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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. General Electric Global Research.
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.
and Renmatix, a manufacturer of biobased sugar intermediates for global chemical and fuel markets, have entered into a joint development agreement (JDA) to explore the feasibility of converting post-consumer waste into affordable, sufficient-quality sugars for manufacturing biobased materials using Renmatix’ supercritical hydrolysis technology.
SPX Service Solutions, a business unit of SPX Corporation ( earlier post ), and Aker Wade Power Technologies, LLC, a designer and manufacturer of advanced fast charging systems ( earlier post ), signed a letter of intent jointly to develop a new family of practical electric vehicle (EV) fast chargers for the global vehicle market.
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.) Thom Mason, Oak Ridge National Laboratory Director.
a global supplier of hydrogen fuel cell-powered commercial vehicles, announced a joint venture to build up to 100 hydrogen hubs across the United States and globally. With our leading fuel cell technology, we are working closely with partners to scale up hydrogen production in the US and globally.
Conversion method. Using Calysta’s low-cost, high capacity gene synthesis technology, multi-component multi-gene pathways demonstrating optimal industrial-scale performance can be produced with a minimum number of assays. Comparison of biofuel platform efficiency (source: Calysta Energy). Carbon feedstock. Photosynthesis.
Solid oxide electrolysis cell (SOEC) technology is attractive because of unrivaled conversion efficiencies—a result of favorable thermodynamics and kinetics at higher operating temperatures. The SOEC is mainly built of abundant and low-cost ceramic materials in a metal housing. The facility is expected to be operational by 2023.
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 ).
The storage battery market is expected to continue growing in light of the spread of renewable energy and electrified vehicles, as well as the global trend toward carbon neutrality.
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., Biomass Fuels'
Bosch process for the industrial synthesis of ammonia has, over the past century, led to a global revolution in agriculture to the extent that almost half the crops grown across the world today depend on ammonia-based fertilizers. The material costs, however, are very significantly less, the team observed. —David et al.
an advanced fuels and renewable chemical company, signed an expanded, global license agreement with Chevron Lummus Global (CLG) for the production of renewable jet and diesel fuel by the conversion of existing biofuels and petroleum refineries. —Leon de Bruyn, Managing Director of Chevron Lummus Global.
Combining biomass-to-energy for electricity or biofuel production with CO 2 capture and storage (Bio-CCS) could result in an annual global technical potential of up to 10 gigatonnes of negative CO 2 emissions in the year 2050, according to a study commissioned by IEA Greenhouse Gas R&D Programme to the global energy consultancy company Ecofys.
Such a plant would feed a 50,000 metric ton per year conversion plant to produce battery grade lithium hydroxide to support domestic manufacturing of the lithium-ion battery cells to power 750,000 electric vehicles per year. Ascend Elements , Apex – Integrated Sustainable Battery Precursor, $316,186,575. Gabriel, Louisiana, $100,000,000.
The Global Climate and Energy Project (GCEP) at Stanford University has awarded $10.5 The mineral perovskite is a promising, low-cost material for enhancing the efficiency of silicon solar cells. efficiency, low-cost silicon solar cells. Maximizing solar-to-fuel conversion efficiency in photo-electrochemical cells.
1 ) and ammonia conversion (>99%) at a significantly reduced operating temperature (. Although the need to build a global clean energy supply network has been noted worldwide, there are constraints when it comes to transporting renewable energy in the form of electricity across long distances. mol-H 2 g cat ?1 Credit: KIST.
Researchers in South Korea have developed a simple, low-cost and eco-friendly method of creating nitrogen-doped graphene nanoplatelets (NGnPs) with excellent catalytic performance in both dye-sensitized solar cells and fuel cells to replace conventional platinum (Pt)-based catalysts for energy conversion. —Jeon et al.
Unlike the electrode materials found in most lithium-ion batteries, Prussian blue enjoys a widespread availability and lowcost that make batteries based on Prussian blue electrodes an economically attractive, environmentally friendly technology. As a global leader in transportation energy services, Chevron has recognized this.
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.
In collaboration with NE, DOE’s Hydrogen and Fuel Cell Technologies Office will provide funding and project oversight for the two hydrogen production–related projects that were selected: General Electric Global Research, Scaled Solid Oxide Co-Electrolysis for Low-Cost Syngas Synthesis from Nuclear Energy.
Global Bioenergies has produced “second-generation” isobutene, in a push to diversify accessible feedstock towards cheaper resources. Various companies are presently de-bottlenecking the conversion of second-generation materials into fermentable sugars. —Frédéric Pâques, Chief Operating Officer at Global Bioenergies.
