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Blackstone Technology GmbH may begin commercialization of 3D-printed solid-state sodium-ion batteries as early as 2025. The results of the development project will form the basis for the market-ready product. The chemical system of sodium-ion batteries is comparable in parts with lithium-ion cells.
a leader in non-aqueous sodium-ion battery technolog ( earlier post ), announced a collaboration which combines Faradion’s IP with AMTE Power’s design and manufacturing capabilities. AMTE Power has branded its sodium-ion product “Ultra Safe” due to its improved safety and enhanced thermal stability.
Solid-state sodium-ion battery company LiNa Energy has closed out a £3-million (US$3.4-million) LiNA will also build a presence in India where LiNa has signed an MoU with Social Alpha to optimise product development for the India market and oversee battery cell testing and future pilot projects. Earlier post.)
Solid-state sodium-ion battery company LiNa Energy ( earlier post ) successfully completed an independent demonstration of its lithium-free sodium batteries for energy storage systems with commercial partner ion Ventures.
CATL says lower cost, safer and more efficient sodium Ion batteries will be in mass production in 2025. The post World’s biggest battery maker flags first commercialsodium battery packs by end of year appeared first on The Driven.
Researchers led by the Department of Energy’s Pacific Northwest National Laboratory (PNNL) have extended the capacity and duration of sodium-aluminum batteries. The new sodium-based molten salt battery uses two distinct reactions. It is a variation of a sodium-metal halide battery. of peak charge capacity.
Solid-state sodium battery company LiNa Energy ( earlier post ) has closed out a £3.5-million LiNa Energy, a spin-out from Lancaster University, established in 2017, is commercializing a safe, cobalt- and lithium-free solid-state sodium battery. million (US$4.8-million) —Dr Gene Lewis, CEO of LiNa Energy.
Tests conducted by Titirici Group , a multidisciplinary research team based at Imperial College London, have found that a novel carbon nanotube electrode material derived from CO 2 —produced by Estonian nanotech company UP Catalyst ( earlier post )—enhances the cyclability of sodium-ion batteries.
In April, the company completed the diesel hydrotreater conversion, which will ramp up to 8,000 bbl/d (120 million gallons per year) of renewable diesel production by the third quarter of 2021. Upon completion, the facility will have more than 50,000 bbl/d (800 million gallons per year) of renewable fuel production capacity.
Flowchart of Molten Sodium Upgrading process. A new company, Field Upgrading (Calgary, Alberta), has been formed dedicated to developing and commercializing the Molten Sodium Upgrading (MSU) technology. The remaining product is elemental sulfur. Source: Field Upgrading. Click to enlarge. Click to enlarge.
Sodium-ion batteries (Na-ion, NIBs) are seen as an alternative to lithium-ion batteries for large-scale applications due to their lower cost and abundant supply of sodium. However, low capacity and poor rate capability of existing anodes have been major obstacles to the commercialization of NIBs. Yu, Petr V. Mason, Sudip K.
The sodium-ion battery manufacturer Natron Energy has started commercial-scale operations at its sodium-ion battery manufacturing facility in Holland, Michigan. Natron’s milestone marks the first-ever commercial-scale production of sodium-ion batteries in the U.S.
The hybrid systems research team at GE Global Research has successfully demonstrated a dual battery system for an electric transit bus, pairing a high-energy density sodium metal halide battery with a high-power lithium battery. Sodium batteries are on the opposite side of the spectrum. Click to enlarge.
Swedish sodium-ion battery developer Altris presented a pure Prussian White cathode material with a capacity of 160 mAh/g, making it the highest capacity declared to date. Prussian White is a framework material consisting of sodium, iron, carbon and nitrogen (Na x Fe[Fe(CN) 6 ] with x>1.9). Earlier post.) Earlier post.)
company, and a leading supplier of specialty batteries and energy storage solutions for the defense, aerospace, medical, commercial and grid energy storage markets, will receive a $3-million award from the Advanced Research Projects Agency-Energy to further develop their catalytic energy storage technology. Click to enlarge.
