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Ultrasonic-enhanced replacement of lead in lead hydrometallurgy process from lead leaching solution

机译:铅浸出液中超声波强化法在铅湿法冶金中替代铅

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In this paper, ultrasonic-enhanced replacement of lead by zinc in lead leaching solution was studied. The effects of reaction time, rotational speed, temperature, concentration of leaching solution and the ratio of the surface area of the zinc plate immersed in the leaching solution to the volume of leaching solution (S : V) were studied under both conventional and ultrasonic conditions. The optimum ultrasonic-assisted replacement conditions were as follows: the S : V of 0.04 (4 cm 2 100 ml ?1 ), reaction temperature of 30°C, replacement time of 30 min and the concentration of leaching solution is 5 g l ?1 , leading to a lead replacement rate of 94.84%. Compared with the conventional replacement process, the reaction time of ultrasonic-enhanced substitution could be reduced to one half, and the demand of reaction temperature, leaching solution concentration and other conditions were decreased accordingly. Introducing ultrasonic into the replacement reaction is promising to reduce the energy consumption in the hydrometallurgical industry also caters to the demands of environment protection.
机译:本文研究了铅浸出液中锌强化超声替代铅的方法。在常规和超声条件下,研究了反应时间,转速,温度,浸出液浓度以及浸入浸出液中锌板的表面积与浸出液体积之比(S:V)的影响。最佳的超声辅助置换条件如下:S:V为0.04(4 cm 2 100 ml?1),反应温度为30°C,置换时间为30分钟,浸出溶液的浓度为5 gl?1 ,导致替换率达到94.84%。与传统的置换工艺相比,超声强化置换的反应时间可以减少一半,反应温度,浸出液浓度等条件的要求也相应降低。在替代反应中引入超声波有望减少湿法冶金行业的能耗,同时也满足了环境保护的要求。

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