浮选法处理金矿的研究

P. Fedotov, A. Burdonov, Y. Novikov, N. Terentiev, I. O. Bogdanyuk
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摘要

本文对含金矿石的浮选选矿进行了研究。研究对象为低硫化物金-石英型矿石,其岩石组成为:石英- 90%,石英-绿泥石片岩- 10%。该矿床矿石由含铁云母的风化壳岩和花岗石英脉状斑组成。研究的目的是建立一种获得含硫金精矿的最佳浮选制度。实验过程中记录了矿石粒度、药剂方式、浮选重分配结构、浮选时间等因素对操作的影响。本文介绍了用硅酸盐分析和光学发射分析方法研究该矿石化学成分的结果。浮选工艺以丁基黄药钾为捕收剂,松木精油组合为发泡剂。在一系列实验的基础上确定了汉考克浓缩效率判据。确定了选矿工艺指标:重精矿金品位为1165 g/t,产率为0.3%,回收率为73.74%;浮选精矿(提纯后ⅱ)金品位为68.9 g/t,产率为1.52%,回收率为22.05%。银含量为15.9 g/t。金总回收率为95.79%,金收率为1.82%,金品位为249.9 g/t。浮选尾矿中的金品位为0.19 g/t。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of gold ore processing by flotation methods
The article deals with the studies of gold-bearing ore benefication by flotation methods. The object of the study is a low-sulfide gold-quartz type of ores with the following petrographic composition: quartz – 90 %, quartz-chlorite schists – 10 %. The ore from this deposit consists of the weathering crust rocks including iron-mica rocks with veins and spots of granoblastic quartz. The purpose of the research is to develop an optimal flotation regime for obtaining sulfide gold-bearing concentrate. The influence of ore size, reagent mode, flotation redistribution structure, and flotation time on operations was recorded during the experiment. The paper presents the results of studying the chemical composition of the ore by the method of silicate and optical emission analysis. The flotation process used butyl potassium xanthate as a collector and a combination of pine essential oils as a foaming agent. The Hancock concentration efficiency criterion was determined based on a series of experiments. The following technological indicators of ore processing were identified: gravity concentrate with the gold grade of 1165 g/t with the yield of 0.3 % and the recovery of 73.74 %; flotation concentrate (after purification II) with the gold grade of 68.9 g/t with the yield of 1.52 % and a recovery of 22.05 %. Its silver content was 15.9 g/t. The total gold recovery was 95.79 %, with the yield of 1.82 % and the gold grade of 249.9 g/t. The gold grade in the flotation tailings was 0.19 g/t.
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