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By using a water-lean post-combustion capture solvent, (N-(2-ethoxyethyl)-3-morpholinopropan-1-amine) (2-EEMPA), they achieved a greater than 90% conversion of captured CO 2 to hydrocarbons—mostly methane—in the presence of a heterogenous Ru catalyst under relatively mild reaction conditions (170 °C and 2 pressure). Heldebrant, D.,
The two main components—the electrochemical conversion hardware through which the fluids are flowed (which sets the peak power capacity) and the chemical storage tanks (which set the energy capacity)—may be independently sized. The design permits larger amounts of energy to be stored at lower cost than with traditional batteries.
LeMond Composites, founded by three-time Tour de France champion Greg LeMond, has licensed a low-cost, high-volume carbon fiber manufacturing process developed at the US Department of Energy’s Oak Ridge National Laboratory (ORNL). Earlier post.)
A team led by Dr. Michael Grätzel at EPFL (Ecole Polytechnique Fédérale de Lausanne) in Switzerland has developed a highly efficient and low-cost water-splitting cell combining an advanced perovskite tandem solar cell and a bi-functional Earth-abundant catalyst. Jingshan Luo, post-doctoral researcher, explains how. Credit: EPFL.
a cellulosic sugar producer ( earlier post ), has signed a letter of intent with China-based Global Bio-chem Technology Group Company Limited to develop and to commercialize processes to convert corn stover to industrial sugars for use in the production of chemicals, fuels, and other bio-based products. Edeniq, Inc.,
and The Linde Group will expand their partnership to commercialize a new industrial-scale conversion technology needed to upgrade algae biomass into crude oil. The agreement spans a minimum of five years through the development of Sapphire Energy''s first commercial scale, algae-to-energy production facility.
Conversion method. the largest US-based provider of synthetic genes for industrial and academic customers. This technology is critical for functional testing of mined sequences and building synthetic pathways in industrial host organisms. Carbon feedstock. Theoretical diesel yield (g/g). Photosynthesis. Sugar/biomass.
Solid Power’s proprietary sulfide solid electrolyte powers the flexible All-Solid-State Platform that can enable both high-content silicon and lithium metal in the anode paired with industry-standard and commercially mature cathodes, including lithium nickel manganese cobalt oxides (NMC).
Electrochaea GmbH, a European provider of renewable methane technology, has established a California-based US subsidiary, Electrochaea Corporation, to accelerate the commercial roll-out of its technology in North America. The strain of archaea used in Electrochaea’s P2G process has been adapted for industrial application by Prof.
India-based Praj Industries Limited and Qteros, Inc., the developer of a Consolidated Bioprocessing (CBP) platform for low-cost production of cellulosic ethanol using the Q-microbe ( earlier post ), have formed a strategic partnership to accelerate commercialization efforts for industrial-scale cellulosic ethanol production.
The conversion rate reaches 32.9 ± 1.38 This one-step nitrogen-fixation strategy to produce ammonia is eco-friendly and lowcost, which converts widely available starting materials into a value-added product. The resulting splash of microdroplets enters a mass spectrometer and is found to contain ammonia (NH 3 ). Song et al.
the largest EPC companies in Brazil specializing in sugar cane processing, and GeoSynFuels, LLC (GSF) recently formed a strategic alliance for the development and commercialization of GSF’s proprietary cellulosic ethanol technology. The process has the potential to provide new coproduct ethanol revenues to both industries. Source: GSF.
Joule has developed a highly modular system using highly engineered photosynthetic organisms to catalyze the conversion of sunlight and CO 2 directly to liquid hydrocarbons and ethanol ( earlier post ). —William J. Sims, President and CEO of Joule. gallon without subsidies. gallon without subsidies.
DE-FOA-0002423 ) Topic Areas ins the FOA support DOE’s Bioenergy Technologies Office’s (BETO’s) objectives to reduce the minimum selling price of drop-in biofuels, lower the cost of biopower, and enable high-value products from biomass or waste resources. Development of novel methods for rapid/real-time measurements.
million to six research projects to help find ways of converting CO 2 captured from emissions of power plants and industrial facilities into useful products. Total value of the projects, including cost sharing, is approximately US$5.9 Tags: Carbon Capture and Conversion (CCC) Emissions. million over two to three years.