GE Chairman and CEO Jeff Immelt shows a sodium-metal halide battery cell at the press conference announcing the battery plant. GE says the planned facility will produce approximately 10 million sodium-metal halide cells each year—equivalent to 900 MWh of energy storage, or enough to support 1,000 GE hybrid locomotives. Earlier post.).
CATL also says it can achieve mass production of condensed battery in a short period of time. CATL said it will also launch the automotive-grade version of condensed batteries, which are expected to be put into mass production within this year. These will now be used by Chery Automobile, as announced at the exhibition.
Professor John Goodenough, the inventor of the lithium-ion battery, and his team at the University of Texas at Austin have identified a new cathode material made of the nontoxic and inexpensive mineral eldfellite (NaFe(SO 4 ) 2 ), presenting a significant advancement in the quest for a commercially viable sodium-ion battery.
Novozymes has launched Eversa Transform, the first commercially available enzymatic solution (a liquid lipase) to convert both glycerides and free fatty acids (FFA) into biodiesel. Most of the oils currently used in biodiesel production are sourced from soybeans, palm or rapeseed, and typically contain less than 0.5% FFA—i.e.,
E3 Lithium’s proprietary direct lithium extraction (DLE) technology is designed to extract the critical mineral from the lithium-rich brine, with potential for commercial development of battery-grade products. —Jason Iwanika, director of commercial business development at Imperial.
The cathode pilot line’s first product, a mid-nickel grade of single-crystal cathode material (NMC622), produced using NOVONIX’s patent-pending, all-dry, zero-waste synthesis technology, matches the performance of leading cathode materials from existing suppliers in full-cell testing.
Western Hydrogen Limited reported first production of hydrogen from its Molten Salt Gasification (MSG) pilot plant in Fort Saskatchewan, Alberta. The technology allows the production of high-pressure hydrogen without the need for compression and can use a variety of feedstocks, including renewables. CO + H 2 ) at similar pressures.
Researchers within the RS2E network on electrochemical energy storage (Réseau sur le stockage électrochimique de l’énergie) in France have developed the first sodium-ion battery in an 18650 format. The main advantage of the prototype is that it relies on sodium, an element far more abundant and less costly than lithium.
Stellantis Ventures became a strategic investor of France-based Tiamat, which is developing and commercializingsodium-ion battery technology. According to the legacy automaker, Tiamat is the first company in the world to recently commercializesodium-ion technology in an electrified product.
The US National Science Foundation (NSF) has issued a grants opportunity notice ( PD-14-7644 ) for up to about $13 million in awards to fundamental research and education that will enable innovative processes for the sustainable production of electricity and transportation fuels. The duration of unsolicited awards is typically three years.
Mangrove is the developer of a modular platform for the cost-effective production of battery-grade lithium hydroxide. The platform technology is also being commercialized for conversion of waste brines to chemicals and desalinated water. Canada-based Mangrove Lithium closed a $3-million financing from BDC Capital’s Cleantech Practice.
The Strategic Partnership Agreement is an umbrella agreement that will support a long-term partnership and commitment between the parties, affording Sparc the first right of refusal to commercialize technologies developed from projects Sparc undertakes with QUT. Earlier post.).
Reliance New Energy Solar Ltd, a wholly owned subsidiary of Reliance Industries Ltd, will acquire 100% shareholding in sodium-ion battery developer Faradion Limited ( earlier post ) for an enterprise value of £100 million (US$135 million). Sodium is the sixth-most abundant element on the planet. Fast charge/ discharge capability.
With regard to overall storage capability and potential for further fuel efficiency improvements, the demand for larger battery systems based on lithium, nickel and sodium will continue to grow through the increased market penetration of vehicles with higher levels of hybridization and electrification. Lithium-ion batteries.
Highlights of the study results include: Annual production of 25,000 tonnes of battery-grade cobalt sulfate from third party feed, representing 5% of the total global refined cobalt market and 100% of North American cobalt sulfate supply. . $37 Cobalt Production. Sodium Treatment. Annual Production Summary. Feed Grade.
