored chemical energy. Electrofuels: Biofuels from Electricity. Engineering E.
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. CARBON CAPTURE.
Highly Efficient Electrocatalysts for Direct Conversion Of CO2 To Chemicals, $250,000. Bio-based Insecticides from Thermochemical Conversion of Biomass, $100,000. Wilmington, Delaware). High-Power Oak Ridge Converter (ORC) for Extreme Fast Charging (XFC) Applications, $750,000. Framatome Inc. Lynchburg, Virginia).
A lot of parking lots have been converted to LED lights, and during that conversion, the electricity draw on that circuit was decreased, because the LEDs use less current, so you have a little excess capacity in that circuit, and if you tie into that, now you can cover things like cloudy days or rainy days much better.
Our PRIUS+ Project Photos PHEV Resources Global Warming Take Action News and Events Contact Us CalCars Frequently Asked Questions Jump to: Environmental Effects and Benefits Alternative Fuels Batteries PHEV Conversions Other Questions Note: This page is overdue for a major overhaul. PHEV Conversions to top What cars can be converted to PHEVs?
A lot of parking lots have been converted to LED lights, and during that conversion, the electricity draw on that circuit was decreased, because the LEDs use less current, so you have a little excess capacity in that circuit, and if you tie into that, now you can cover things like cloudy days or rainy days much better.
“I would say that electricity is a vastly superior fuel for the light vehicle fleet,” said Willett Kempton , a professor and alternative energy specialist at the University of Delaware. EFICIENCY OF ENERGY CONVERSION There is a law in science (more specifically, thermodynamics) that. The closest to that source is solar.
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