sodium (Na): 1
Life Sciences
Information and Communication
Nanotechnology / Materials
Manufacturing Technology
Human and Social Sciences
Energy
Environment
Tourism / Community development
Arctic Research
Social Infrastructure
Open Facilities
-
Production of High-purity Sodium
Recycling of sodium resources by electrorefining
There is a sodium-sulfur rechargeable battery that is mainly used for industrial applications. In this research, I am developing a recovery process of metallic sodium from inside of used batteries, and produce high-purity sodium by electrorefining.
Research
This research is for the development of a process of the purification of metallic sodium containing impurities by electrorefining. Metallic sodium from used sodium-sulfur batteries is used as a source material. By placing the metallic sodium in the upper left (anode) of an electrolysis cell model (Fig. 1) and applying current, the sodium ions dissolve in the electrolyte and only the sodium is deposited on the high-purity sodium (cathode) layer on the upper right. This process can be operated at 200°C or less. The high-purity sodium obtained by this electrolysis is pure enough to be used as a raw material for batteries and growth medium of semiconductor crystal. Since Japan is dependent on foreign countries for sodium resources, we believe that this technology will be widely applied in the future.
Mikito Ueda Professor
Pickup
View All
History
View All
- Semiconductor Precision Processing Technology Taketomo Sato (Associate Professor)
- Gel that is Stronger Than Steel Takayuki Kurokawa (Professor)
- Web Ground Club, which is a cloud-based geothermal heat pump design and performance prediction program, and Japan's Nationwide 3D Grid Strata Database Katsunori Nagano (Professor)
- Development of Den-type Traps to Reduce the Cost of Non-native Raccoon Control Tohru Ikeda (Emeritus Professor)