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Desiliconization kinetics of nickeliferous laterite ores in molten sodium hydroxide system 被引量:5

Desiliconization kinetics of nickeliferous laterite ores in molten sodium hydroxide system
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摘要 A novel process was proposed for treating nickeliferous laterite ores with molten sodium hydroxide.The effect on silicon extraction caused by the factors,such as stirring speed,reaction temperature,particle size and NaOH-to-ore mass ratio,was investigated.The results show that increasing stirring speed,reaction temperature and NaOH-to-ore mass ratio while decreasing particle size increases silicon extraction rate.The desiliconization kinetics of nickeliferous laterite ores in molten sodium hydroxide system was described successfully by chemical reaction control model.The activation energy of the desiliconization process was found to be 44.01 kJ/mol,and the reaction rate based on a chemical reaction-controlled process can be expressed as:1-(1-α) 1/3 = 27.67exp[-44 010/(RT)]t. A novel process was proposed for treating nickeliferous laterite ores with molten sodium hydroxide.The effect on silicon extraction caused by the factors,such as stirring speed,reaction temperature,particle size and NaOH-to-ore mass ratio,was investigated.The results show that increasing stirring speed,reaction temperature and NaOH-to-ore mass ratio while decreasing particle size increases silicon extraction rate.The desiliconization kinetics of nickeliferous laterite ores in molten sodium hydroxide system was described successfully by chemical reaction control model.The activation energy of the desiliconization process was found to be 44.01 kJ/mol,and the reaction rate based on a chemical reaction-controlled process can be expressed as:1-(1-α 1/3 = 27.67exp[-44 010/(RT)]t.
出处 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第2期330-335,共6页 中国有色金属学报(英文版)
基金 Project(2007CB613603)supported by the National Basic Research Program of China
关键词 脱硅动力学 氢氧化钠 红土矿 熔融钠 系统 搅拌速度 反应温度 NAOH nickeliferous laterite ores sodium hydroxide silicon dioxide kinetics desiliconization
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