Blockchain Registration Transaction Record
3D-Printed Flow Battery Breakthrough Could Transform Renewable Energy
A scientist at Queen's University Belfast developed a 3D-printed flow battery to combat raw material scarcity. This breakthrough could reshape renewable energy storage and help achieve net-zero goals by 2050. Learn more about the impact on the green economy.
This development matters because raw material scarcity is a critical bottleneck for battery production and renewable energy adoption. A 3D-printed flow battery that uses fewer scarce materials could lower costs, increase energy storage capacity, and accelerate the global transition to net-zero emissions. For consumers and businesses, this means more reliable and affordable renewable energy, reduced dependence on volatile commodity markets, and a faster path to a sustainable energy future. It also signals a shift toward innovative manufacturing processes that could reshape the entire battery industry.
| Blockchain | Details |
|---|---|
| Contract Address | 0xeA2912a8DA1CD48401b10cB283585874d98098F4 |
| Transaction ID | 0x181cfe2b69917a57a29e6f9bc99b93b954c40b7e8c163e687028b1647c9e3e90 |
| Account | 0xdBdE7c76e403a5923F3dD4F050Dbbf5c2077BB20 |
| Chain | polygon-main |
| NewsRamp Digital Fingerprint | fast2qXX-25c79f8eb0130db9f7978a04d80dc1ff |