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Erschienen in: Journal of Material Cycles and Waste Management 4/2018

13.12.2017 | SPECIAL FEATURE: ORIGINAL ARTICLE

Development of Mn recovery process from waste dry cell batteries

verfasst von: T. Yamaguchi, H. Nagano, R. Murai, H. Sugimori, C. Sekiguchi, I. Sumi

Erschienen in: Journal of Material Cycles and Waste Management | Ausgabe 4/2018

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Abstract

High-purity Mn is necessary for high strength steel production. However, the availability of metal Mn is limited to a few countries. Therefore, as an alternative to direct purchasing of metal Mn, a process for Mn recovery was investigated. Waste dry cell batteries are considered to be one of the most feasible Mn sources. We have developed a high efficiency chemical separation system. This system consists of a three-phase chemical treatment. In the first phase, the metal components of the waste dry cell batteries were dissolved by acid, along with a reducing agent. Afterward, the undissolved carbon particles were separated by filtration. In the second phase, the dissolved Mn was selectively precipitated as manganese oxide by O3 oxidation. Then, the precipitated manganese oxide was separated from the other metal components by filtration. Finally, in the third phase, the manganese oxide was reduced to high-purity Mn using an electric furnace.

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Literatur
1.
Zurück zum Zitat Zackay VF, Parker ER, Fahr D, Busch R (1967) The enhancement of ductility in high strength steels. Trans Am Soc Met 60:252–259 Zackay VF, Parker ER, Fahr D, Busch R (1967) The enhancement of ductility in high strength steels. Trans Am Soc Met 60:252–259
2.
Zurück zum Zitat Tsukatani I, Hashimoto S, Inoue T (1991) Effects of silicon and manganese addition on mechanical properties of high-strength hot-rolled sheet steel containing retained austenite. ISIJ Int 31:992–1000CrossRef Tsukatani I, Hashimoto S, Inoue T (1991) Effects of silicon and manganese addition on mechanical properties of high-strength hot-rolled sheet steel containing retained austenite. ISIJ Int 31:992–1000CrossRef
3.
Zurück zum Zitat Grässel O, Krüger L, Frommeyer G, Meyer LW (2000) High strength Fe-Mn-(Al, Si) TRIP/TWIP steels development—properties—application. Int J Plast 16:1391–1409CrossRef Grässel O, Krüger L, Frommeyer G, Meyer LW (2000) High strength Fe-Mn-(Al, Si) TRIP/TWIP steels development—properties—application. Int J Plast 16:1391–1409CrossRef
4.
Zurück zum Zitat Hanamura T, Torizuka S, Sunahara A, Imagumbai M, Takechi H (2011) Excellent total mechanical-properties-balance of 5% Mn, 30000 MPa% steel. ISIJ Int 51:685–687CrossRef Hanamura T, Torizuka S, Sunahara A, Imagumbai M, Takechi H (2011) Excellent total mechanical-properties-balance of 5% Mn, 30000 MPa% steel. ISIJ Int 51:685–687CrossRef
5.
Zurück zum Zitat Sugimoto K, Yu B, Mukai Y, Ikeda S (2005) Microstructure and formability of aluminum bearing TRIP-aided steels with annealed martensite matrix. ISIJ Int 45:1194–1200CrossRef Sugimoto K, Yu B, Mukai Y, Ikeda S (2005) Microstructure and formability of aluminum bearing TRIP-aided steels with annealed martensite matrix. ISIJ Int 45:1194–1200CrossRef
6.
Zurück zum Zitat Wang C, Shi J, Wang CY, Hui WJ, Wang MQ, Dong H, Cao WQ (2011) Development of ultrafine lamellar ferrite and austenite duplex structure in 0.2C5Mn steel during ART-annealing. ISIJ Int 51:651–656CrossRef Wang C, Shi J, Wang CY, Hui WJ, Wang MQ, Dong H, Cao WQ (2011) Development of ultrafine lamellar ferrite and austenite duplex structure in 0.2C5Mn steel during ART-annealing. ISIJ Int 51:651–656CrossRef
7.
Zurück zum Zitat Bayraktar E, Khalid FB, Levaillant C (2004) Deformation and fracture behaviour of high manganese austenitic steel. J Mater Proc Technol 147:145–154CrossRef Bayraktar E, Khalid FB, Levaillant C (2004) Deformation and fracture behaviour of high manganese austenitic steel. J Mater Proc Technol 147:145–154CrossRef
8.
Zurück zum Zitat Jiménez JA, Frommeyer G (2010) Analysis of the microstructure evolution during tensile testing at room temperature of high-manganese austenitic steel. Mater Charact 61:221–226CrossRef Jiménez JA, Frommeyer G (2010) Analysis of the microstructure evolution during tensile testing at room temperature of high-manganese austenitic steel. Mater Charact 61:221–226CrossRef
12.
Zurück zum Zitat Nishimura T, Umetsu Y (1991) Oxidation of manganese ion by ozone in sulfate solutions. J MMIJ 107:556–561 (in Japanese) CrossRef Nishimura T, Umetsu Y (1991) Oxidation of manganese ion by ozone in sulfate solutions. J MMIJ 107:556–561 (in Japanese) CrossRef
13.
