• About
    • About Us
    • What We Cover
  • Advertise
    • Advertise
    • Our Advertisers
  • Contact
  • Donate
  • Send News

Oak Ridge Today

  • Home
  • Sign in
  • News
    • Business
    • Community
    • Education
    • Government
    • Health
    • Police and Fire
    • U.S. Department of Energy
    • Weather
  • Sports
    • High School
    • Middle School
    • Recreation
    • Rowing
    • Youth
  • Entertainment
    • Arts
    • Dancing
    • Movies
    • Music
    • Television
    • Theater
  • Premium Content
  • Obituaries
  • Classifieds

Rubber meets the road with new ORNL carbon, battery technologies

Posted at 9:54 pm August 27, 2014
By Oak Ridge National Laboratory Leave a Comment

Recycled Tire Battery Schematics

ORNL researchers’ goal is to scale up the recovery process and demonstrate applications as anodes for lithium-ion batteries in large-format pouch cells. (Image courtesy ORNL)

 

Recycled tires could see new life in lithium-ion batteries that provide power to plug-in electric vehicles and store energy produced by wind and solar, say researchers at Oak Ridge National Laboratory.

By modifying the microstructural characteristics of carbon black, a substance recovered from discarded tires, a team led by Parans Paranthaman and Amit Naskar is developing a better anode for lithium-ion batteries. An anode is a negatively charged electrode used as a host for storing lithium during charging.

The method, outlined in a paper published in the journal RSC Advances, has numerous advantages over conventional approaches to making anodes for lithium-ion batteries.

“Using waste tires for products such as energy storage is very attractive not only from the carbon materials recovery perspective but also for controlling environmental hazards caused by waste tire stock piles,” Paranthaman said.

The ORNL technique uses a proprietary pretreatment to recover pyrolytic carbon black material, which is similar to graphite but man-made. When used in anodes of lithium-ion batteries, researchers produced a small, laboratory-scale battery with a reversible capacity that is higher than what is possible with commercial graphite materials.

In fact, after 100 cycles the capacity measures nearly 390 milliamp hours per gram of carbon anode, which exceeds the best properties of commercial graphite. Researchers attribute this to the unique microstructure of the tire-derived carbon.

“This kind of performance is highly encouraging, especially in light of the fact that the global battery market for vehicles and military applications is approaching $78 billion and the materials market is expected to hit $11 billion in 2018,” Paranthaman said.

Anodes are one of the leading battery components, with 11 to 15 percent of the materials market share, according to Naskar, who noted that the new method could eliminate a number of hurdles.

“This technology addresses the need to develop an inexpensive, environmentally benign carbon composite anode material with high-surface area, higher-rate capability, and long-term stability,” Naskar said.

ORNL plans to work with U.S. industry to license this technology and produce lithium-ion cells for automobile, stationary storage, medical and military applications. ORNL has posted the solicitation titled, “Low-Cost, Graphite Anodes For Lithium-Ion Batteries,” in FedBizOpps. The solicitation (#ORNL-TT-2014-08) closes Sept. 15. Other potential uses include water filtration, gas sorption, and storage.

Paranthaman and Naskar, authors of a paper titled “Tailored Recovery of Carbons from Waste Tires for Enhanced Performance as Anodes in Lithium-Ion Batteries,” envision batteries featuring this technology being highly marketable. The paper is available here.

Co-authors are Zhonghe Bi, Yunchao Li, Sam Akato, Dipendu Saha, Miaofang Chi, and Craig Bridges. They are working with David Wood and Jianlin Li on a pilot manufacturing process to scale up the recovery of material and demonstrate applications as anodes for lithium-ion batteries in large-format pouch cells. Researchers expect these batteries to be less expensive than those manufactured with commercial carbon powders.

The research on conversion of recycled tires to graphite powders was funded by the laboratory’s Technology Innovation Program, while the research on battery fabrication and electrochemical testing was sponsored by the U.S. Department of Energy’s Office of Basic Energy Sciences, Materials Sciences and Engineering Division. Transmission electron microscopy research was supported by ORNL’s Center for Nanophase Materials Sciences, a DOE Office of Science user facility.

