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Scientists at the Department of Energy’s Oak Ridge National Laboratory have developed a scalable, low-cost method to improve the joining of materials in solid-state batteries, resolving one of the big challenges in the commercial development of safe, long-lived energystorage systems.
The Robust Affordable Next Generation EV-Storage (RANGE) program’s goal is to enable a 3X increase in electric vehicle range (from ~80 to ~240 miles per charge) with a simultaneous price reduction of > 1/3 (to ~ $30,000). ARPA-E defines robust design as electrochemical energystorage chemistries and/or architectures (i.e.
The US Department of Energy’s Advanced Research Projects Agency-Energy (ARPA-E) has selected 19 new projects to receive a total of $43 million to develop breakthrough energystorage technologies and support promising small businesses. Advanced Management And Protection Of Energy-Storage Devices (AMPED).
The US Department of Energy is awarding $620 million for projects around the country to demonstrate advanced Smart Grid technologies and integrated systems. The selected projects include advanced battery systems (including flow batteries), flywheels, and compressed air energy systems. Tehachapi Wind EnergyStorage Project.
The US Department of Energy (DOE) Advanced Research Projects Agency - Energy (ARPA-E) will award approximately $36 million to 22 projects to develop transformational electric vehicle (EV) energystorage systems using innovative chemistries, architectures and designs. Advanced Aqueous Lithium-Ion Batteries. EnZinc Inc.
Group14 Technologies, a provider of silicon-carbon composite materials for global lithium-ion markets, announced that it has been selected as a winner of the Department Of Energy’sEnergyStorage Grand Challenge and will receive a $3.96-million million award.
(MHI), jointly with SSE plc (formerly Scottish and Southern Energy plc), will begin an energystorage system demonstration project using the power grid in the UK’s Orkney Islands, which has a high proportion of renewable energy generation in relation to demand. In the project, Mitsubishi Power Systems Europe, Ltd.
The Ricardo Kinergy high-speed, hermetically-sealed flywheel energystorage system. Kinergy has the potential for use in a range of applications due to its comparatively very low projected production costs. Click to enlarge. Cutaway of the FLYBUS with Kinergy system. Click to enlarge. The £1-million (US$1.7-million)
Austrian manufacturer of high-performance batteries Kreisel Electric ( earlier post ) has introduced the MAVERO home energystorage system. The Li-ion battery packs are available in four different sizes, with usable capacity ranging from 8 kWh to 22 kWh. kW in the voltage range from 288 to 384 V. Voltage range.
USABC has carried out a number of battery development programs, focusing on low-cost and long-life batteries with varying power-to-energy ratios. The USABC is currently working under a cooperative agreement with the United States Department of Energy (DOE) for the development of high performance batteries.
Ricardo will introduce TorqStor—the latest generation of Ricardo’s high speed flywheel energystorage technology—at the CONEXPO 2014 show in Las Vegas as a pre-production prototype for OEM product integration.
million technology development contract to Zenlabs Energy Inc. in Fremont, California for development of low-cost, fast-charge (LC/FC) battery technology for electric vehicles (EVs). The contract award, which includes a 50% cost share, funds a 30-month project that began last month. Zenlabs Range cell.
Boulder Ionics Corporation, a startup that has developed a novel, high-throughput, low-cost synthesis platform for producing ionic liquid electrolytes for use in advanced energystorage devices, completed a $4.3-million million Series A financing. With this $4.3 With this $4.3
The study, which provides a joint industry analysis of how different types of batteries are used in different automotive applications, concludes that lead-based batteries will by necessity remain the most wide-spread energystorage system in automotive applications for the foreseeable future.
Higher prices reflect the relative immaturity of these markets, the higher production costs, the diverse range of applications and battery imports. For the higher end of the range, low volume and bespoke orders push prices up. —Evelina Stoikou, an energystorage associate at BNEF and lead author.
ion Ventures, a modern utility and energystorage infrastructure specialist, and LiNa Energy , a solid-state battery technology developer, concluded their first successful trial of LiNa’s proprietary solid-state sodium-nickel battery platform at an undisclosed location in South East England last week.
The new projects in four focus areas join the existing Faraday Institution research projects that collectively aim to deliver the organisation’s mission to accelerate breakthroughs in energystorage technologies to benefit the UK in the global race to electrification.
The US Department of Energy (DOE) Advanced Research Projects Agency – Energy (ARPA-E) has issued the $30-million “Advanced Management and Protection of Energy-storage Devices” (AMPED) funding opportunity announcement ( DE-FOA-0000675 ). Earlier post.) Awards for selected projects may vary between $250,000 and $10 million.
The listing, which includes 85 organizations as of 22 January, is grouped into 13 categories, with the largest categories being energystorage (29 applicants); biofuels (17); and renewable power (13): Biofuels (17). Conventional Energy (0). EnergyStorage (29). Grid (non-storage) (0). Carbon Capture (7).
Cummins is committed to developing a range of solutions that will enable our customers’ success as we advance our Destination Zero strategy and decarbonize our diverse markets. By investing in VoltStorage, we are taking steps to advance solutions focused on the grid and energystorage. Vanadium redox flow battery cell.
The US Department of Energy’s National Energy Technology Laboratory (NETL) is conducting research on alternative options to reduce costs and make large-scale energystorage safer and more practical. Innovative fabrication methods can also lead to significant energystorage system improvements.
Natron Energy , a developer of new battery cell technology based on Prussian Blue analogue electrodes and a sodium-ion electrolyte, has closed a strategic investment by Chevron Technology Ventures (CTV) to support the development of stationary energystorage systems for demand charge management at electric vehicle (EV) charging stations.
