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1.
在1 000~1 250 ℃范围内,采用高温平衡-淬冷-EDS方法研究了含铅固废协同冶炼过程PbO-CaO-SiO2-Fe2O3-ZnO五元渣系在空气气氛下的相平衡规律。研究结果表明,渣中存在的主要物相有尖晶石(ZnxFe3-yO4+z)、红锌矿(ZnO)、黄长石(PbvCa2-vZnwSi2O7)、赤铁矿(Fe2O3)、磁铁铅矿(PbFe10O16)和硅钙石(Ca2-tPbtSiO4)。在1 250 ℃、1 200 ℃、1 170 ℃、1 130 ℃和1 100 ℃下,PbO-CaO-SiO2-Fe2O3-ZnO体系的液相点分布测试结果与MTDATA6.0软件模拟液相线基本吻合。在1 000~1 250 ℃范围内,随着结晶过程的进行,PbO-CaO-SiO2-Fe2O3-ZnO体系液相成分中Fe2O3含量从16.83%减少到7.67%,ZnO含量从7.62%减少到2.98%,(PbO+CaO+SiO2)含量从75.55%增加到89.36%。  相似文献   
2.
在理论分析的基础上,以贵州遵义镍钼矿为原料,提出了镍钼矿碱性还原熔炼?水浸提钼的清洁冶金新工艺,考察了Na2CO3用量、温度、还原剂用量、反应时间对镍还原率及钼浸出率的影响,在最优条件下进行了扩大实验. 结果表明,在碱性介质及强还原气氛下,镍钼矿中的镍被还原成高品位镍铁合金,钼转化为可溶性的钼酸盐;最佳工艺条件为Na2CO3用量为理论量的2倍、熔炼温度1000℃、还原剂添加量为镍钼矿的5wt%、反应时间1.5 h. 最佳条件下扩大实验金属镍回收率为94.92%,金属钼挥发率为9.36%,浸出率为99.94%,固硫率接近100%,得到了高品位镍铁合金和含钼浸出液,镍钼有效分离.  相似文献   
3.
Leaching of heavy metals from Sedum alfredii Hance biomass was studied with ammonia-ammonium chloride solution as leaching agent. The research was carried out in two phases: 1) a leaching study to determine the zinc extraction efficiency of this leaching agent, and 2) a thermodynamic analysis to identify the likely reactions and stable Zn(II) species formed in the leaching systems. Taguchi orthogonal experiment, with four variable parameters, leaching temperature, molar ratio of NH4Cl to NH3, leaching time and solid-to-liquid(L/S) ratio, and each at three levels, was used to optimize the experiment parameters by the analysis of variances. The results indicate that leaching temperature has the most dominant effect on metal extraction performance, followed by molar ratio of NH4Cl to NH3, solid-to-liquid ratio and leaching time. The optimum condition was obtained as follows: temperature of 60°C, molecular ratio of NH4Cl to NH3 of 0.6, leaching time of 2 h and solid-to-liquid ratio of 5:1. The total zinc leaching efficiency under optimum conditions reaches 97.95%. The thermodynamic study indicates that the dominant species produced by the leaching process should be the soluble Zn(NH3)42+.  相似文献   
4.
从超富集植物Berkheya coddii中回收镍   总被引:1,自引:0,他引:1  
提出了超富集植物的"焚烧→湿法提取与净化→电化学沉积/化学沉淀法→金属/化工产品"工艺.以镍的超富集植物Berkheya coddii为例,对该收扶物进行焚烧处理后,对焚烧产物进行氨法浸出,对浸出液进行一定处理后直接进行电积镍,最终得到高纯镍板(99.999%),该工艺既实现了对超富集植物收获物的去毒化处理,又实现了收获物中有价金属的回收.对于浸出实验,优化实验条件分别为:浸出温度60℃,氯化铵及氨水的摩尔比(n(NH4Cl):n(NH3))0.6,液固LL(L/S)5:1,浸出时间2 h;对于镍电积实验,优化实验条件为:p(Ni2+)浓度23 g/L,极距3.5 cm;电流密度200A/m2,温度40℃.  相似文献   
5.
本文针对某锌冶炼厂高酸浸出渣含银高的特点,采用硫酸化焙烧-水浸脱锌铁-氯化浸银-冷却结晶PbCl2-铅片置换沉银的工艺,对高酸浸出渣开展了回收银的研究。结果表明,锌和铁的浸出率分别达到92.66%和94.67%,浸出液返回炼锌主流程生产电锌;银和铅的浸出率分别达到94.17%和97.89%;用铅片置换得到粗银粉,银置换率达到99%以上。  相似文献   
6.