Zurück zum Zitat Nishimura T, Umetsu Y (1991) Manganese dioxide particles produced by ozonation in acidic manganese sulfate solution. J MMIJ 107:805–810 (in Japanese) CrossRef Nishimura T, Umetsu Y (1991) Manganese dioxide particles produced by ozonation in acidic manganese sulfate solution. J MMIJ 107:805–810 (in Japanese) CrossRef
14.
Zurück zum Zitat Nishimura T, Umetsu Y (1992) Characterization of manganese dioxide produced by ozone oxidation in acidified sulfate solutions, based on X-ray diffraction. J MMIJ 108:373–377 (in Japanese) CrossRef Nishimura T, Umetsu Y (1992) Characterization of manganese dioxide produced by ozone oxidation in acidified sulfate solutions, based on X-ray diffraction. J MMIJ 108:373–377 (in Japanese) CrossRef
15.
Zurück zum Zitat Nishimura T, Kamaya T, Umetsu Y (1992) Manganese dioxide produced by ozone oxidation in highly acidified sulfate solutions. J MMIJ 108:473–477 (in Japanese) CrossRef Nishimura T, Kamaya T, Umetsu Y (1992) Manganese dioxide produced by ozone oxidation in highly acidified sulfate solutions. J MMIJ 108:473–477 (in Japanese) CrossRef
16.
Zurück zum Zitat Nishimura T, Umetsu Y, Sasaki M (1992) Discharge behavior of manganese dioxide produced by ozone oxidation. J MMIJ 108:891–895 (in Japanese) CrossRef Nishimura T, Umetsu Y, Sasaki M (1992) Discharge behavior of manganese dioxide produced by ozone oxidation. J MMIJ 108:891–895 (in Japanese) CrossRef
17.
Zurück zum Zitat Nishimura T, Umetsu Y (1995) Oxidation-precipitation reaction with ozone in strongly acidified MnSO4 solutions with/without addition of other sulfate. J MMIJ 111:329–334 (in Japanese) CrossRef Nishimura T, Umetsu Y (1995) Oxidation-precipitation reaction with ozone in strongly acidified MnSO4 solutions with/without addition of other sulfate. J MMIJ 111:329–334 (in Japanese) CrossRef
18.
Zurück zum Zitat Nishimura T, Umetsu Y (1994) Application of ozone to aqueous processing. Bulletin of the Institute for Advanced Materials Processing, Tohoku University. 50:108–127 (in Japanese) Nishimura T, Umetsu Y (1994) Application of ozone to aqueous processing. Bulletin of the Institute for Advanced Materials Processing, Tohoku University. 50:108–127 (in Japanese)
19.
Zurück zum Zitat Nishimura T, Umetsu Y (2000) X-ray diffraction and discharge behavior of produced by ozone oxidation in acidified MnSO4 solutions with addition of other sulfate. J MMIJ 116:285–290 (in Japanese) CrossRef Nishimura T, Umetsu Y (2000) X-ray diffraction and discharge behavior of produced by ozone oxidation in acidified MnSO4 solutions with addition of other sulfate. J MMIJ 116:285–290 (in Japanese) CrossRef
20.
Zurück zum Zitat Japan ozone association (2012) Ozone concentration measuring method (in Japanese) Japan ozone association (2012) Ozone concentration measuring method (in Japanese)
21.
Zurück zum Zitat Pourbaix M (1974) Atlas of electrochemical equilibria in aqueous solutions. National Association of Corrosion Engineers, Houston Pourbaix M (1974) Atlas of electrochemical equilibria in aqueous solutions. National Association of Corrosion Engineers, Houston
23.
Zurück zum Zitat Appelo CAJ, Postma D (2005) Geochemistry, Groundwater and Pollution, 2nd edn. Taylor and Francis, New YorkCrossRef Appelo CAJ, Postma D (2005) Geochemistry, Groundwater and Pollution, 2nd edn. Taylor and Francis, New YorkCrossRef
25.
Zurück zum Zitat Wang Y, Yoshikawa K, Namioka T, Hashimoto Y (2007) Performance optimization of two-staged gasification system for woody biomass. Fuel Process Technol 88:243–250CrossRef Wang Y, Yoshikawa K, Namioka T, Hashimoto Y (2007) Performance optimization of two-staged gasification system for woody biomass. Fuel Process Technol 88:243–250CrossRef
26.
Zurück zum Zitat Quian Y, Zuo C, Tan J, He J (2007) Structural analysis of bio-oils from sub-and supercritical water liquefaction of woody biomass. Energy 32:196–202CrossRef Quian Y, Zuo C, Tan J, He J (2007) Structural analysis of bio-oils from sub-and supercritical water liquefaction of woody biomass. Energy 32:196–202CrossRef
27.
Zurück zum Zitat Kumabe K, Hanaoka T, Fujimoto S, Minowa T, Sakanishi K (2007) Co-gasification of woody biomass and coal with air and steam. Fuel 86:684–689CrossRef Kumabe K, Hanaoka T, Fujimoto S, Minowa T, Sakanishi K (2007) Co-gasification of woody biomass and coal with air and steam. Fuel 86:684–689CrossRef
Metadaten
Titel
Development of Mn recovery process from waste dry cell batteries
verfasst von
T. Yamaguchi
H. Nagano
R. Murai
H. Sugimori
C. Sekiguchi
I. Sumi
Publikationsdatum
13.12.2017
Verlag
Springer Japan
Erschienen in
Journal of Material Cycles and Waste Management / Ausgabe 4/2018
Print ISSN: 1438-4957
Elektronische ISSN: 1611-8227
DOI
https://doi.org/10.1007/s10163-017-0679-0

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