Zobrazeno 1 - 10
of 46
pro vyhledávání: '"Sung-Ho Joo"'
Publikováno v:
Archives of Metallurgy and Materials, Vol vol. 64, Iss No 2, Pp 481-485 (2019)
This study was attempted to study for recovery of Li as Li2CO3 from cathode active material, especially NCA (LiNiCoAlO2), recovered from spent lithium ion batteries. This consists of two major processes, carbonation using CO2 and water leaching. Carb
Externí odkaz:
https://doaj.org/article/6d82b607d733406893d0564893a3e702
Autor:
Sung-Ho Joo, Dong Ju Shin, Dongseok Lee, Jungshin Kang, Min-seuk Kim, Hoseok Jeon, Jin-Tae Park, Shun Myung Shin
Publikováno v:
Metals, Vol 10, Iss 5, p 588 (2020)
To manufacture TiO2, a high-purity synthetic rutile, the recovery of Ti was investigated using a hydro-metallurgical process. Using a feed solution containing 32050 mg/L Ti, 110 mg/L Si, 88 mg/L Nb, 2614 mg/L Fe, and 130 mg/L Zr, solvent-extraction e
Externí odkaz:
https://doaj.org/article/420c983a072a46c0b72e431cb87e6967
Publikováno v:
Metals, Vol 7, Iss 10, p 439 (2017)
We investigated the preparation of CMB (cobalt-manganese-bromide) and CMA (cobalt-manganese-acetate) liquid catalysts as petroleum liquid catalysts by simultaneously recovering Co and Mn from spent Li-ion battery cathode material. To prepare the liqu
Externí odkaz:
https://doaj.org/article/42fa141eae0d499ea671a29efc1beac3
Publikováno v:
Resources Recycling. 32:42-49
Study for Manufacturing of Zinc Sulfate from Electric Arc Furnace Dust by Hydrometallrugical Process
Publikováno v:
Resources Recycling. 32:33-41
Publikováno v:
The Canadian Journal of Chemical Engineering. 100:3760-3767
Publikováno v:
Resources Recycling. 31:65-77
Publikováno v:
Green Chemistry. 24:790-799
An environmentally friendly hydrometallurgical process was developed to recover vanadium and cesium selectively from spent sulfuric acid catalysts, and it has high recovery efficiency and economic advantages.
Publikováno v:
Resources Recycling. 30:57-66
Publikováno v:
Journal of Environmental Sciences. 107:98-110
The behavior and mechanism of Li leaching from lithium aluminum silicate glass-ceramics which can be used as a secondary source of Li using aqueous NaOH solution was investigated. The Li leaching efficiency is increased with increasing concentration