EnerVenue Provides RWE with Long-Duration Energy Storage Vessels™ for Pilot Project
The global renewables giant is evaluating the metal-hydrogen batteries at its U.S. testing facility in Wisconsin
FREMONT, Calif., Dec. 03, 2024 (GLOBE NEWSWIRE) -- EnerVenue, a company pioneering the commercial deployment of high-efficiency metal-hydrogen batteries capable of more than 30,000 cycles, today announced that RWE, a leading global energy company, has purchased EnerVenue Energy Storage Vessels (ESVs) for performance testing in a renewable energy pilot project.
RWE is conducting the pilot project at its Milwaukee-area U.S. testing facility, where the company is now cycling EnerVenue’s ESVs to examine the batteries’ performance characteristics. The goals of this pilot project include validating ESV cycling flexibility, charge/discharge characteristics, duration, temperature performance, and efficiency validation. RWE will use the data collected to align EnerVenue’s technology for potential future RWE applications.
ESVs offer the prospect of ultra-long lifespans and efficient, flexible deployments via their highly configurable and scalable product architecture. The batteries are designed to exceed a 30,000-cycle life and cycle up to three times per day without rest. They offer improved safety without the thermal runaway or propagation risk exhibited by incumbent lithium-ion technologies—eliminating the need for expensive, auxiliary fire suppression solutions. ESVs are also more readily recyclable than lithium-ion, making the batteries especially sustainable and environmentally responsible.
“Grid-scale energy storage that promises to be safer, flexible, and more durable offers great potential for meeting our continuously growing demand for energy,” said Andrea Hu-Bianco, SVP of Engineering, RWE Clean Energy. “Meeting clean energy goals will necessitate several capable and scalable solutions, and we look forward to assessing the performance of EnerVenue’s metal-hydrogen technology as part of our pilot program at our testing facility in Milwaukee, led by Guy Moore, Director of BESS System Integration, that acts as our innovation incubator to test Lithium and beyond-Lithium battery technology, power conversion system and controls.”
“Energy Storage Vessels are built to meet the demands of even the most diverse and challenging clean energy applications, providing a reliable, long-lasting, and sustainable answer for large-scale renewable energy projects,” said Majid Keshavarz, CTO, EnerVenue. “Collaborating with a leader like RWE allows us to showcase the capabilities of our technology and demonstrate how it can drive the future of clean energy expansion and grid resilience.”
RWE is leading the way to a green energy world. With its investment and growth strategy Growing Green, RWE is contributing significantly to the success of the energy transition and the decarbonization of the energy system. RWE is already one of the leading companies in the field of renewable energy. As a driver of the energy transition, RWE develops, builds and operates battery storage systems in the United States, Europe and Australia. Currently, the company operates battery storage systems with an overall capacity of 0.7 GW and approximately 1.4 GW of battery storage projects under construction worldwide. As an integral part of its Growing Green strategy, RWE plans to expand its battery storage capacity to 6 GW worldwide by 2030.
About EnerVenue
EnerVenue builds the industry’s most flexible energy storage solutions for large-scale and long-duration applications. The company’s Energy Storage Vessels are simple, durable, and exhibit superior safety. Based on technology proven over decades under extreme conditions, Energy Storage Vessels are virtually maintenance-free and are designed to exceed a 30,000-cycle life. EnerVenue solutions are redefining how energy stakeholders view battery storage.
EnerVenue Media Contact
Kyle Peterson
kyle@clementpeterson.com
A photo accompanying this announcement is available at https://www.globenewswire.com/NewsRoom/AttachmentNg/cb06fe48-e3de-40db-ba68-3a6029936114
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