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氟化物熔盐的制备及其应用进展(14)

来源:冶金与材料 【在线投稿】 栏目:期刊导读 时间:2021-04-20
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摘要:[97]OLSON J M,CARLETON K L. A semipermeable a node for silicon electrorefining[J]. Journal of The Electrochemical Society,1981,128(12):2698-2699. [98]SHARMA I G,MUKHERJEE T K. A study on

[97]OLSON J M,CARLETON K L. A semipermeable a node for silicon electrorefining[J]. Journal of The Electrochemical Society,1981,128(12):2698-2699.

[98]SHARMA I G,MUKHERJEE T K. A study on purification of metallurgical grade silicon by molten salt electrorefining[J].Metallurgical Transactions B,1986,17B:395-397.

[99]BIEBER A L,MASSOT L,GIBILARO M,et al. Silicon electrodeposition in molten fluorides[J]. Electrochimica Acta,2012,62:282-289.

[100]SAKANAKA Y,GOTO T. Electrodeposition of Si film on Ag substrate in molten LiF-NaF-KF directly dissolving SiO2[J].Electrochimica Acta,2015,164 :139-142.

[101]RYU H Y,AN Y S,JANG B Y,et of high purity Si nanofiber from metallurgical grade Si by molten salt electrorefining[J]. Materials Chemistry and Physics,2012,137:160-168.

[102]HAARBERG G M,FAMIYEH L,MARTINEZ A M,et of silicon from fluoride melts[J]. Electrochimica Acta,2013,100:226-228.

[103]MASSOT L,BIEBER A L,GIBILARO M,et al. Silicon recovery from silicon-iron alloys by electrorefining in molten fluorides[J].Electrochimica Acta,2013,96:97-102.

[104]邹祥宇,谢宏伟,翟玉春,等.熔盐电解精炼制备太阳能级多晶硅[J].东北大学学报(自然科学版),2012,33(12): X Y,XIE H W,ZHAI Y C,et of solar grade silicon by electrorefining[J]. Journal of Northeastern University(Natural Science),2012,33(12):1741-1744.

[105]贾明,田忠良,赖延清,等. 电解精炼制备太阳级硅杂质研究[J].物理学报,2010,59(3): M,TIAN Z L,LAI Y Q,et al. Study on the removal of impurities in silicon by electrorefining[J].Acta Physica Sinica,2010,59(3):1938-1945.

[106]贾明,赖延清,田忠良,等. Na3AlF6-LiF熔盐体系中硅的电沉积行为[J]. 物理化学学报,2011,27(5): M,LAI Y Q,TIAN Z L,et al. Electrodeposition behavior of silicon from Na3AlF6-LiF melts[J]. Acta Phys. -,2011,27(5):1108-1115.

[107]OISHI T,KOYAMA K,TANAKA M. Electrorefining of silicon using molten salt and liquid alloy electrodes[J]. Journal of The Electrochemical Society,2016,163(14):E385-E389.

[108]张志宏,梁行方,琚建勇,等. 我国氟盐体系氧化钕电解制备金属钕技术现状及进展[J]. 有色冶炼,2001,30(2): Z H,LIANG X F,JU J Y,et al. Present situation and latest progress of process for producing metallic Neodymium by electrolysis of neodymium oxide with fluoride salts[J]. Non-Ferrous Smelting,2001,30(2):23-26.

[109]陈国华,曹永存,刘玉宝,等. 熔盐电解法制备镨钕钆合金的研究[J]. 中国稀土学报,2015,33(2): G H,CAO Y C,LIU Y B,et al. Preparation of Pr-Nd-Gd alloys by molten salt electrolysis [J]. Journal of the Chinese Society of Rare Earths,2015,33(2):206-210.

[110]焦士琢,吴迪武,牛树生,等.一种连续电解生产金属钕及钕铁合金的槽型结构:[P]. 1986-07-02.JIAO S Z,WU D W,NIU S S,et al. An electrolysis trough structure for continuous production of metal Nd and Nd-Fe alloy:CN[P]. 1986-07-02.

[111]庞思明,颜世宏,李宗安,等. 我国熔盐电解法制备稀土金属及其合金工艺技术进展[J].稀有金属,2011,35(3): S M,YAN S H,LI Z A,et al. Development on molten salt electrolytic methods and technology for preparing rare earth metals and alloys in China[J]. Chinese Journal of Rare Metals,2011,35(3):440-450.

[112]郭探,王世栋,叶秀深,等. 熔盐电解法制备稀土合金研究进展[J]. 中国科学(化学),2012,42(9): T,WANG S D,YE X S,et al. Research progress in the preparation of rare earth alloys by molten salt electrolysis method[J].SCIENTIA SINICA(Chimica),2012,42(9):1328-1336.

[113]陈国华,王小青,刘玉宝,等. 熔盐电解法制备镨钕镝合金的研究[J].稀土,2015,36(1): G H,WANG X Q,LIU Y B,et al. Preparation of Pr-Nd-Dy alloys by molten salt electrolysis[J]. Chinese Rare Earths,2015,36(1):80-84.

[114]王健,华中胜,马欢,等. 熔盐电解法制备稀土镁合金的研究进展[J]. 稀土,2017,38(2): J,HUA Z S,MA H,et progress on preparation of rare earth magnesium alloys by molten salt electrolysis[J].Chinese Rare Earths,2017,38(2):100-113.

[115]STEFANIDAKI E,HASIOTIS C,KONTOYANNIS of neodymium from LiF-NdF3-Nd2O3melts[J].Electrochimica Acta,2001,46:2665-2670.

[116]陈德宏,颜世宏,李宗安,等. NdF3-LiF-Nd2O3熔盐体系中下阴极电解金属钕研究[J]. 中国稀土学报,2009,27(2): D H,YAN S H,LI Z A,et cell for neodymium electrolysis in NdF3-LiF-Nd2O3molten salt[J]. Journal of the Chinese Rare Earth Society,2009,27(2):302-305.

[117]廖春发,罗林生,王旭,等. 熔盐电解制备铝钕中间合金及其机理[J]. 中国有色金属学报,2015,25(12): C F,LUO L S,WANG X,et al. Preparation for Al-Nd intermediate alloy by molten-salt electrolysis method and its mechanism[J]. The Chinese Journal of Nonferrous Metals,2015,25(12):3523-3529.

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