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Waste Management, Inc. The strategic investment and alliance aims to expand the feedstock flexibility of Renmatix’s proprietary Plantrose process beyond rural biomass to include materials derived from cost-effective and readily available urban waste material such as that managed by Waste Management. Earlier post.).
BOTTLE Consortium Collaborations to Tackle Challenges in Plastic Waste: Create collaborations with the BOTTLE Laboratory Consortium to further the long-term goals of the Consortium and the Plastics Innovation Challenge. Partners include BASF and University of Georgia. Partners include InEnTec, Lululemon, and Waste Management.
The study, done with collaborators Wake Forest University and Georgia Institute of Technology and detailed in Chemistry Select , provides a pathway for inexpensive, environmentally benign and high value-added waste tire-derived products—a step toward large-scale biofuel production, according to ORNL co-author Parans Paranthaman.
These projects will improve the performance and lower the cost and risk of technologies that can be used to produce biofuels, biopower, and bioproducts from biomass and waste resources. Scale-Up of the Primary Conversion Reactor to Generate a Lignin-Derived Cyclohexane Jet Fuel. Microchannel Reactor for Ethanol to n-Butene Conversion.
Conventional large-scale gasto-liquid reactors produce waste-heat, reducing the energy. Natural Gas Reactor for Remote Chemical Conversion. Capturing this energy would reduce both waste. areas to convert otherwise wasted gas into usable chemicals that. conversion of natural gas to liquid fuels. If successful, this.
This system will use waste heat to treat a wide variety of waste streams at manufacturing facilities. process will reuse more than 50% of the facilities’ wastewater, decrease wastewater discharge, and recover significant amounts of industrial waste. Collaborators include Purdue University; Georgia Institute of.
Hydrocarbon-based biofuels made from non-food feedstocks, waste materials, and algae can directly replace gasoline and other fuels. The University of Tennessee-Knoxville, Georgia Institute of Technology, Pall Corporation, OmniTech International, and FuelCellsEtc will also participate in this project.
A team from Algenol and Georgia Tech calculated the life cycle energy and greenhouse gas emissions for three different system scenarios for this proposed ethanol production process, using process simulations and thermodynamic calculations. solar energy conversion efficiency for average incident sunlight energy levels in the United States.
This project will demonstrate the conversion of gaseous carbon wood wastes (terpenes) to renewable Terpenes SAF blending components. The ethanol will be converted to sustainable aviation fuel at LanzaJet’s Freedom Pines Fuels facility, in Soperton, Georgia. Viridos, Inc., “Pre-pilot MicroBio Engineering Inc.,
Such process intensification could boost manufacturing productivity while cutting costs and reducing waste. Department of Energy’s Savannah River National Laboratory in South Carolina and the Georgia Institute of Technology in Atlanta. of Adel; and the Iowa Energy Center.
wasted energy in plants into energy-dense fuel molecules. Concentrating Solar Power/Nuclear: High Efficiency Solar Electric Conversion Power Tower Abengoa Solar will develop a high efficiency solar-electric. conversion tower that utilizes new system architecture. unprecedented solar-to-fuel conversion efficiencies of more.
includes Georgia, Alabama, South Carolina and Tennessee, will provide first. gas-fueled school buses and solid waste collection vehicles and develop a. other fleets; create vehicle conversion inspection criteria; and train and. alternative fuel vehicle conversions, equipment safety, and fueling. Center for. Center, Inc.
Novel Biological Conversion of Hydrogen and Carbon Dioxide Directly into Biodiesel. Johnson Matthey will investigate the catalytic conversion of this microbial biodiesel into additional fuel molecules, most importantly jet fuel. of Georgia). OPX Biotechnologies Inc. NREL, Johnson Matthey Catalysts). per gallon.
The winning project proposals (by award amount) are: Metropolitan Atlanta Rapid Transit Authority, Georgia: $10,800,000. MARTA anticipates that the power produced by these photovoltaic panels will be sold to Georgia Power under their Distributed Generation Contract Program. The largest PV installation in Georgia. Of that, $26.5
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. Woody biomass, municipal waste potential.
The resulting roadmap uses the integration of genetic engineering with analytical chemistry tools to tailor the structure of lignin and its isolation so it can be used for materials, chemicals and fuels, said lead author Arthur Ragauskas, a professor in the School of Chemistry and Biochemistry at the Georgia Institute of Technology.
The goal of this research area is to research and develop the next generation of nuclear reactors that will produce more energy and create less waste. Georgia Institute of Technology - $1,046,277. Generation IV Reactor Research and Development (20 projects, $19,855,912). Idaho State University - $1,287,921.
Empower’s design will enable faster & more accurate power delivery than today’s power management hardware, which has not been able to keep up with the need for high-quality power in modern processors, an important source of wasted energy. Georgia Institute of Technology. Grid-Connected Modular Soft-Switching Solid State Transformers.
This work could be used to improve enzyme performance to better break down biomass and convert waste plant matter to renewable fuels and products. The new research, which focuses on the enzyme Cel7A that breaks down cellulose in plants to sugars, is detailed in a paper in the Proceedings of the National Academy of Sciences (PNAS).
Waste Heat Capture (2 projects). 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. WASTE HEAT CAPTURE. Biomass Energy (5 projects). Water (1 project).
This has led to improved biofuel productivity, higher economic returns, minimal waste production, and a lower carbon footprint. carbon fixation), such that the energy of the excess photons is wasted through non-photosynthetic processes. When they cannot be utilized efficiently they are wasted, normally through venting or flaring.
Researchers at Virginia Tech, Oak Ridge National Laboratory (ORNL), and the University of Georgia have produced hydrogen gas in a spontaneous, “one-pot” process using an enzyme cocktail, cellulosic materials from non-food sources, and water. Hydrogen production from cellodextrin and water by a synthetic enzymatic pathway.
Durable and affordable higher-temperature heat exchangers could make energy conversion much more efficient, which in turn could reduce fuel consumption, system footprint, capital and operational cost, and emissions. The waste heat from the device can be harvested for residential heating.
The company plans to expand production by region through a two-track approach of line conversion in ICE factories and new dedicated EV plant establishment. The proportion of global EV production is set to increase from 8% this year to 34% in 2030.
Compared to conventional electricity generation and transmission, CHP captures the otherwise wasted heat and makes it available for useful application. GENSETS project teams will develop advanced generators to produce electricity from piped-in natural gas while using the ‘waste’ heat to reduce the energy used by furnaces and water heaters.
Georgia Tech Research Corporation plans to develop and test MIL-101(Cr)-based sorbents in the form of powders, in composite polymer/MOF fibers and on the surface of monoliths. DOE Funding: $799,981; Non-DOE Funding: $199,995; Total: $999,976. MIL-101(Cr)-Amine Sorbents Evaluation Under Realistic Direct Air Capture Conditions. Susteon Inc.
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