Filed Under: Front Page News, Oak Ridge National Laboratory, Science, U.S. Department of Energy Tagged With: Amit Naskar, anode, battery, carbon black, Center for Nanophase Materials Sciences, Craig Bridges, David Wood, Dipendu Saha, DOE, electric vehicles, energy, graphite, Jianlin Li, lithium ion batteries, Low-Cost Graphite Anodes For Lithium-Ion Batteries, Materials Sciences and Engineering Division, Miaofang Chi, Oak Ridge National Laboratory, Office of Basic Energy Sciences, Office of Science, ORNL, Parans Paranthaman, pouch cells, recycled tires, RSC Advances, Sam Akato, Tailored Recovery of Carbons from Waste Tires for Enhanced Performance as Anodes in Lithium-Ion Batteries, Technology Innovation Program, U.S. Department of Energy, Yunchao Li, Zhonghe Bi

Leave a Reply Cancel reply

Your email address will not be published. Required fields are marked *

More U.S. Department of Energy News

Kairos Power begins construction on demonstration reactor​

Kairos Power has started construction on a test nuclear reactor in west Oak Ridge. The Hermes Low-Power Demonstration Reactor is the first of its type to be approved for construction by the U.S. Nuclear Regulatory … [Read More...]

Availability of the draft environmental assessment for off-site depleted uranium manufacturing (DOE/EA-2252)

The U.S. Department of Energy (DOE) National Nuclear Security Administration (NNSA) announces the availability of a Draft Environmental Assessment (EA) for Off-Site Depleted Uranium Manufacturing, which analyzes the … [Read More...]

Manhattan Project Park: Walk through Wheat

You can walk through Wheat with a National Park Service ranger on Saturday, July 13, and learn more about the history of this community before the Manhattan Project. Wheat was in an area that is now west Oak Ridge, … [Read More...]

Crews preparing for first demolition of uranium enrichment building at Y-12

From U.S. Department of Energy "EM Update" email newsletter U.S. Department of Energy Office of Environmental Management crews at Oak Ridge are moving closer toward completing the first-ever demolition of a former … [Read More...]

K-25 cleanup shifting to groundwater

Crews are expected to finish remediating soil, reversing or stopping environmental damage at the former K-25 site in west Oak Ridge this year, and federal cleanup managers are shifting their focus to groundwater. It's … [Read More...]

More DOE

Recent Posts

  • Flatwater Tales Storytelling Festival Announces 2025 Storytellers
  • Laser-Engraved Bricks Will Line Walkway of New Chamber Headquarters
  • Democratic Women’s Club to Discuss Climate Change, Energy and Policy
  • Estate Jewelry Show at Karen’s Jewelers Features Celebrity Jewelry
  • Keri Cagle named new ORAU senior vice president and ORISE director
  • ORAU Annual Giving Campaign exceeds $100,000 goal+ORAU Annual Giving Campaign exceeds $100,000 goal More than $1 million raised in past 10 years benefits United Way and Community Shares Oak Ridge, Tenn. —ORAU exceeded its goal of raising $100,000 in donations as part of its internal annual giving campaign that benefits the United Way and Community Shares nonprofit organizations. ORAU has raised more than $1 million over the past 10 years through this campaign. A total of $126,839 was pledged during the 2024 ORAU Annual Giving Campaign. Employees donate via payroll deduction and could earmark their donation for United Way, Community Shares or both. “ORAU has remained a strong pillar in the community for more than 75 years, and we encourage our employees to consider participating in our annual giving campaign each year to help our less fortunate neighbors in need,” said ORAU President and CEO Andy Page. “Each one of our employees has the power to positively impact the lives of those who need help in the communities where we do business across the country and demonstrate the ORAU way – taking care of each other.” ORAU, a 501(c)(3) nonprofit corporation, provides science, health and workforce solutions that address national priorities and serve the public interest. Through our specialized teams of experts and access to a consortium of more than 150 major Ph.D.-granting institutions, ORAU works with federal, state, local and commercial customers to provide innovative scientific and technical solutions and help advance their missions. ORAU manages the Oak Ridge Institute for Science and Education (ORISE) for the U.S. Department of Energy (DOE). Learn more about ORAU at www.orau.org. Learn more about ORAU at www.orau.org. Like us on Facebook: https://www.facebook.com/OakRidgeAssociatedUniversities Follow us on X (formerly Twitter): https://twitter.com/orau Follow us on LinkedIn: https://www.linkedin.com/company/orau ###
  • Children’s Museum Gala Celebrates the Rainforest
  • Jim Sears joins ORAU as senior vice president
  • Oak Ridge Housing Authority Receives Funding Assistance of up to $51.8 Million For Renovating Public Housing and Building New Workforce Housing
  • Two fires reported early Friday

Search Oak Ridge Today

Copyright © 2025 Oak Ridge Today