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An Insight on Future Development Approaches of Salt Lake Magnesium Resources:from the Current Situation of China's Magnesium Industry 被引量:2
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作者 HOU Xianhua ZHENG Mianping 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第S1期335-336,共2页
Magnesium-bearing minerals discovered on the earth so far occur mainly as solid or liquid.The former include magnesite(Mg CO3),dolomite(Mg CO3·Ca CO3),carnallite(Mg Cl2·KCl·6H2O),bischofite(Mg Cl2·... Magnesium-bearing minerals discovered on the earth so far occur mainly as solid or liquid.The former include magnesite(Mg CO3),dolomite(Mg CO3·Ca CO3),carnallite(Mg Cl2·KCl·6H2O),bischofite(Mg Cl2·6H2O)and 展开更多
关键词 magnesium metal magnesium industry magnesium resources salt lake the Qaidam Basin
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Intercalation Assembly and Chemical Product Engineering of Layered Intercalated Functional Materials Based on Efficient Utilization of Magnesium Resources in Salt Lakes
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作者 LIN Yanjun NING Bo +1 位作者 LI Kaitao WU Qin 《Acta Geologica Sinica(English Edition)》 SCIE CAS CSCD 2014年第S1期347-349,共3页
1 Introduction Magnesium salts are very important by-product of salt lake industry in West China.Nearly 200 million cubic meters of waste brine are released to the environment
关键词 layered intercalated functional materials Intercalation assembly chemical product engineering magnesium resources salt lakes
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Comprehensive Utilization of Natural Magnesium-Containing Resources and the Development of MgO-Based Refractories 被引量:3
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作者 CHENZhaoyou LIHongxia 《China's Refractories》 CAS 2005年第2期3-15,共13页
关键词 magnesium containing resources MgO based refractories MgO CaO SPINEL Steel refining Cement rotary kiln Nonferrous metallurgy Waste melting furnace
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Use of various MgO resources for high-purity Mg metal production through molten salt electrolysis and vacuum distillation 被引量:1
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作者 Hyeong-Jun Jeoung Tae-Hyuk Lee +5 位作者 Youngjae Kim Jin-Young Lee Young Min Kim Toru HOkabe Kyung-Woo Yi Jungshin Kang 《Journal of Magnesium and Alloys》 SCIE EI CAS CSCD 2023年第2期562-579,共18页
A green and effective electrolytic process was developed to produce high-purity Mg metal using primary and secondary resources containing Mg O as a feedstock. The electrolysis of various Mg O resources was conducted u... A green and effective electrolytic process was developed to produce high-purity Mg metal using primary and secondary resources containing Mg O as a feedstock. The electrolysis of various Mg O resources was conducted using a Cu cathode in MgF2– LiF – KCl molten salt at 1043 K by applying an average current of 1.44 A for 12.5 h. The electrolysis of calcined North Korean magnesite and seawater Mg O clinker yielded Mg alloys of MgCu2and(Cu) phases with current efficiencies of 89.6–92.4%. The electrolysis of oxidized Mg O-C refractory brick, aged ferronickel slag, and ferronickel slag yielded Mg alloys of MgCu2and(Cu) phases with current efficiencies of 59.3–92.3%. The vacuum distillation of Mg alloys obtained was conducted at 1300 K for 10 h to produce high-purity Mg metal. After vacuum distillation, Mg metal with a purity of above 99.994% was obtained. Therefore, this study demonstrates the feasibility of the production of high-purity Mg metal from various Mg O resources using a novel electrolytic process with a Cu cathode, followed by vacuum distillation. 展开更多
关键词 High-purity magnesium magnesium oxide resources Electrolytic process Metal cathode Vacuum distillation
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