Leaching kinetics of low grade zinc oxide ore in NH3-NH4Cl-H2O system   总被引:2,自引:0,他引:2  
The leaching kinetics of low grade zinc oxide ore in NH3-NH4Cl-H2O system was studied. The effects of ore particle size,reaction temperature and the sum concentration of ammonium ion and ammonia on the leaching efficiency of zinc were examined.The leaching kinetics of low-grade zinc oxide ore in NH3-NH4Cl-H2O system follows the kinetic law of shrinking-core model. The results show that diffusion through the inert particle pores is the leaching kinetics rate controlling step. The calculated apparent activation energy of the process is about 7.057kJ/mol. The leaching efficiency of zinc is 92.1% under the conditions of ore particle size of 69μm, holding at 80℃ for 60min, sum ammonia concentration of 7.5mol/L, the molar ratio of ammonium to ammonia being 2:1, and the ratio (g/mL) of solid to liquid being 1:10.  相似文献   
7.
Leaching kinetics of low grade zinc oxide ore in NH3-NH4Cl-H2O system   总被引:2,自引:0,他引:2  
The leaching kinetics of low grade zinc oxide ore in NH3-NH4Cl-H2O system was studied. The effects of ore particle size, reaction temperature and the sum concentration of ammonium ion and ammonia on the leaching efficiency of zinc were examined. The leaching kinetics of low-grade zinc oxide ore in NH3-NH4Cl-H2O system follows the kinetic law of shrinking-core model. The results show that diffusion through the inert particle pores is the leaching kinetics rate controlling step. The calculated apparent activation energy of the process is about 7.057 kJ/mol. The leaching efficiency of zinc is 92.1% under the conditions of ore particle size of 69μm, holding at 80℃ for 60 min, sum ammonia concentration of 7.5 mol/L, the molar ratio of ammonium to ammonia being 2:1, and the ratio (g/mL) of solid to liquid being 1:10.  相似文献   
8.
从高酸浸出锌渣中回收银研究   总被引:8,自引:0,他引:8  
针对某锌冶炼厂高酸浸出渣含银高的特点,采用硫酸化焙烧—水浸脱锌铁—氯化浸银—冷却结晶PbCl2—铅片置换沉银工艺,对高酸浸出锌渣进行了回收银研究。结果表明,锌和铁的浸出率分别达到92.66%和94.67%,浸出液返回炼锌主流程生产电锌;银和铅的浸出率分别达到94.17%和97.89%;用铅片置换得到粗银粉,银置换率达到99%以上。  相似文献   
9.
The heating and melting mechanisms of the pellets immersed in liquid slag were investigated, and the effect of the pellet heating and the melting conditions were studied. The results show that the dust component in the pellet is melted from the surface and no metallic elements are melted before the dust component, the time for the pellet completely melted is reduced as the iron powder content increases since the metallic iron has high thermal conductivity. These are four stages of heating and melting of pellet in liquid slag, they are the growth and melt of solid slag shell, penetration of liquid slag, dissolving of dust component and melting of reduced metals. The lifetime of the solid slag shell is in the range of 7-16 s and increasing the pre-heating temperature of the pellet and the slag temperature can shorten the slag shell lifetime. The time for the dust component in the pellet to be melted completely is in the range of 20-45 s and increasing the pre-heating temperature, especially in the range of 600-800 ℃, can obviously reduce the melting time. A higher slag temperature can also improve the pellet melting and the melting time is reduced by 10-15 s when the slag temperature is increased from 1 450 to 1 550 ℃. The pellet with higher content of iron powder is beneficial to the melting by improving the heat conductivity.  相似文献   
10.
MACA体系中循环浸出低品位氧化锌矿制备电解锌   总被引:2,自引:0,他引:2  
以云南兰坪低品位氧化锌矿及其循环浸出渣的浮选精矿为原料,常温常压下在MACA(金属氨络合物)体系中进行循环浸出。浸出液先净化除砷和锑、再两段锌粉逆流置换深度净化,两次净化后液电积制取电解锌。考察工艺中循环浸出率、净化率、物质平衡以及电解锌质量和电耗等技术经济指标。结果表明:先用MACA法处理原矿粉,再浮选硫化锌的选冶结合流程是合适的兰坪低品位氧化锌矿的处理方案,原矿锌的平均浸出率为70.48%,其氨可溶锌浸出率达到89.14%,浮选精矿锌的浸出率为79.75%,杂质元素的净化率达到95%,电解锌纯度达到99.98%,电流效率可达97.02%。  相似文献   
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