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作 者:刘进 张发明 张辉 张新海 LIU Jin;ZHANG Fa-ming;ZHANG Hui;ZHANG Xin-hai(Guangdong Institute of Resources Comprehensive Utilization,Guangzhou 510650,Guangdong,China;Guangzhou Yueyouyan Mineral Resources Research Technology Co.,Ltd. ,Guangzhou 510650,Guangdong,China;State Key Laboratories of Rare Metals Separation and Comprehensive Utilization,Guangzhou,510650,Guangdong,China;Guangdong Key Laboratory of Development & Comprehensive Utilization of Mineral Resources,Guangzhou 510650,Guangdong,China)
机构地区:[1]广东省资源综合利用研究所,广东广州510650 [2]广州粤有研矿物资源科技有限公司,广东广州510650 [3]稀有金属分离与综合利用国家重点实验室,广东广州510650 [4]广东省矿产资源开发和综合利用重点实验室,广东广州510650
出 处:《铜业工程》2019年第3期36-39,共4页Copper Engineering
基 金:广州市科技计划资助项目(201504010009);广东省科技计划资助项目(2017B030314046)
摘 要:针对湖南某钨矿生产过程中出现的钨回收率低的问题,进行了相应的选矿工艺流程和药剂制度的试验研究,并将试验成果应用于工业生产。对含钨0.362%的原矿,小型闭路试验获得WO3品位69.10%、WO3回收率84.04%钨精矿。新工艺运用到现场之后,现场钨精矿WO3品位由63.25%提高到68.86%,WO3回收率由试验前70.21%提高到81.56%,效果比较显著,达到了提高生产指标的试验目的。In view of the low recovery of tungsten in the production process of a tungsten mine in Hunan, the corresponding beneficiation process and reagent system study was carried out, and the industry application of the study was successful. For the primary tungsten ore of 0.362%,.the locked circuit test results indicated that a tungsten concentrate grade of 69.10% WO3 can be obtained with a recovery rate of 84.04% from the feed of 0.362% WO3. After the application of the new process in industrial process, significant beneficiation indicators obtained with the grade of tungsten concentrate increased from 63.25% to 68.86% and the recovery rate increased from 70.21% to 81.56%, and the purpose of improving tungsten recovery is achieved.
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