1 Park, H. K., "Review on the Current Status of Magnesium Smelting" 11 (11): 13-18, 2008
2 정상문, "Preparation of Metallic Niobium from Niobium Pentoxide by and Electrolytic Reduction in a LiCl-Li2O Molten Salt" ELSEVIER SCIENCE SA 452 (452): 27-31, 200803
3 Thayer, R. L., "Improving the Electrolytic Process for Magnesium Production" 53 (53): 15-17, 2001
4 Martinez, A. M., "Electrodeposition of Magnesium from the Eutectic LiCl-KCl melt" 34 (34): 1271-1278, 2004
5 Martinez, A. M., "Electrodeposition of Magnesium from CaCl2- NaCl-KCl-MgCl2 Melts" 151 (151): C508-C513, 2004
6 정상문, "Electrochemical reduction behavior of U3O8 powder in a LiCl molten salt" PERGAMON-ELSEVIER SCIENCE LTD 55 (55): 1749-1755, 201002
7 Castrillegjo, Y., "Electrochemical Behavior of Magnesium Ions in the Equimolar CaCl2-NaCl Mixture at 550 °C" 42 (42): 1869-1876, 1997
8 Rajagopalan, N., "Developing an Energy-Efficient Electrolytic Cell for Magnesium" 52 (52): 18-19, 2000
9 Store, T., "Determination of Diffusion Coefficients of Depositing Ions in Molten Chlorides by Transient Electrochemical Techniques" 30 (30): 1351-1360, 2000
10 정상문, "Characteristics of an Electrochemical Reduction of Ta2O5 to Metallic Tantalum in a LiCl-Li2O Molten Salt" ELSEVIER SCIENCE SA 440 (440): 210-215, 200708
1 Park, H. K., "Review on the Current Status of Magnesium Smelting" 11 (11): 13-18, 2008
2 정상문, "Preparation of Metallic Niobium from Niobium Pentoxide by and Electrolytic Reduction in a LiCl-Li2O Molten Salt" ELSEVIER SCIENCE SA 452 (452): 27-31, 200803
3 Thayer, R. L., "Improving the Electrolytic Process for Magnesium Production" 53 (53): 15-17, 2001
4 Martinez, A. M., "Electrodeposition of Magnesium from the Eutectic LiCl-KCl melt" 34 (34): 1271-1278, 2004
5 Martinez, A. M., "Electrodeposition of Magnesium from CaCl2- NaCl-KCl-MgCl2 Melts" 151 (151): C508-C513, 2004
6 정상문, "Electrochemical reduction behavior of U3O8 powder in a LiCl molten salt" PERGAMON-ELSEVIER SCIENCE LTD 55 (55): 1749-1755, 201002
7 Castrillegjo, Y., "Electrochemical Behavior of Magnesium Ions in the Equimolar CaCl2-NaCl Mixture at 550 °C" 42 (42): 1869-1876, 1997
8 Rajagopalan, N., "Developing an Energy-Efficient Electrolytic Cell for Magnesium" 52 (52): 18-19, 2000
9 Store, T., "Determination of Diffusion Coefficients of Depositing Ions in Molten Chlorides by Transient Electrochemical Techniques" 30 (30): 1351-1360, 2000
10 정상문, "Characteristics of an Electrochemical Reduction of Ta2O5 to Metallic Tantalum in a LiCl-Li2O Molten Salt" ELSEVIER SCIENCE SA 440 (440): 210-215, 200708
11 Gao, F., "Assessing Environmental Impact of Magnesium ProductionUsing Pidgeon Process in China" 18 (18): 749-754, 2008