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A comparative study on the effects of dry and wet grinding on mineral flotation separation–a review

机译:干磨和湿磨对矿物浮选分离效果的比较研究–综述

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Water scarcity dictates to limit the use of water in ore processing plants particularly in arid regions. Since wet grinding is the most common method for particle size reduction and mineral liberation, there is a lack of understanding about the effects of dry grinding on downstream separation processes such as flotation. This manuscript compiles various effects of dry grinding on flotation and compares them with wet grinding. Dry grinding consumes higher energy and produces wider particle size distributions compared with wet grinding. It significantly decreases the rate of media consumption and liner wear; thus, the contamination of pulp for flotation separation is lower after dry grinding. Surface roughness, particle agglomeration, and surface oxidation are higher in dry grinding than wet grinding, which all these effects on the flotation process. Moreover, dry ground samples in the pulp phase correlate with higher Eh and dissolved oxygen concentration. Therefore, dry grinding can alter the floatability of minerals. This review thoroughly assesses various approaches for flotation separation of different minerals, which have been drily ground, and provides perspectives for further future investigations.
机译:缺水要求限制矿石加工工厂中水的使用,特别是在干旱地区。由于湿磨是减小粒度和释放矿物质的最常用方法,因此对干磨对下游分离工艺(如浮选)的影响缺乏了解。该手稿汇总了干磨对浮选的各种影响,并将其与湿磨进行了比较。与湿磨相比,干磨消耗更多的能量并产生更宽的粒度分布。它显着降低了介质消耗率和衬板磨损率;因此,干磨后用于浮选的纸浆污染降低。在干磨中,表面粗糙度,颗粒团聚和表面氧化要比湿磨更高,所有这些都会影响浮选过程。此外,纸浆相中的干磨样品与较高的Eh和溶解氧浓度相关。因此,干磨可以改变矿物的漂浮性。这篇综述彻底评估了浮选分离不同矿物的各种浮选方法,并为进一步的研究提供了前景。

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