The seventh edition of the Energy Storage Global Conference (ESGC) will take place on 14 – 16 October 2025 in Brussels. What can you expect from the #ESGC2025? Policy Day Discuss energy storage market design and regulatory frameworks with policymakers, National Regulatory Authorities, and speakers from around the globe. Market Day Hear about best practices and […] [pdf]
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In our sponsored webinars with Honeywell earlier this year, members of the company's Process Solutions team mentioned that the company had been working on a long-duration battery storage technology and that an announcement would be made in due course. [pdf]
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The energy department is in charge of formulating policies related to the energy sector in line with the legislative framework of the Republic of Maldives. It strengthens international cooperation to boost both investment and know-how in the sector and is committed to raise awareness on energy resources and consumption. The department is divided in two sections – Policy and Sector Development, and Energy Technology Development. These are a total of 6 Units functioning under these two Sections. [pdf]
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Energy production is today one of the main culprits of greenhouse gas emissions. To meet the decarbonisation targets, it is necessary to reshape the production, storage, and distribution of electricity. To address this urgent need, Sinergy Flow, a deep tech startup headquartered in Milan develops a sustainable, low-cost, high-efficiency flowbatterythat can store electricity for more than 20 hours. [pdf]
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Cross flow fans from Pelonis Technologies are constructed from a temperature-resistant aluminum alloy to withstand high heat environments. Characterized by a long, rectangular shape, cross flow fans are ideal for areas where space is limited. They are available in AC, DC and high-efficiency EC types, as well as numerous sizes and efficiencies for any application. Our cross flow fans are specially designed to minimize vibration and maintain a low noise ratio. [pdf]
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Dr. Yi Cui is a Stanford University associate professor of materials science and engineering and a member of the Stanford Institute for Materials and Energy Sciences, a joint institute with SLAC, the National Acceleration Laboratory. He has spoken at three Electric Aircraft Symposiums, and has worked for at least the last decade on various technologies and tactics to bring battery science to a high level. [pdf]
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You may be familiar with the lithium-ion battery, used in everything from cell phones and laptops to Tesla electric vehicles. Lithium-ion batteries changed the energy game as a way to harness and store immense power density, especially considering their relatively small unit mass compared to other energy storage systems. [pdf]
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Prudent makes vanadium redox flow batteries, using one of a number of chemistries being put to use for large-scale energy storage units that combine aspects of traditional batteries and fuel cells. By re-circulating electrolyte through electrochemical cells, flow batteries -- which are sometimes called regenerative fuel cells -- can promise long cycle lives, though they do tend to suffer in comparison to other technologies such as lithium-ion in terms of round-trip efficiency, which measures how much energy is put into the battery as compared to what can be drawn from it. [pdf]
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Flow battery technology is under the microscope with the Queensland government committing $24 million (USD 15.83 million) to further evaluate and assess the capacity of the technology to support the next stage of the state's battery capability and help meet its renewable energy targets. [pdf]
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The UAE-Caribbean Renewable Energy Fund (UAE-CREF) proudly announces the operationalization of a hurricane-resistant power project in Antigua and Barbuda, developed by Masdar. Designed to withstand even the fiercest winds, the climate-resistant plant is a response to the devastation caused by Hurricane Irma in 2017, ensuring a reliable and sustainable supply of electrical power for Barbuda. [pdf]
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A commonplace chemical used in water treatment facilities has been repurposed for large-scale energy storage in a new battery design by researchers at the Department of Energy's Pacific Northwest National Laboratory. The design provides a pathway to a safe, economical, water-based, flow battery made with Earth-abundant materials. It provides another pathway in the quest to incorporate intermittent energy sources such as wind and solar energy into the nation's electric grid. [pdf]
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The long-term performance warranty covers continuous operation, insurance against malfunction, repair or replacement excess costs and workmanship defects as well as in the event Austrian company Enerox, which trades under the CellCube brand, goes into insolvency. [pdf]
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Engineers have been tinkering with a variety of ways for us to store the clean energy we create in batteries. Though the renewable energy battery industry is still in its infancy, there are some popular energy storage system technologies using lead-acid and high-power lithium-ion (Li-ion) combinations which have led the market in adoption. [pdf]
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There are many kinds of RFB chemistries, including iron/chromium, zinc/bromide, and vanadium. Unlike other RFBs, vanadium redox flow batteries (VRBs) use only one element (vanadium) in both tanks, exploiting vanadium''s ability to exist in several states. By using one element in both tanks, VRBs can overcome cross-contamination degradation, a [pdf]
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Oregon-based flow-battery developer ESS Inc. says it is learning from its existing deployment projects to scale up and modify its long-duration energy storage (LDES) technology to meet a wider variety of requirements. The combination of safety inherent in its iron and salt water electrolyte chemistry and improving costs are making the once-novel system more attractive. [pdf]
