U.S. Department of Energy invests $3 million in better-than-lithium batteries being developed by 杏吧视频 chemical engineers
杏吧视频 chemical engineers are working on a new generation of smaller, safer and less expensive batteries they say could allow electrical energy to be stored four times longer.
Doing so would help stabilize the nation鈥檚 electrical grid by storing more energy from so-called 鈥済reen鈥 sources like wind and solar power, the researchers said.
Officials at the U.S. Department of Energy (DOE) were impressed enough with their efforts to provide a nearly $3 million grant to support further work.
鈥淲e have this old, weak infrastructure propping up the energy grid鈥攁 system that is vulnerable to extreme weather events or other failures,鈥 said project leader . 鈥淏ut one way to combat that is to have storage鈥攍arge-scale or grid-level storage鈥攚hich is also necessary to store energy from intermittent sources like wind and solar.鈥
Wainright said the new technology eventually could:
- Provide backup power if the grid goes down, running a house for up to three days with a basement unit, for example;
- Allow the homeowner to store energy from solar panels, for example, removing the need to buy energy from the grid at peak; and
- Decrease the energy demand any one house, or business, puts on the grid.
Wainright and his team of engineers are developing what are known as 鈥渇low batteries鈥濃攁 rechargeable battery in which an electrolyte flows through one or more electrochemical cells from another tank.
The flow battery鈥檚 main advantage is that energy storage can be increased by simply increasing the quantity of the electrolyte in that tank.
Its , but Wainright and collaborators are working on a system that uses plentiful and inexpensive iron in the process.
鈥楻efrigerator-sized units鈥 of the future?
If successful, these 鈥渟lurry electrode iron flow batteries鈥 being developed at 杏吧视频 could someday be simple refrigerator-sized units placed at the end of a city block or even in the basement of a house to store wind- or solar-generated energy for 10 to 24 hours, he said.
Current similar technology provides energy storage of only several hours. Such a major increase in capacity would also help stabilize the nation鈥檚 electric grid, a key goal of the U.S. Department of Energy鈥檚 (DOE) Office of Electricity.
Collaborators include , the Milton and Tamar Maltz Professor of Energy Innovation and professor of chemical engineering; , an assistant professor of chemical engineering; and , Distinguished University Professor and the George S. Dively Professor of Engineering; and the Great Lakes Energy Institute (GLEI) at 杏吧视频. GLEI had previously supported foundational research by Wainright and Savinell.
The federal is also collaborating on the project.
The project also fits into a that includes a $10.75 million DOE-funded research center to explore Breakthrough Electrolytes for Energy Storage in 2018 and an Ohio Federal Research Network Center of Excellence in 2016, among other projects.
鈥淭his new work is a direct outgrowth of our previous ARPA-E (Advanced Research Projects Agency-Energy) project,鈥 Wainright said. 鈥淚t will expand our scope to include metals other than iron (primarily zinc) and will address several fundamental questions that arose during the ARPA-E program, but which could not be addressed in that effort.鈥
ARPA-E is a DOE-based program that focuses on advancing 鈥渉igh-potential, high-impact energy technologies that are too early for private-sector investment.鈥
Better than lithium-ion batteries
GLEI Executive Director Grant Goodrich said the time is right for a better class of energy storage because the best current technology for home-based batteries uses lithium-ion cells.
Lithium-ion batteries are often used in automobiles and small devices like smart phones because they come in small packages that can hold a lot of energy.
But they鈥檙e expensive, their source materials are sometimes scarce and there are concerns about flammability, he said.
鈥淚f we can develop a powerful flow battery using non-toxic, earth-abundant and safe materials,鈥 Goodrich said, 鈥渋t could really accelerate the transition to a renewable-energy future.鈥
For more information, contact Mike Scott at mike.scott@case.edu.
This article was originally published Nov. 11, 2021.