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NCM계 리튬이온 배터리 양극재의 수소환원과 수침출에 의한 리튬 회수
이소영,이소연,이대현,손호상,So-Yeong Lee,So-Yeon Lee,Dae-Hyeon Lee,Ho-Sang Sohn 한국자원리싸이클링학회 2024 資源 리싸이클링 Vol.33 No.1
The demand for electric vehicles powered by lithium-ion batteries is continuously increasing. Recovery of valuable metals from waste lithium-ion batteries will be necessary in the future. This research investigated the effect of reaction temperature on the lithium recovery ratio from hydrogen reduction followed by water leaching from lithium-ion battery NCM-based cathode materials. As the reaction temperature increased, the weight loss ratio observed after initiation increased rapidly owing to hydrogen reduction of NiO and CoO; at the same time, the H<sub>2</sub>O amount generated increased. Above 602 ℃, the anode materials Ni and Co were reduced and existed in the metallic phases. As the hydrogen reduction temperature was increased, the Li recovery ratio also increased; at 704 ℃ and above, the Li recovery ratio reached a maximum of approximately 92%. Therefore, it is expected that Li can be selectively recovered by hydrogen reduction as a waste lithium-ion battery pretreatment, and the residue can be reprocessed to efficiently separate and recover valuable metals.
PVC에 의한 네오디뮴 자석 스크랩으로부터 희토류 회수
이소영,박성훈,손인준,손호상,Lee, So-Yeong,Park, Sung-Hun,Son, Injoon,Sohn, Ho-Sang 한국자원리싸이클링학회 2018 資源 리싸이클링 Vol.27 No.1
A large amount of Nd-Fe-B magnet scraps are generated during magnet manufacture process. In this study, selective chlorination of the rare earth elements by hydrogen chloride gas which obtained from the pyrolysis of polyvinyl chloride (PVC) was investigated. In thermogravimetric analysis, drastic weight loss was occurred at about 500 K and 710 K. At the isothermal experiments, the weight loss reaches about 30% above 673 K. XRD patterns characterized that after each experiments, ${\alpha}$-Fe, Nd oxychloride, Nd chloride, and Fe chlorides were formed, and the leaching residues remain only ${\alpha}$-Fe. The yields of Nd, Dy, and Fe for the isothermal experiment were increased with temperature and peaked at 873 K. As PVC ratio increased, the yields of Nd, Dy and Fe were also increased.
이소영,손호상,Lee, So-Yeong,Sohn, Ho-Sang 한국자원리싸이클링학회 2018 資源 리싸이클링 Vol.27 No.5
The quality of steel produced from scrap can be adversely affected because of the buildup of tramp elements in recycled scrap. The tramp element of greatest concern is copper because of its effect on steel quality, even in small percentage quantities. In this study, possibility of removal of copper from ferrous scrap by using $Cl_2$ gas is experimentally examined in a small size experimental apparatus. Synthetic ferrous scraps containing copper were reacted with $Cl_2$ gas in various atmosphere. The copper was chloridized and evaporated, whereas iron was oxidized and was not reacted with Cl2 and oxygen mixture gas.
새로운 수직형 비대칭 광 결합구조를 이용한 폴리머 열광학 변조기 구현
이소영,권재영,Lee, So-Yeong,Gwon, Jae-Yeong 대한전자공학회 2000 電子工學會論文誌-SD (Semiconductor and devices) Vol.37 No.5
We newly proposed a polymer based vertical asymmetric optical coupler, which was characterized by simple fabricating procedure and short coupling length. And we fabricated a thermo-optic modulator using the polymeric optical coupler. We optimized the proposed device by coupling characteristic analysis. In a TE polarized 1.33${\mu}{\textrm}{m}$ wavelength, we obtained very short coupling length(L=277.6${\mu}{\textrm}{m}$) with 0.4${\mu}{\textrm}{m}$ thickness of middle layer, high coupling efficiency(94%), and asymmetric vertical waveguides with n$_{u}$ = 1.522, n$_{l}$ = 1.51. We implemented vortical asymmetric thermo-optic modulator with lower inverted rib waveguide and upper slab waveguide. In the 600Hz bandwidth and 4.5㎽ input power, the extinction ratio of the mode was 17㏈ with an insertion loss of 4.5㏈. 제작 공정이 단순하고 결합길이가 매우 짧은 폴리머를 이용한 수직형 비대칭 광 결합기를 새로이 제안하고, 폴리머를 이용한 열광학 변조기를 제작하였다. 전산모의를 통하여 광통신 파장대인 1.33㎛ TE모드에서 중간 버퍼층 두께 t=0.4㎛이고, n/sub u/=1.522, n/sub l/=1.51이고 nt=1.49일 때, 결합길이가 277㎛이며, 최고 94%의 결합 및 재결합 효율을 얻음으로써 비대칭 구조에서의 최적화를 도모하였다. 또한 반전된 립도파로와 평면 도파로를 상하부 수직형태로 갖는 광결합기를 제작하고 폴리머를 이용한 열광학 변조기를 구현하였다. 변조특성은 구동전력 4.5㎽, 소멸비 17㏈, 변조대역 600㎐로 삽입손실은 4.5㏈였다.