CE) has received equity investment from two global energy companies: Oxy Low Carbon Ventures, LLC (OLCV), a subsidiary of Occidental Petroleum Corporation; and Chevron Technology Ventures (CTV), the venture capital arm of Chevron Corporation. Canada-based Carbon Engineering Ltd. (CE)
Global Bioenergies is now entering the final phase of demonstrating its technology for converting renewable carbon into hydrocarbons. The first trials on the demo plant in Leuna were successfully completed, within schedule, in the fall of 2016 and Global Bioenergies announced first production of green isobutene via fermentation.
Green hydrogen and green ammonia co-firing are gaining attention as an eco-friendly and relatively lowcost solutions for existing thermal power plants that can significantly reduce greenhouse gas emissions. In addition, PEM electrolyzers are known for high energy density and moderate cost of maintenance.
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. India-based Praj Industries Limited and Qteros, Inc.,
We are pleased to join the HyDeal LA effort, which includes an innovative and expanding vendor and development community, to support and help catalyze the supply chain needed to achieve large-scale, low-cost green hydrogen power supply for our local in basin plants. —Martin Adams, General Manager and Chief Engineer at LADWP.
The recommendations to the German government include: developing subsidies and incentives to remove the “First Mover Disadvantage”; encouraging sources of low-cost capital to scale the industry, and underwriting equipment manufacturers expansion plans to meet developer’s needs.
The use of heavy fuel oils (HFOs) contributes to global warming due to the fossil origin of these fuels and, moreover, generating non-negligible emissions of pollutants such as sulfur oxides. Although cleaner fuels are available, many companies opt for HFOs due to their lowcost.
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
In support of the biomass fractionator, the company is also developing a range of one-step catalytic conversion processes which mate with the fractionator’s output gas streams to produce products such as eBTX (high octane gasoline), synthetic diesel and proprietary ultra-high crop yield “super” fuels. Click to enlarge.
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).
With large-scale, low-cost production of clean hydrogen, H2Teesside could support the conversion of surrounding industries to use hydrogen in place of natural gas, playing an important role in decarbonizing a cluster of industries in Teesside.
The plant will convert abundant low-cost natural gas from the Utica and Marcellus shale region into high-value specialty products (solvents, lubricants and waxes), as well as transportation fuels. Pinto has chosen to utilize Velocys Plc (Velocys) Fischer-Tropsch microchannel reactor technology. Fuels Gas-to-Liquids (GTL)'
High Performance, LowCost Superconducting Wires and Coils. for High Power Wind Generators The University of Houston will develop a new, low-cost. American Superconductor will develop a new, low-cost. advanced lowcost and efficient thermal storage for solar and. Global R&D). generation.
In 2011, China contributed 29% of world carbon dioxide emissions and therefore the country has a significant potential to influence the present and future global energy situation. Click to enlarge. As a result of this recalcitrance, a pretreatment stage is needed to maximise hydrolysis of cell wall sugars into their monomeric form.
Start-up Liquid Light, a developer of process technology to make major chemicals from low-cost, globally-abundant carbon dioxide ( earlier post ), has closed a $15-million Series B financing. New investors include Sustainable Conversion Ventures, which focuses on renewable fuels and chemicals investments.
At the IAA Summit in Munich, HIF Global, together with Porsche AG, Volkswagen Group Innovation and MAN Energy Solutions, announced the development and installation of a Direct Air Capture (DAC) unit at the HIF Haru Oni Demonstration facility in southern Chile in 2024. Earlier post.) Why not combine the two? Earlier post.)
The “smart” buoys, based on integrated patented hydrodynamics, electronics, energy conversion and computer control systems, capture and convert energy from the natural rising and falling of waves into low-cost, clean electricity. The OPT PowerBuoys are point absorbers, with a linear generator for a power take-off system.
The global annual ethanol potential of the technology is approximately 10 billion gallons with 4.5 This technology “bolts-on” to existing sugar cane processing facilities (or other biomass facilities) and enables the production of significant incremental ethanol at lowcost, according to GSF. Biochemical and biofuel pathways.
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 ). Joule Fuels will initially commercialize Sunflow-E, with Sunflow-D for the global diesel market to follow. gallon without subsidies.
SGI), a privately held company developing and commercializing genomic-driven solutions to solve a range of global challenges, has purchased from Febit Holding GmbH the worldwide rights to three families of patents and patent applications related to key synthetic genomic technologies. Synthetic Genomics Inc.
million NIRAP funding to the Institute for Molecular Bioscience would help develop biodiesel, methane and hydrogen from low-cost, high productivity microalgal photo-bioreactors. Hankamer said the $1.48 million project to test the economic feasibility of scaled-up new-generation algal energy systems.
Left, global light-duty fleet in the electric-favoring case; right, the hydrogen-favoring case. In both electric- and hydrogen-favoring cases, availability of low-carbon electricity and hydrogen prolonged the use of petroleum-fueled ICE vehicles. The team used a model (Global Energy Transition, GET-RC 6.1) Click to enlarge.
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