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At the hubs, which can be built at or near landfills, Raven SR will convert mixed and multiple organic wastes, including municipal solid waste, greenwaste, food waste, medical, paper, etc. Raven can also easily process natural and renewable gases alone or combined with solid waste. 22 CCR § 66260.10 Definitions).
Waste Management, Inc. 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.
volts (V) of water-splitting voltage with its novel low-cost electrolysis technology. HyperSolar’s research is centered on developing a low-cost and submersible hydrogen production particle that can split water molecules using sunlight, emulating the core functions of photosynthesis. HyperSolar, Inc.
The INEOS Bio waste-to-ethanol process, originally developed by BRI. Converting household organic wastes into bio-fuel and clean energy can deliver very attractive environmental and social benefits to the North East and the UK as a whole. Click to enlarge. Earlier post.). Earlier post.). million (US$5.9 million (US$3.7
has developed a proprietary catalytic process that transforms low-cost commercially available, or even waste by-product, renewable alcohols into renewable isoprene that would be expected to compete head-to-head on price with natural and petroleum-based chemical equivalents while reducing CO 2 emissions.
LanzaTech, a producer of low-carbon fuels and chemicals from waste gases, was awarded a $4-million grant by the Advanced Research Projects Agency-Energy (ARPA-E) as one of the 15 REMOTE projects ( earlier post ) receiving a combined $34 million to find advanced biocatalyst technologies that can convert natural gas to liquid fuel for transportation.
based company to assess the feasibility and optimal uses of SES’ gasification technology for the production of valuable green chemicals. The plants being contemplated are expected to have an attractive environmental footprint as they would process these waste streams with a low emissions profile. Synthesis Energy Systems, Inc.
Sakuu, the developer of Swift Print solid-state battery technology ( earlier post ), entered into a memorandum of understanding (MOU) with LiCAP Technologies , a provider of sustainable and scalable electrode coating solutions. Any trimmings or excess electrode film can be 100% recycled eliminating the costly waste removal operations.
Startup ClearFlame Engine Technologies announced a partnership with Alto Ingredients, a leading producer of specialty alcohols and essential ingredients, to conduct pilot demonstrations of ClearFlame’s solution for diesel engines using low-cost ethanol in Class 8 trucks.
Berlin-based Graforce Hydro GmbH, the developer of a plasma electrolyzer—the Plasmalyzer —is applying its technology for the highly efficient generation of hydrogen from industrial waste water. The technology we’ve developed is capable of cleaning wastewater and producing a low-cost, low-emission fuel from it.
the strategic investment arm of South Korea’s SK Group, was part of a $50-million investment in Fulcrum BioEnergy, a US-based waste-to-fuels company. Fulcrum produce biofuel on a commercial scale by chemically converting municipal solid waste (MSW) into transportation fuels.
(TDA) a $225,000 Phase II Small Business Innovation Research (SBIR) grant to develop a process aimed at producing biodiesel from low-costwaste feedstocks. After completion of their EPA Phase I SBIR contract, TDA determined that it can produce biodiesel from waste grease at a cost that is competitive with conventional diesel.
The University of Massachusetts Amherst recently granted a biofuels startup company, Anellotech , exclusive global rights to the university’s catalytic fast pyrolysis (CFP) technology developed by chemical engineer and UMass Amherst faculty member George Huber for producing renewable biogasoline and other biohydrocarbon fuels. Earlier post.).
Pilus Energy, a developer of biogas solutions has formed a strategic relationship with Singapore-based Horizon Fuel Cell Technologies, Pte. Distributed bio-hydrogen production using waste or waste-water as feedstock also offers the promise of a carbon-free solution for both urban environments and remote off-grid locations. .
The UK government is awarding £54 million to 15 projects to develop technologies that remove carbon emissions from the atmosphere. The funding comes under Phase 2 of the Direct Air Capture and Greenhouse Gas Removal technologies competition. CO 2 LOC technology. The competition is worth a total of £60 million (US$72 million).
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. The Louisiana facility is the company’s first major project. barrel per ton of feedstock.
million) construction costs for the first commercial plant in Europe using its waste-to-ethanol BioEnergy Process Technology. million gallons US) of carbon-neutral road transport fuel and generate more than 3MW of electricity for export from over 100,000 tonnes per year of biodegradable household and commercial waste.
Fulcrum BioEnergy, a clean energy company pioneering the creation of renewable, drop-in transportation fuels from landfill waste, successfully produced a low-carbon synthetic crude oil using landfill waste as a feedstock at its Sierra BioFuels Plant, the world’s first commercial-scale landfill waste-to-fuels plant.
and The Linde Group will expand their partnership to commercialize a new industrial-scale conversion technology needed to upgrade algae biomass into crude oil. Based upon our profound engineering expertise, we will contribute to further develop and scale up Sapphire’s algae-to-crude-oil technology. Sapphire Energy, Inc.
The US Department of Energy (DOE) announced up to $35 million in funding for bioenergy feedstock technologies and algae research and development. ( Topic Areas include: Characterization of Municipal Solid Waste (MSW) to Enable Production of Conversion-Ready Feedstocks (up to $15M).
Virgin Atlantic announced the development of a low-carbon, synthetic jet fuel kerosene produced from industrial waste gases with half the carbon footprint of the standard fossil fuel alternative in partnership with LanzaTech and Swedish Biofuels. convert the resulting ethanol into a synthetic jet fuel. The fuel production.
The first-of-its-kind continuous catalytic process was designed to reduce production costs relative to batch chemistry, the prior state-of-the-art technology. With this research, we looked to make a new biofuel conversion process that is relevant and applicable to renewable and waste-to-energy technology.
