期刊文献+
共找到3篇文章
< 1 >
每页显示 20 50 100
提高贵冶金银回收率生产实践 被引量:5
1
作者 刘佩 《铜业工程》 CAS 2016年第4期59-61,共3页
江西铜业集团贵溪冶炼厂(简称贵冶)是以铜冶炼为主,兼顾金银等稀贵金属提取的现代化大型炼铜企业。文章对铜冶炼生产工艺过程中影响金银回收率的因素以及各环节中金、银的损失情况进行了分析,详细介绍了贵冶在提高金银回收率方面从原料... 江西铜业集团贵溪冶炼厂(简称贵冶)是以铜冶炼为主,兼顾金银等稀贵金属提取的现代化大型炼铜企业。文章对铜冶炼生产工艺过程中影响金银回收率的因素以及各环节中金、银的损失情况进行了分析,详细介绍了贵冶在提高金银回收率方面从原料取样、制样以及配料管理、生产工艺过程优化等方面采取的措施。 展开更多
关键词 回收率 损失 阳极泥 直收率 火法炼铜
下载PDF
某高品位铜精矿一步炼铜试验研究 被引量:1
2
作者 陈杭 《黄金》 CAS 2022年第12期63-68,共6页
一步炼铜技术具有流程短、绿色节能等优势,符合当前碳中和的发展方向。以某高品位铜精矿为原料,采用一步炼铜技术进行处理,考察了吹炼时间、保温时间、钙硅比等因素对铜直收率的影响,初步探讨了其作用机制。结果表明:最佳渣相成分为Fe/S... 一步炼铜技术具有流程短、绿色节能等优势,符合当前碳中和的发展方向。以某高品位铜精矿为原料,采用一步炼铜技术进行处理,考察了吹炼时间、保温时间、钙硅比等因素对铜直收率的影响,初步探讨了其作用机制。结果表明:最佳渣相成分为Fe/SiO_(2)=0.30,CaO/SiO_(2)=0.58;在冶炼温度1300℃时,以吹炼风流速0.4 L/min向60 g熔体中喷吹34 min 70%的富氧空气,随后静置沉降120 min获得粗铜,铜直收率为91.65%;随着CaO添加量的升高,会生成高熔点的钙铝硅酸盐,使渣含铜升高;渣黏度为1.8 Pa·s,渣中铜主要以金属铜和白冰铜的形式夹带损失。 展开更多
关键词 一步炼铜 铜精矿 铜直收率 铜渣 渣型 钙硅比
下载PDF
Recovery of iron from copper tailings via low-temperature direct reduction and magnetic separation: process optimization and mineralogical study 被引量:2
3
作者 Rui-min Jiao Peng Xing +2 位作者 Cheng-yan Wang Bao-zhong Ma Yong-Qiang Chen 《International Journal of Minerals,Metallurgy and Materials》 SCIE EI CAS CSCD 2017年第9期974-982,共9页
Currently, the majority of copper tailings are not effectively developed. Worldwide, large amounts of copper tailings generated from copper production are continuously dumped, posing a potential environmental threat. ... Currently, the majority of copper tailings are not effectively developed. Worldwide, large amounts of copper tailings generated from copper production are continuously dumped, posing a potential environmental threat. Herein, the recovery of iron from copper tailings via low-temperature direct reduction and magnetic separation was conducted; process optimization was carried out, and the corresponding mineralogy was investigated. The reduction time, reduction temperature, reducing agent (coal), calcium chloride additive, grinding time, and magnetic field intensity were examined for process optimization. Mineralogical analyses of the sample, reduced pellets, and magnetic concentrate under various conditions were performed by X-ray diffraction, optical microscopy, and scanning electron microscopy-energy-dispersive X-ray spectrometry to elucidate the iron reduction and growth mechanisms. The results indicated that the optimum parameters of iron recovery include a reduction temperature of 1150A degrees C, a reduction time of 120 min, a coal dosage of 25%, a calcium chloride dosage of 2.5%, a magnetic field intensity of 100 mT, and a grinding time of 1 min. Under these conditions, the iron grade in the magnetic concentrate was greater than 90%, with an iron recovery ratio greater than 95%. 展开更多
关键词 copper tailings IRON direct reduction magnetic separation RECOVERY process optimization
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部