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铜锌硫化矿分离工艺技术研究进展 被引量:21
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作者 赖振宁 郑永兴 +2 位作者 蓝卓越 王聪兵 郑永明 《金属矿山》 CAS 北大核心 2017年第8期27-31,共5页
针对复杂难分选铜锌硫化矿石利用困难的现状,概述了近几年来铜锌硫化矿分离的相关研究与进展,主要介绍了铜锌浮选分离工艺与药剂及选冶联合技术等3方面内容。研究认为:对于铜锌矿物嵌布粒度较粗、嵌布关系不很密切、铜锌矿物可浮性差异... 针对复杂难分选铜锌硫化矿石利用困难的现状,概述了近几年来铜锌硫化矿分离的相关研究与进展,主要介绍了铜锌浮选分离工艺与药剂及选冶联合技术等3方面内容。研究认为:对于铜锌矿物嵌布粒度较粗、嵌布关系不很密切、铜锌矿物可浮性差异较大的铜锌硫化矿石,适合采用优先浮铜再浮锌的优先浮选流程处理。对于铜锌矿石矿物组成复杂,铜、锌氧化率较高,铜锌矿物共生关系致密,嵌布粒度极细,单体解离困难的铜锌硫化矿石,一般采用混合浮选再分离工艺流程处理,在铜锌分离前对铜锌混合精矿进行再磨往往有利于铜锌分离。研制像MBT一样对黄铜矿、闪锌矿浮选性能差异较大的新型、高效捕收剂是实现铜锌分离的重要手段。在锌矿物抑制剂研制方面,不仅要考虑浮选分离时锌矿物的抑制效果,还必须综合考虑锌矿物在后续浮选时的活化问题。对于普通物理选矿方法难以回收利用的铜锌硫化矿石,采用混浮预富集再湿法或火法冶金工艺分离、回收铜锌等有价金属的方法是解决此类资源开发利用的有效方法。 展开更多
关键词 硫化矿 铜锌分离 浮选工艺 浮选药剂 选冶联合
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难选氧化锌矿硫化焙烧-浮选试验 被引量:3
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作者 王聪兵 郑永兴 +1 位作者 陈禄政 赖振宁 《矿物学报》 CAS CSCD 北大核心 2018年第5期557-562,共6页
针对氧化锌矿浮选分离困难、选矿指标低的问题,提出氧化锌矿硫化焙烧-浮选技术方案。以硫磺为硫化剂,通过硫化焙烧,将氧化锌矿物转化为硫化锌矿物,再使用传统的硫化矿浮选法分选。试验原矿含锌5.13%,氧化率达86.55%,主要脉石矿物为石英... 针对氧化锌矿浮选分离困难、选矿指标低的问题,提出氧化锌矿硫化焙烧-浮选技术方案。以硫磺为硫化剂,通过硫化焙烧,将氧化锌矿物转化为硫化锌矿物,再使用传统的硫化矿浮选法分选。试验原矿含锌5.13%,氧化率达86.55%,主要脉石矿物为石英和方解石。通过焙烧试验,确定最佳焙烧条件为硫磺添加量3%,焙烧温度650℃,焙烧时间60 min,磨矿细度-74μm占85%;然后通过闭路浮选试验,获得锌品位38.96%、锌回收率86.33%的锌精矿。 展开更多
关键词 氧化锌矿 硫化焙烧 浮选
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Recovery of Zn, Pb, Fe and Si from a low-grade mining ore by sulfidation roasting-beneficiation-leaching processes 被引量:8
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作者 LAN Zhuo-yue LAI Zhen-ning +3 位作者 ZHENG Yong-xing LV Jin-fang PANG Jie NING Ji-lai 《Journal of Central South University》 SCIE EI CAS CSCD 2020年第1期37-51,共15页
To recover Zn, Pb, Fe and Si from a low-grade mining ore in the Lanping basin, Yunnan Province, China, a novel technology using the roasting with pyrite and carbon followed by beneficiation and hydrochloric acid leach... To recover Zn, Pb, Fe and Si from a low-grade mining ore in the Lanping basin, Yunnan Province, China, a novel technology using the roasting with pyrite and carbon followed by beneficiation and hydrochloric acid leaching was proposed. Firstly, several factors such as pyrite dosage, roasting temperature, carbon powder dosage, holding time and particle size affecting on the flotation performance of Zn(Pb) and magnetic separation performance of Fe were simultaneously examined and the optimum process parameters were determined. A flotation concentrate, containing 17.46% Zn and 3.93% Pb, was obtained, and the Zn and Pb recoveries were 86.04% and 69.08%, respectively. The obtained flotation tailing was concentrated by a low-intensity magnetic separator. The grade of iron increased from 5.45% to 43.45% and the recovery of iron reached 64.87%. Hydrochloric acid leaching was then carried out for the magnetic separation tailing and a raw quartz concentrate containing 81.05% SiO2 was obtained. To further interpret the sulfidation mechanism of smithsonite, surface morphology and component of the sample before and after reactions were characterized by XRD and EPMA-EDS. The aim was to achieve the comprehensive utilization of the low-grade mining ore. 展开更多
关键词 low-grade mining ore comprehensive recovery sulfidation roasting flotation magnetic separation leaching
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