摘要
湖北某锌冶炼渣铜品位约为1.01%,铜主要以类质同象形式赋存于磁黄铁矿中,其次是铁氧化物(磁铁矿和赤铁矿)中,主要脉石矿物为玻璃质等。该论文首先研究锌冶炼渣的矿物组成及铜的赋存状态,之后分别对原渣样品和渣磁选除铁尾矿进行了选铜工艺试验,探索了不同种类抑制剂和捕收剂对铜金属回收的影响。结果表明,原冶炼渣样粗选采用丁铵黑药+乙硫氮组合捕收剂,经过1次粗选、2次精选和1次扫选开路选别流程,可以得到铜品位5.10%、回收率66.09%的铜精矿。冶炼渣磁选除铁尾矿粗选采用丁铵黑药捕收剂,经过1次粗选、2次精选和1次扫选开路选别流程,可以得到铜品位3.45%、相对磁选尾矿回收率57.61%的铜精矿。
The copper grade of a complex zinc smelting slag from Hubei is around 1.01%.The main occurrence state of the copper is in the form of isomorphism in pyrrhotite,then is in the iron oxide(magnetite and hematite).Gangue minerals are mainly glassiness.After researching the mineral composition and copper occurrence state,the experiments on recovery of copper were carried out for raw smelting slag samples and tailings after magnetic separation,respectively.The influence of different types of activators and collectors on copper recovery was launched.The results indicate that,using combined collectors of ammonium aerofloat+ethyl thiocarbamate for roughing process of raw smelting slag samples,adopting open-circuit flotation technological flowsheet of one roughing,two cleaning and one scavenging,copper concentrate with a copper grade of 5.10%and recovery of 66.09%can be obtained.Using collector of ammonium aerofloat for roughing process of raw smelting slag tailings after magnetic separation,adopting open-circuit flotation technological flowsheet of one roughing,two cleaning and one scavenging,copper concentrate with a copper grade of 3.45%and recovery of 57.61%can be obtained.
作者
景高贵
倪章元
孙伟
高志勇
JING Gaogui;NI Zhangyuan;SUN Wei;GAO Zhiyong(School of Minerals Processing and Bioengineering, Central South University, Changsha 410083, China;Key Laboratory of Hunan Province for Clean and Efficient Utilization of Strategic Calcium-containing Mineral Resources, Central South University, Changsha 410083, China)
出处
《矿产保护与利用》
2020年第5期116-122,共7页
Conservation and Utilization of Mineral Resources
基金
国家自然科学基金(51774328,51404300)
湖南省自然科学基金(2018JJ2520)
湖湘青年英才计划(2018RS3011)。
关键词
锌冶炼渣
磁黄铁矿
磁铁矿
赤铁矿
浮选
zinc smelting slag
pyrrhotite
magnetite
hematite
flotation