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Yadlamalka Energy comprises of co-located Vanadium Flow battery energy storage (2MW – 8MWh AC) and Solar Photovoltaic (PV) farm (6MWp DC), integrated behind a DC-coupled inverter. We want to commercialise breakthrough technology to help meet Australia and the world's future energy needs. [pdf]
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We were thrilled to meet 300 friends in Prague at the IFBF in June 2023 and pleased to welcome many others online. Our conference reached some of the highest and lowest places in Prague: from a cocktail reception on the hotel's 24th floor, to underground boat trips touring Prague's old waste waterworks. In between we explored the successes and challenges of the flow battery world. [pdf]
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Nous produisons des batteries de type SMF et VRLA depuis plus de quatre décennies. Nous sommes un groupe de sociétés engagées dans la fabrication et la commercialisation de batteries et de ses composants. Avec une gamme complète de batteries SOLANCE représente le dernier joyaux de notre couronne. [pdf]
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In a world grappling with the growing need for sustainable energy solutions, the role of efficient and scalable energy storage systems has never been more crucial. As the energy sector shifts away from fossil fuel dependence toward renewable resources like solar and wind, a new set of challenges has emerged. One of the most pressing issues is how to store the intermittent energy produced by these renewable sources for later use. [pdf]
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The Battery Storage and Grid Integration Program (BSGIP) hosted two research scientists from Samoa recently to help build capacity and strengthen the island nation's ability to meet climate and energy challenges. The researchers spent valuable time in BSGIP's state-of-the-art Battery Materials and Energy Storage Laboratory (Battery Lab) with Associate Professor Alexey Glushenkov. [pdf]
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Saudi-listed ACWA Power, the world's largest private water desalination company, leader in energy transition and first mover into green hydrogen and VoltStorage agree on a strategic collaboration to jointly explore the potential of VoltStorage's iron salt battery technology. [pdf]
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The new approach to ion exchange membrane design, which is published today in Nature Materials, uses low-cost plastic membranes with many tiny hydrophilic ('water attracting') pores. They improve on current technology that is more expensive and difficult to apply practically. [pdf]
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"We have taken care of the conceptual study, the tender process and the integration of the different modules, and we will also be responsible for the maintenance of the battery system during the 4-year test period. Equans are experts in assisting their clients in the areas of energy transition, industrial and digital transition. We see the Redox Flow battery technology as a sustainable, robust and future-proof solution, and we are particularly proud that we can take part in this first industrial-scale trial", says Mark Dirckx, CEO at Equans BeLux. [pdf]
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Flow batteries consist of two containers filled with liquids that can be oxidised or reduced. The containers are separated by a thin membrane that prevents the liquids from mixing but allows the ions contained therein to pass through. By rising to the membrane, the liquids interact, as a result of which one of them becomes oxidised (gives up electrons) and the other becomes reduced (accepts electrons), leading to the generation of the electric current. [pdf]
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Remote monitoring and preventive maintenance of industrial batteries make smooth flow of work in any sector. Suppliers like Aage International Bahrain make this possible with experienced foresight and general awareness of all the current trends. Circular economy is the need of the hour and practicing them at the highest economic level needs a responsible vendor like Aage International to make the right moves. [pdf]
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Established in 1991, we are one among the largest dry charged battery manufacturing companies in the Middle East. We also manufacture calcium sealed maintenance free batteries. Originally set up in technical collaboration with world renowned battery manufacturers, Johnson Controls Battery Group, USA, the powerful backing of this world leader had benefited us by the application of "cutting-edge" technology to all our products. Our installed capacity is 1.75 million batteries per year. [pdf]
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Flow batteries are important energy storage systems that store electrical energy in redox-active chemicals dissolved in circulating media [1]. Redox flow batteries benefit from their large capacity proportional to tank size and stable power output resulting from continuous circulation of electrolyte solutions. Owing to these advantages, flow batteries represent a promising technology for large-scale energy storage. When a redox flow battery is charged and discharged, electrical energy is converted to and from chemical energy, respectively, in a rechargeable manner [2]. [pdf]
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The UNSW All-Vanadium Redox Flow Battery patents and technology were licensed to Mitsubishi Chemical Corporation and Kashima-Kita Electric Power Corporation in the mid-1990s and subsequently acquired by Sumitomo Electric Industries where extensive field testing was conducted in a wide range of applications in the late 1990s and early 2000s.[19] [pdf]
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With a grant of DKK 11 million (EUR 1.5 million) from Innovation Fund Denmark, a handful of researchers have started a new project to pave the way for the next generation of flow batteries, which are crucial for the renewable energy system of the future. The focus of the project is the so-called stacks that are one of the main components of flow batteries. [pdf]
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