Under Safevolt, Talga is developing a high energy graphene silicon anode product, termed Talnode-Si, targeting significantly higher capacity than state of the art commercial graphite anodes. 95% reversible capacity (after 45 cycles - tests ongoing).
Under the terms of the MoU, Compass Minerals would supply LGES with with a battery-grade lithium product from its lithium brine development project at its Ogden, Utah, solar evaporation facility. As outlined in the MOU, purchase pricing would be based on market price and sales volume thresholds would be dependent upon product qualifications.
These SCALEUP “Fast-Track” teams, Natron Energy and Bridger Photonics, will receive $19 million and $5 million, respectively, to further their commercialization efforts in sodium-ion battery development and methane detection technologies, respectively. Natron Energy: Domestic Manufacturing of Sodium-Ion Batteries - $19,883,951.
Initial studies revealed that antimony could be suitable for both rechargeable lithium- and sodium-ion batteries because it is able to store both kinds of ions. Sodium is regarded as a possible low-cost alternative to lithium as it is much more naturally abundant and its reserves are more evenly distributed on Earth.
contrast with LiO 2 and NaO 2 , KO 2 is thermodynamically stable and commercially available. Potassium, an alkali metal similar to lithium (and sodium) can be used in a rechargeable battery. Moreover, within this small charging potential range, almost 90% of the discharged product can be oxidized. O 2 batteries.In O 2 battery.
By using this captured CO 2 to make products that would otherwise generate additional CO 2 , the plant will offset an additional 220,000 tons annually, once fully operational in 2014. The captured pollutants are mineralized into solid products, including sodium bicarbonate, which are stored, transported and sold as safe, stable solids.
Lygos produces high-value specialty chemical traditionally produced in oil-based petrochemical processes in a process that uses commercially proven, acid-tolerant yeast and domestic sugars instead of petroleum, and has pioneered the world’s first bio-based production of malonic acid (a C 3 -dicarboxylic acid). Earlier post.).
Fraser Stoddart at Northwestern and his colleagues set themselves a challenge to synthesize MOFs from natural products. Suitable candidates include ordinary table salt (sodium chloride), the common salt substitute potassium chloride, or potassium benzoate, an approved preservative. Smaldone et al. Smaldone et al. Smaldone, Ross S.
Cyclonatix, Inc is developing an industrial-sized motor/controller to operate with either DC or AC power sources, for applications in electric vehicles, solar-powered pumps, HVAC&R, gas compressors, and other commercial and industrial machines which require high efficiency, variable speed/torque, and low cost.
Nutrient-rich feed streams are mixed with magnesium chloride and, if necessary, sodium hydroxide and then fed into the Pearl reactor where minute particles or struvite “seeds” begin to form. Like a pearl, these seeds grow in diameter until they reach the desired size of 1.0
Processes for sustainable energy production must be environmentally benign, reduce greenhouse gas production, and utilize renewable resources. Advanced systems such as lithium-air, sodium-ion, as well as lithium-ion electrochemical energy storage are appropriate. Photovoltaic (PV) Solar Energy.
Scientists at Stanford University have developed electrochemical cells that convert carbon monoxide (CO) derived from CO 2 into commercially viable compounds more effectively and efficiently than existing technologies. Electrolysis must convert CO into products at a high rate with a low overall energy demand in order to be viable.
Using non-GM crop breeding techniques, scientists from CSIRO Plant Industry introduced a salt-tolerant gene into a commercial durum wheat, with results shown in field tests. Durum wheat, used for making such food products as pasta and couscous, is particularly susceptible to soil salinity. Dr. Rana Munns. Matthew Gilliham.
Providing a possible new route to hydrogen-gas production, researchers at the California Institute of Technology (Caltech) have devised a new manganese-based thermochemical cycle with a highest operating temperature of 850?°C recovery of Mn 3 O 4 by thermally reducing the sodium ion extracted solid produced in step 3 at 850 °C.
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