Researchers at the University of California, Riverside’s Center for Environmental Research and Technology (CERT) at the Bourns College of Engineering have received two grants to further explore a steam hydrogasification process they developed to convert waste into fuels. diesel, gasoline, jet) at lowcost.
Waste Management and Genomatica, an industrial biotech company targeting sustainable chemicals ( earlier post ), have formed a strategic joint development agreement to research and advance Genomatica’s technology and manufacturing processes to enable production of intermediate and basic chemicals from syngas made from municipal solid waste.
Part-funded by the UK’s Technology Strategy Board as part of its Low-Carbon Vehicles initiative, the Flybus consortium brings together bus maker Optare, engineering consultancy Ricardo and traction drive technology specialist Torotrak. The project is due to publish the results of testing next year.
However, managed EV adoption can reduce the cost of achieving GHG reductions through a RES, they concluded in their paper published in the ACS journal Environmental Science & Technology. Understanding these linkages provides a basis for developing energy strategies with consideration of cost, technology, and policy goals.
The United States Department of Agriculture (USDA) awarded Microvi Biotechnologies a grant to develop a new technology to improve significantly the yield and performance of biobutanol processes. Based on preliminary investigations, Microvi’s technology has shown substantial increases in the titer of butanol over its solubility limit.
The new ARPA-E selections focus on accelerating innovations in clean technology while increasing US competitiveness in rare earth alternatives and breakthroughs in biofuels, thermal storage, grid controls, and solar power electronics. REACT: Rare Earth Alternatives in Critical Technologies ($31.6 This technology could then be.
At the basic level, our strategy is simple: pair the best technology with the right application—whether that’s an electrified ride to school, a hydrogen-fueled big rig, or a commercial flight powered by low-carbon biofuel. New technologies, fuels, and business models are on the horizon, forcing a reevaluation of “normal.”.
US Secretary of Energy Dan Brouillette announced $139 million in federal funding for 55 projects across the country that will support new and innovative advanced vehicle technologies (DE-FOA-0002197, earlier post ). Support mobility technologies such as connected and automated vehicles, as well as innovations in transit. Federal share.
ARPA-E’s first funding opportunity, “OPEN 2009,” was issued three years ago and was similarly an open call for transformational energy technology solutions. technology with advanced catalysts. Conventional large-scale gasto-liquid reactors produce waste-heat, reducing the energy. Capturing this energy would reduce both waste.
The US Department of Energy (DOE) is awarding more than $55 million to 31 new projects to accelerate research and development of vehicle technologies that will improve fuel efficiency and reduce costs under a program-wide funding opportunity announced in January. (DE-FOA-0000991, developing beyond Li-ion battery technologies.
The collaboration aims to attain mutual recognition of the future integration of Nanoramic and RecycLiCo technologies in commercial operations. The collaboration aims to attain mutual recognition of the future integration of Nanoramic and RecycLiCo technologies in commercial operations.
The US Department of Energy (DOE) announced $33 million in funding to support innovative hydrogen and fuel cell research & development (R&D), infrastructure supply chain development and validation, and cost analysis activities. ( Efforts in both areas are to be coordinated with the Million Mile Fuel Cell Truck consortium.
Under the FOCUS program, projects will develop advanced solar converters that turn sunlight into electricity for immediate use, while also producing heat that can be stored at lowcost for later use as well as innovative storage systems that accept both heat and electricity from variable solar sources. Gas Technology Institute.
The primary goal of this funding opportunity ( DE-FOA-0000949 ) is to provide disruptive new solar conversion and storage technology options to enable a much higher penetration of solar energy generation into the US energy mix. Schematics of technology areas addressed by the FOCUS FOA. b) Hybrid storage system (award Category 2).
million to 34 small businesses to develop innovative, sustainable technologies to protect human health and the environment. EPA’s Small Business Innovation Research (SBIR) program was established to ensure that new technologies are developed to solve priority environmental problems. Essentially any biomass material or solid waste (e.g.,
The company integrated five of its 200W TEGs into a single 1,000 W diesel engine solution that directly converts exhaust waste heat into electrical energy to increase fuel efficiency and lower costs. An automotive TEG is intended to improve fuel economy by power from waste heat to reduce the electric generator load on the engine.
GMZ Energy’s proprietary platform technology enables the low-cost manufacturing of bulk thermoelectric materials. The unique properties of half-Heusler materials combined with proprietary module fabrication techniques enable scalable, low-cost manufacturing of half-Heusler modules yielding a cost per watt below $1.00
Neste, the leading producer of renewable diesel, UK-based chemical recycling company ReNew ELP, and Australian technology developer Licella are collaborating in a development project to explore the potential of using mixed waste plastic as a raw material for fuels, chemicals, and new plastics. Earlier post.). Earlier post.).
Cobalt Technologies, a company using strain development and bioprocess technology to optimize biobutanol production ( earlier post ), and American Process Inc. Meanwhile, Cobalt’s technology will demonstrate that these sugars can also produce butanol. Overview of Cobalt’s process. Click to enlarge. Click to enlarge.
Hamid Mohsenian-Rad of University of California, Riverside will receive $95,000 to determine the optimum balance of active and reactive power in plug-in electric vehicles to achieve lower energy costs and improve power distribution networks. The technology has the potential to save energy and help the state achieve its bioenergy goals.
The European Union-funded PowerDriver project—a two-year, €3-million (US$4-million) research project initiated in February 2012 to turn exhaust gas waste heat into electricity using thermoelectric generator (TGEN) technology—has completed simulation work on on a potential automotive application.
million, 18-month contract by Logos Technologies to design a more economical and renewable jet fuel (BioJet) production solution for the Defense Advanced Research Projects Agency (DARPA). SoluPro, a bio-products process that converts inexpensive protein-bearing waste material into animal feed and green commercial adhesives.
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