This project will expand Anovion’s existing manufacturing capacity in Sanborn, NY—notably the only qualified US source of battery-grade synthetic graphite commercially shipping product today. The project will build a new plant in Chattanooga to produce 30,000 metric tons per year of graphite targeted at the electric vehicle industry.
The new work outlines a research program to improve the efficiency of these systems, and could quickly lead to the production of a practical, inexpensive and commercially viable prototype. The original demonstration leaf in 2011 had low efficiencies, converting less than 4.7% Earlier post.) of sunlight into fuel. —Winkler et al.
million to 10 industry-led projects to advance nuclear technologies, including two aimed at expanding clean hydrogen production with nuclear energy. A well-established downstream syngas-to-synfuel conversion process, such as Fischer-Tropsch synthesis, converts the syngas to liquid synfuel for a total projected cost of less than $4/gallon.
In a 2012 presentation, the inventors said that the direct conversion process delivers a liquid hydrocarbon fuel yield of ~54-55% at 310°C, with ~6-7% ethylene and ~39% water byproducts, making the technology more cost-effective than previous approaches. Catalytic conversion of to hydrocarbons (2012). —Chaitanya Narula.
The research follows government and industry investment to create infrastructure and markets for carbon-free liquid ammonia fuel that will not contribute to greenhouse warming. This discovery paves the way for sustainable, low-cost hydrogen that could be produced locally rather than in massive centralized plants.
With a $2-million grant from the California Energy Commission (CEC), Berkeley Lab is partnering with Alphabet Energy to create a cost-effective thermoelectric waste heat recovery system to reduce both energy use in the industrial sector and electricity-related carbon emissions.
These investments will accelerate the commercialization of CE’s proven Direct Air Capture (DAC) technology that removes CO 2 directly from the air and subsequently synthesizes it into clean transportation fuels. CE has been developing DAC technology since 2009 and capturing CO 2 from the atmosphere at a pilot plant in Squamish, B.C.
In August, a groundbreaking ceremony was held in Ovadan-Depe near the capital of Ashgabad in Turkmenistan to launch the construction of a major plant focused on the conversion of natural gas into synthetic gasoline. DCK-10 ensures high oxygenate conversion rates. Topsoe Gasoline Synthesis Catalyst GSK-10.
Researchers in Europe, with colleagues from Samsung R&D Institute in Japan, have developed a highly stable Fe 3 O 4 /C composite for use as a conversion electrode in all-solid-state Li-ion batteries. In addition, recently a new chemistry has surfaced, allowing to store more Li + by the so-called conversion mechanism.
HyDeal LA is a collaboration of developers, green hydrogen off-takers, integrators, equipment manufacturers, investors, and advisors coalescing to overcome the biggest barrier to the green hydrogen economy—its high cost—by launching a commercial green hydrogen cluster at scale. kg before 2030.
Once the new screening process is proven, it can be used to rapidly develop tailored cost-effective enzyme solutions for specific industrial biorefineries. Development of a Commercial-Ready Enzyme Application System for Ethanol: $12.3 The product enables cost-efficient conversion of biomass to ethanol and performs 1.5
Efficiency improvements and carbon emissions reduction in energy conversion and storage technologies. HPC Modeling of Rapid Infrared Sintering for LowCost, Efficient Solid Oxide Electrolyzer Cell Manufacturing. Carbon Nanospike Based Photoelectrochemical CO2 Conversion. Improvements in the lifecycle energy consumption?and
Establishment of a biofuel industry in China is therefore an attractive solution to manage the problems of environmental pollution, energy independence and rural development within the transport sector. In its development of biofuel policy, China’s 10 th five-year plan (2001–2005) proposed a biofuel industry to utilize surplus grain stocks.
The bioreactor technology is under development for efficient methane-to-liquids fermentation processes, enabling rapid, cost-effective methane conversion into protein, industrial chemicals and fuels. Calysta develops sustainable industrial products using novel natural gas conversion technology using methane.
