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氯化挥发法从含有价金属硫铁矿精矿中回收金银 被引量:10
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作者 刘慧南 胡杨甲 +3 位作者 吴桂叶 赵志强 贺政 刘崇峻 《有色金属(冶炼部分)》 CAS 北大核心 2019年第12期44-48,91,共6页
对某硫铁矿精矿进行有价金属回收的实验室小型试验及扩大连续试验。在氧化焙烧—润磨造球—氯化挥发的原则流程下,确定了实验室最佳试验条件:氧化脱硫焙烧温度700℃、焙烧时间1.0 h、无水氯化钙添加比例7.0%、焙砂再磨细度-0.038 mm占70... 对某硫铁矿精矿进行有价金属回收的实验室小型试验及扩大连续试验。在氧化焙烧—润磨造球—氯化挥发的原则流程下,确定了实验室最佳试验条件:氧化脱硫焙烧温度700℃、焙烧时间1.0 h、无水氯化钙添加比例7.0%、焙砂再磨细度-0.038 mm占70%、氯化焙烧温度1100℃、焙烧时间1.0 h,在该条件下,氧化焙砂的砷脱除率为82.39%,硫脱除率为99.99%,金、银、铜的挥发率分别为96.37%、85.97%和70.61%,球团中铁的品位为61.03%。连续扩大试验结果表明,物料中金、银、铜的挥发率分别达到96.72%、90.91%和52.48%。 展开更多
关键词 硫铁矿精矿 氧化焙烧 氯化挥发 金银回收 球团
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从某高硫铝土矿中浮选分离硫铝试验研究 被引量:8
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作者 宋翔宇 《湿法冶金》 CAS 北大核心 2012年第4期243-247,共5页
山西某高硫铝土矿中硫质量分数达2.95%,采用浮选分离工艺得到铝土矿精矿和硫铁矿精矿。铝土矿精矿中,硫质量分数降至0.34%,Al2O3回收率为96.16%,满足后续氧化铝生产工艺要求;硫铁矿精矿中硫质量分数为45.83%,达到优等-Ⅱ级硫精矿质量标... 山西某高硫铝土矿中硫质量分数达2.95%,采用浮选分离工艺得到铝土矿精矿和硫铁矿精矿。铝土矿精矿中,硫质量分数降至0.34%,Al2O3回收率为96.16%,满足后续氧化铝生产工艺要求;硫铁矿精矿中硫质量分数为45.83%,达到优等-Ⅱ级硫精矿质量标准。该工艺有效解决了高硫铝土矿硫、铝资源的综合回收问题。 展开更多
关键词 高硫铝土矿 浮选 铝土矿精矿 硫铁矿精矿 回收
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Electrogenerative leaching of nickel sulfide concentrate with ferric chloride 被引量:3
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作者 王少芬 方正 +1 位作者 王云燕 陈阳国 《Journal of Central South University of Technology》 2004年第4期405-409,共5页
In order to utilize the chemical energy in hydrometallurgical process of sulfide minerals reasonably and to simplify the purifying process, the electrogenerative process was applied and a dual cell system was introduc... In order to utilize the chemical energy in hydrometallurgical process of sulfide minerals reasonably and to simplify the purifying process, the electrogenerative process was applied and a dual cell system was introduced to investigate FeCl3 leaching of nickel sulfide concentrate. Some factors influencing the electrogenerative leaching, such as electrode structure, temperature and solution concentration were studied. The results show that a certain quantity of electrical energy accompanied with the leached products can be acquired in the electrogenerative leaching process. The output current and power increase with the addition of acetylene black to the electrode. Varying the components of electrode just affects the polarization degree of anode. Increasing FeCl3 concentration results in a sharp increase in the output of the leaching cell when c(FeCl3) is less than 0.1 mol/L. The optimum value of NaCl concentration for electrogenerative leaching nickel sulfide concentrate with FeCl3 is 3.0 mol/L. Temperature influences electrogenerative leaching by affecting anodic and cathodic polarization simultaneously. The apparent activation energy is determined to be 34.63 kJ/mol in the range of 298 K to 322 K. The leaching rate of Ni2+ is 29.3% after FeCl3 electrogenerative leaching of nickel sulfide concentrate for 620 min with a filter bag electrode. 展开更多
关键词 nickel sulfide concentrate FeCl_3 electrogenerative leaching
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