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Shun Myung Shin

Researcher at Korea University of Science and Technology

Publications -  29
Citations -  921

Shun Myung Shin is an academic researcher from Korea University of Science and Technology. The author has contributed to research in topics: Leaching (metallurgy) & Chemistry. The author has an hindex of 11, co-authored 21 publications receiving 649 citations.

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Recovery of cobalt sulfate from spent lithium ion batteries by reductive leaching and solvent extraction with Cyanex 272

TL;DR: Cobalt sulfate was recovered from crushed and screened prismatic type spent lithium ion batteries (LIBs) containing 5-20% Co, 5-7% Li, 5 -10% Ni, 15% organic chemicals, and 7% plastics together with Cu, Al, Fe, and Mn as mentioned in this paper.
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Selective extraction and separation of nickel from cobalt, manganese and lithium in pre-treated leach liquors of ternary cathode material of spent lithium-ion batteries using synergism caused by Versatic 10 acid and LIX 84-I

TL;DR: In this article, the effect of Versatic 10 acid concentration was the experimental variable in the mixture of extractants, which decreased the pH50 for nickel extraction and pH 5 was chosen as the most suitable pH for solvent extraction.
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Preparation of cobalt oxide from concentrated cathode material of spent lithium ion batteries by hydrometallurgical method

TL;DR: Cobalt oxide was prepared from spent lithium ion batteries (LIBs) by reductive leaching, copper sulfide precipitation, cobalt oxalate precipitation and thermal decomposition as mentioned in this paper.
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Leaching kinetics of lanthanum in sulfuric acid from rare earth element (REE) slag

TL;DR: In this paper, the leaching kinetics of lanthanum from the slag were studied under the conditions of slurry density of 1.5g slag per L of 0.3m H 2 SO 4, agitation of 750-rpm and temperature ranging from 30 to 80°C.
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Extraction of manganese by alkyl monocarboxylic acid in a mixed extractant from a leaching solution of spent lithium-ion battery ternary cathodic material

TL;DR: In this article, the authors investigated the separation of manganese by an antagonistic effect from a leaching solution of ternary cathodic material of spent lithium-ion batteries that contain 11,400mg L 1 Co, 11,700mg L 2 Co, 12,200m Ni, and 5300m Li using a mixture of alkyl monocarboxylic acid and di-(2-ethylhexyl)phosphoric acid extractants.