Light-weighting materials : Five projects awarded to accelerate commercial availability of lighter weight vehicles using advanced materials that dramatically reduce vehicle weight while maintaining the highest safety standards. This project will develop a new process that enables low-cost, domestic manufacturing of magnesium.
The catalyst is also readily applicable to other energy storage and conversion systems, including metal-air batteries, supercapacitors, electrolyzers, dye-sensitized solar cells, and photocatalysis. An open-access paper on their work appears in the journal Joule. This work demonstrates that a multi-phase catalyst coating (? —Chen et al.
Natural Gas Reactor for Remote Chemical Conversion. sunlight through low-cost, plastic light-guiding sheets and then. gas, the first step in the commercial process of converting natural. Turbo-POx For Ultra Low-Cost Gasoline. conversion of natural gas to liquid fuels. If successful, this. liquid fuel.
The platform technology is also being commercialized for conversion of waste brines to chemicals and desalinated water. Mangrove also says that its technology can reduce lithium hydroxide production costs from lithium brines by as much as 45%. —Mangrove’s CEO Saad Dara.
The research is part of a broad effort to identify scalable and commercially viable solutions to help meet increasing global energy demand with a renewable resource. UW-Madison has long been known for its expertise in biomass conversion. Colorado School of Mines and Michigan State.
SES), a global energy and gasification technology company that provides products and solutions to the energy and chemicals industries, has entered into a Technical Study Agreement with Ambre Energy of Australia to supply a proprietary gasification design to support Ambre’s development of a planned Coal to Liquids Project (ambreCTL).
This workshop will address the challenges and opportunities associated with developing low-cost electrical generator sets (gensets) with very high energy-conversion efficiency. The primary goal of the workshop is to identify the most challenging technological barriers to achieving very high efficiency low-cost gensets.
The US Department of Energy announced $35 million in awards for 12 projects that find new ways to harness medium-voltage electricity for applications in industry, transportation, on the grid and beyond. A consortium of industry partners will guide the design process and advise on commercialization.
points to a potential production cost as low as $2.28/gallon Liter) for gasoline or diesel using a blend of algae and waste feedstocks, using the latest growth, harvesting and fuel conversion technologies from OriginOil and other innovators. This cost roughly doubles to $5.44/gallon gallon ($0.60/Liter) gallon ($1.44/Liter)
Illustration of non-catalytic biodiesel conversion Credit: ACS, Kwon et al. conversion efficiency to FAME (fatty acid methyl ester) within 1 minute in a temperature range of 350–500 °C. Despite the bright prospect of biodiesel production, efforts to commercialize it have been very limited. 75% of the total production costs.
Bright Automotive launched eSolutions with a just-announced contract from the US Army TACOM to conduct a demonstration project on a low-cost plug-in hybrid electric solution for non-tactical military vehicles. The IDEA is a multi-purpose, plug-in hybrid electric vehicle aimed at commercial and government fleets. Conversions.
This imperative bumps up against the lack of space in urban areas for fast, flexibly scalable, low-cost installation of readily accessible public charging stations. Its market includes industrial and commercial customers, vehicle fleet operators, the real estate sector, as well as local governments and public utilities.
IFP Energies nouvelles (IFPEN) and its subsidiary Axens have formed a strategic alliance to develop and to commercialize a new technology for the lowcost production of bio-based benzene, toluene and paraxylene using Anellotech’s process of Catalytic Fast Pyrolysis (CFP) of non-food biomass. Anellotech Inc., Earlier post.).
Four projects were selected under this topic to validate improved upstream extraction and midstream separation and processing technologies of critical materials at scales that facilitate the next step to commercialization. Topic 2, Area of Interest 2: Conversion to Rare Earth Metals (RE-metals).
Pinto Energy LLC (Pinto), a developer of smaller scale Gas-to-Liquids (GTL) facilities, will build a 2,800 barrel per day (bpd) GTL plant at Pinto’s 80-acre industrial site to the east of Ashtabula, Ohio. The company has agreed to commercial license terms with Velocys and made a down payment towards the FT reactors.
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