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Residence time distribution in large industrial flotation cells

机译:大型工业浮选池中的停留时间分布

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The radioactive tracer technique was used to measure the Residence Time Distribution (RTD) of the liquid and solid in a rougher flotation bank consisting of seven cells of a volume of 130 m~3. Thus, a pneumatic system of high reliability was used in order to introduce a small amount of radioactive tracer (around 100 mL of liquid or pulp) at the feed pulp entrance. Then, the time response of the radioactive tracer was measured online along the flotation bank using noninvasive sensors located in the discharge pipe of each cell. Activity (cps) was measured by Saphymo Srat scintillating crystal sensors of Nal(Tl) of 1"×1.5", thus allowing the simultaneous data acquisition of up to 12 control points with a minimum period of 50 ms. A solution of Br-82 was used as a liquid tracer, while mineral gangue was used as a solid nonfloatable tracer. The solid tracer was also tested at three size classes. An advantage of using the radioactive tracer technique is the direct testing of the actual solid particles (similar physical and chemical properties, shape, etc.). From a hydrodynamic point of view, the experimental data confirmed that single mechanical flotation cells of large size can deviate significantly from perfect mixing.
机译:放射性示踪技术用于测量液体和固体在一个粗浮选池中的液体和固体的停留时间分布(RTD),该浮选池由七个体积为130 m〜3的单元组成。因此,为了在进料浆入口引入少量的放射性示踪剂(约100 mL液体或浆),使用了高可靠性的气动系统。然后,使用位于每个单元放电管中的非侵入式传感器,沿着浮选池在线测量放射性示踪剂的时间响应。通过Saphymo Srat的Nal(Tl)闪烁晶体传感器(Nal(Tl)为1“×1.5”)测量了活性(cps),因此可以在最少50 ms的时间内同时获取多达12个控制点的数据。 Br-82溶液用作液体示踪剂,而矿物脉石则用作固体不易挥发的示踪剂。还对固体示踪剂进行了三种尺寸等级的测试。使用放射性示踪剂技术的一个优势是直接测试实际的固体颗粒(相似的物理和化学性质,形状等)。从流体力学的角度来看,实验数据证实,大型的单个机械浮选池可能与完美的混合有很大的偏差。

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