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Alumina reduction by laser sustained plasma for aluminum-based renewable energy cycling
A novel alumina (Al2O3) reduction technique for a renewable energy cycling system based on aluminum is proposed. Al2O3 powder was fed into laser-sustained plasma and thermally dissociated. The produced Al was expanded to supersonic speeds through a nozzle. From the Al and argon line distributions in the flow direction, it was found that Al remained in the dissociated state. A water-cooled copper tube was inserted in the flow to collect Al. X-ray analysis indicated that elemental Al was observed on the surface of the tube. The maximum value of the estimated reduction efficiency was 5&percent;.
Alumina reduction by laser sustained plasma for aluminum-based renewable energy cycling
A novel alumina (Al2O3) reduction technique for a renewable energy cycling system based on aluminum is proposed. Al2O3 powder was fed into laser-sustained plasma and thermally dissociated. The produced Al was expanded to supersonic speeds through a nozzle. From the Al and argon line distributions in the flow direction, it was found that Al remained in the dissociated state. A water-cooled copper tube was inserted in the flow to collect Al. X-ray analysis indicated that elemental Al was observed on the surface of the tube. The maximum value of the estimated reduction efficiency was 5&percent;.
Alumina reduction by laser sustained plasma for aluminum-based renewable energy cycling
Matsui, Makoto (author) / Fukuji, Naohiro (author) / Nakano, Masakatsu (author) / Komurasaki, Kimiya (author) / Arakawa, Yoshihiro (author) / Goto, Tetsuya (author) / Shirakata, Hirofumi (author)
Journal of Renewable and Sustainable Energy ; 5 ; 039101-
2013-05-01
5 pages
Article (Journal)
Electronic Resource
English
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