Source: Livent The combined company will have a significant footprint of low-cost assets diversified across key geographies, products, and customers and will have pro-forma CY’22 combined revenue of approximately US$1.9 billion and adjusted EBITDA of approximately US$1.2
Classification of potential electrical storage for stationary applications. published in the ACS journal Chemical Reviews , reviews in detail four stationary storage systems considered the most promising candidates for electrochemical energystorage: vanadium redox flow; sodium-beta alumina membrane; lithium-ion; and lead-carbon batteries.
As an abundant and inexpensive material, the development of NaNH 2 -based NH 3 cracking systems may promote the utilization of NH 3 for sustainable energystorage purposes, they suggest. The material costs, however, are very significantly less, the team observed. decomposition efficiency with 0.5 —David et al.
Large-scale energystorage is poised to play a critical role in enhancing the stability, security, and reliability of tomorrow’s electrical power grid, including the support of intermittent renewable resources. Cells were fully discharged at various rates ranging from 50 to 200 mA/cm 2 with 0.05 Earlier post.).
The United States Advanced Battery Consortium LLC (USABC) awarded a $3-million technology development contract to Amprius Technologies for a low-cost, fast-charge silicon nanowire cell technology for electric vehicles. The contract award, which includes a 50% cost share, funds a 30-month project that began earlier this year.
As part of the FY 2012 Phase I Release 3 SBIR/STTR Award program, the US Department of Energy (DOE) has awarded Michigan-based XG Sciences, a manufacturer of graphene nanoplatelets ( earlier post ), a contract to develop low-cost, high-energy Si/graphene anodes for Li-ion batteries for use in extended range electric vehicle applications.
Researchers at the Beijing Institute of Technology have found a way to process biomass-derived natural silk to create carbon-based nanosheets that could potentially be used in Li-ion batteries and other energystorage devices. through a facile synthesis route for highly efficient energystorage devices. Click to enlarge.
The Ricardo-led FlySafe research collaboration—involving a range of leading industrial and academic partners including the University of Brighton’s Centre for Automotive Engineering—has delivered an innovative flywheel safety test environment to enable the development of next-generation flywheel energystorage systems.
a company that develops semiconductor components and advanced circuits for the management of battery systems used for grid storage and EVs, has introduced the SFP100, a high-precision current sensing IC, that extends by at least an order of magnitude the range of accurate measurements of current through a resistive shunt.
That is about three times as much power per square centimeter as other membrane-less system—a power density that is an order of magnitude higher than that of many lithium-ion batteries and other commercial and experimental energy-storage systems. A paper on the work is published in Nature Communications. —Braff et al.
The signing of the agreement begins the process of building and installing the first LPG-powered Scuderi power generator and energystorage systems. An air-hybrid configuration of the engine for vehicles envisions adding a compressed air storage tank to the engine. Scuderi Group, Inc., Earlier post.)
The SSFC could enable new models such as transportation ‘fuels’ tuned for power versus range, or cold versus warm climates, with flexible refueling and recycling options. The new semi-solid lithium flow cell offers energy densities that are an order of magnitude greater than previous aqueous flow batteries. Source: Duduta et al.
The process could significantly lower the cost of producing the one-dimensional (1D) nanostructures, enabling a broad range of uses in lightweight structural composites, advanced sensors, electronic devices—and thermally-stable and strong battery membranes able to withstand temperatures of more than 1,000 ˚C.
The core offering is based around two key products: Elysia Embedded is a suite of battery management algorithms, which run locally on the Battery Management System (BMS)—for example directly on an EV’s battery or on a stationary energystorage system.
This approach, they conclude, is also applicable to a wide range of insulating energystorage electrode materials such as sulfur, LiMnPO 4 , and silicon in lithium-ion batteries. The ternary composite electrodes also exhibited excellent cycling performance with >95% capacitance retention over 3,000 cycles. —Yu et al.
Stanford University scientists have created a new ultrahigh surface area three-dimensional porous graphitic carbon material that significantly boosts the performance of energy-storage technologies. Their results are presented in an open access paper published in the journal ACS Central Science. —To et al.
Twenty-three of the projects receiving funding are headed by universities, eight are led by the Energy Department’s National Laboratories and one project is run by a non-profit organization. Awards range from $2 million to $4 million per year per center for up to four fiscal years, subject to a progress review in year two.
Nano One is a clean technology company with patented processes for the low-cost, low-environmental footprint production of high-performance cathode materials used in lithium-ion batteries, and Euro Manganese is a battery raw materials company developing a significant manganese deposit in the Czech Republic.
Electrochaea employs a patented biocatalyst (BioCat) to convert low-cost and stranded electricity and CO 2 into pipeline-grade renewable gas. The core of the power-to-gas (P2G) technology is the proprietary biocatalyst that can be deployed in a simple and cost-effective energy conversion system.
Renault and distributed energystorage company Connected Energy are partnering to develop sustainable and efficient ways of using electric vehicle batteries at the end of their useable in-vehicle life in order to supply innovative and more affordable vehicle charging solutions.
The research was supported by the Advanced Research Projects Agency – Energy (ARPA-E) and reported in the journal Nature. Among the most interesting applications for the high-temperature pump would be low-cost grid storage for surplus energy produced by renewables.
Major attributes of Coal FIRST plants must include: High overall plant efficiency (40% HHV or higher at full load without carbon capture, with minimal reductions in efficiency over the required generation range). This combination has the potential to allow better competitiveness in the future energy market.
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