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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Reaction condition optimization and kinetic investigation of roasting zinc oxide ore using (NH4)(2)SO4
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Reaction condition optimization and kinetic investigation of roasting zinc oxide ore using (NH4)(2)SO4

机译:(NH4)(2)SO4焙烧氧化锌矿石的反应条件优化和动力学研究

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An orthogonal test was used to optimize the reaction conditions of roasting zinc oxide ore using (NH4)(2)SO4. The optimized reaction conditions are defined as an (NH4)(2)SO4/zinc molar ratio of 1.4:1, a roasting temperature of 440A degrees C, and a thermostatic time of 60 min. The molar ratio of (NH4)(2)SO4/zinc is the most predominant factor and the roasting temperature is the second significant factor that governs the zinc extraction. Thermogravimetric-differential thermal analysis was used for (NH4)(2)SO4 and zinc mixed in a molar ratio of 1.4:1 at the heating rates of 5, 10, 15, and 20 K center dot min(-1). Two strong endothermic peaks indicate that the complex chemical reactions occur at approximately 290A degrees C and 400A degrees C. XRD analysis was employed to examine the transformations of mineral phases during roasting process. Kinetic parameters, including reaction apparent activation energy, reaction order, and frequency factor, were calculated by the Doyle-Ozawa and Kissinger methods. Corresponding to the two endothermic peaks, the kinetic equations were obtained.
机译:采用正交试验优化了使用(NH4)(2)SO4焙烧氧化锌矿石的反应条件。优化的反应条件定义为(NH4)(2)SO4 /锌的摩尔比为1.4:1,焙烧温度为440A摄氏度,恒温时间为60分钟。 (NH4)(2)SO4 /锌的摩尔比是最主要的因素,而焙烧温度是控制锌提取的第二重要因素。热重差热分析用于(NH4)(2)SO4和以1.4:1摩尔比混合的锌,加热速率分别为5、10、15和20 K中心点min(-1)。两个强吸热峰表明,复杂的化学反应发生在大约290A摄氏度和400A摄氏度。XRD分析用于检查焙烧过程中矿物相的转变。动力学参数,包括反应表观活化能,反应阶数和频率因子,是通过Doyle-Ozawa和Kissinger方法计算的。对应于两个吸热峰,获得了动力学方程。

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