-
[1]黄龙海,聂华平,谢芳浩,等.磷精矿中微量稀土回收的试验研究[J].有色金属科学与工程,2010,(02):34.
HUANG Long-hai,NIE Hua-ping,XIE Fang-hao,et al.Experimental Study of Trace Rare-earth Recycling out of Phosphorite[J].,2010,(04):34.
[2]王林生,陈建军,周 健,等.助熔剂对Y3Al5O12:Ce荧光粉的影响[J].有色金属科学与工程,2011,(02):28.
WANG Lin-sheng,CHEN Jian-jun,ZHOU Jian,et al.Influences of Flux on Properties of Y3Al5O12:Ce Phosphor[J].,2011,(04):28.
[3]黄海平.稀土发光性能研究及其应用[J].有色金属科学与工程,2011,(03):3.
HUANG Hai-ping.The Luminescent Properties of Rare Earth and Its Applications[J].,2011,(04):3.
[4]刘 平,董速伟,李安运,等.ICP-MS在稀土元素分析中的应用[J].有色金属科学与工程,2011,(03):20.
LIU Ping,DONG Su-wei,LI An-yun,et al.The Applications of ICP-MS in Analyzing Rare Earth Elements[J].,2011,(04):20.
[5]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,(04):4.
[6]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,(04):1.
[7]邓佐国,徐廷华.国外稀土等矿产资源储备的几点启示[J].有色金属科学与工程,2011,(06):39.
DENG Zuo-guo,XU Ting-hua.On the mineral resource reserve systems outside China[J].,2011,(04):39.
[8]曾青云,曾清全,常卿卿.环烷酸体系萃取分离稀土和铝的实验研究[J].有色金属科学与工程,2012,(02):17.
ZENG Qing-yun,ZENG Qing-quan,CHANG Qing-qing.On the extraction and separation of rare earth and aluminumin naphthenic acid system[J].,2012,(04):17.
[9]孙 峰,冯秀娟.稀土矿开发过程污染物对土壤生物有效性研究进展[J].有色金属科学与工程,2012,(04):57.
SUN Feng,FENG Xiu-juan.Research progress of pollutants’ effects on farmland soil bioavailability during rare earth mining process[J].,2012,(04):57.
[10]吴一丁a,廖列法b.稀土行业整合的背景、问题及策略[J].有色金属科学与工程,2012,(04):63.
WU Yi-dinga,LIAO Lie-fab.Background, Problems and Strategies for Rare Earth Industry Integration[J].,2012,(04):63.
[11]卢小能,张小增,谢欣荣,等.25kA熔盐电解法制备稀土镨钕合金非稀土杂质有效控制的研究[J].有色金属科学与工程,2016,(05预):380.
LU Xiaoneng,ZHANG Xiaozeng,XIE Xinrong,et al.Study on the effective control of non-rare earth in production of praseodymium neodymium alloy by 25 kA molten salt electrolysis[J].,2016,(04):380.
[12]汪金良,杨宜清.基于Comsol的稀土熔盐电解槽电场分析[J].有色金属科学与工程,2016,(06):30.[doi:10.13264/j.cnki.ysjskx.2016.06.006]
WANG Jinliang,YANG Yiqing.Analysis of electric field in rare earth molten salt electrolytic cell based on Comsol[J].,2016,(04):30.[doi:10.13264/j.cnki.ysjskx.2016.06.006]