-
[1]廖春发,杨文强,王 旭,等.由钨酸盐熔盐电解直接制备钨粉的可行性分析[J].有色金属科学与工程,2011,(04):4.
LIAO Chun-fa,YANG Wen-qiang,WANG Xu,et al.The Feasibility of Tungsten Powder Preparation by Molten
Salt Electrolysis from Tungstate[J].,2011,(06):4.
[2]张小联,彭光怀,郭雪峰,等. 氟化物熔盐共电沉积制备Gd-Zr-Mg合金的研究[J].有色金属科学与工程,2011,(04):1.
ZHANG Xiao-lian,PENG Guang-huai,GUO Xue-feng,et al. Gd-Zr-Mg Master Alloy Production by Co-electrodeposition inFluoride Molten Salt[J].,2011,(06):1.
[3]王 旭a,廖春发a,肖志华b.NaCl-KCl-Na2WO4-CuO体系电解制备钨铜复合粉体研究[J].有色金属科学与工程,2012,(05):34.
WANG Xua,LIAO Chun-faa,XIAO Zhi-huab.Tungsten-copper alloy powder preparation in KCl-NaCl-Na2WO4-CuO system by molten salt electrolysis[J].,2012,(06):34.
[4]赖华生,王林生.电流密度对稀土熔盐电解影响的探讨[J].有色金属科学与工程,2002,(04):25.
LAI Hua-sheng,WANG Lin-sheng.Study of the Effect of Current on RE in Molten-salt Electrolysis[J].,2002,(06):25.
[5]黎绵付.浅议提高熔盐电解金属镨生产稳定性的途径[J].有色金属科学与工程,2002,(04):35.
LI Mian-fu.Improving the Production Stability of Producing Pr-metal in Molten-salt Electrolysis[J].,2002,(06):35.
[6]林伟清,肖祖高.熔盐电解法制取高纯金属镧的研究[J].有色金属科学与工程,2003,(01):32.
LIN Wei-qing,XIAO Zu-gao.Development of Producing High-purity La-metal in Fused-salt Electrolysis Process[J].,2003,(06):32.
[7]李炜.熔盐电解法制取镝铁合金的研究[J].有色金属科学与工程,1999,(01):29.
[8]张小联.稀土熔盐电解中电解槽温度分布测定[J].有色金属科学与工程,1998,(04):24.
[9]万正瑞.金属钕的生产[J].有色金属科学与工程,1991,(03):142.
[10]赵桂芳.熔盐电解制取稀土金属过程界面现象[J].有色金属科学与工程,1989,(01):10.
[11]廖春发,罗林生,王旭.熔盐电解法制备Al-Cu中间合金[J].有色金属科学与工程,2016,(05预):395.
LIAO Chun-fa,LUO Lin-sheng,WANG Xu.Study on Preparation of Al -Cu Intermediate Alloy by Molten-salt electrolytic[J].,2016,(06):395.
[12]肖志华,廖春发,王旭,等.熔盐电解制备铜粉的实验研究[J].有色金属科学与工程,2016,(05预):1360.
XIAO Zhi-hua,LIAO Chun-fa,WANG Xu,et al.Experimental study of molten salt electrolysis Copper Powder Preparation[J].,2016,(06):1360.