首页> 外文期刊>Journal of Metallurgical and Materials Engineering Research >DETERMINATION OF TECHNOLOGICAL PARAMETERS OF SELENIUM RECOVERY FROM METALLURGICAL PRODUCTION MIDDLINGS IN A VACUUM-DISTILLATION UNIT
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DETERMINATION OF TECHNOLOGICAL PARAMETERS OF SELENIUM RECOVERY FROM METALLURGICAL PRODUCTION MIDDLINGS IN A VACUUM-DISTILLATION UNIT

机译:真空蒸馏装置中冶金生产中间冶金生产中硒恢复技术参数的测定

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The paper demonstrates the results of technological tests conducted with a representative rough selenium sample, obtained at Kazakhmys Smelting LLP to prepare refined selenium using vacuum-distillation technology, developed at the Lnstitute of Metallurgy and Ore Beneficiation JSC, using the vapor phase filtration method on the existing process equipment The technological scheme provides for preliminary melting of rough selenium in a receiving melting furnace and subsequent vacuum distillation of selenium. The vacuum-distillation recovery technological parameters are determined for selenium obtained from selenium-containing middlings produced by Kazakhmys Smelting LLP under conditions close to the production. We carried out the tests using the only industrial vacuum distillation unit prototype in the Republic of Kazakhstan. These tests enabled us to obtain refined selenium containing more than 99.5% of the main component with the throughout recovery 94.1%. The unit consists of the source material receiving smelting furnace and a vacuum distillation apparatus. The source material segregation process was implemented at atmospheric pressure and at 475 °c, and the resulting melt was filtered through a metal grid located on a false bottom in the receiving smelting furnace. Then, the ingots of selenium melted were sent to a vacuum distillation apparatus consisting of an evaporator and a condenser. We carried out the vacuum distillation of selenium remolded under optimal conditionsan evaporator temperature is 425 °c, a condenser temperature is 165 °c and residual pressure in the system is 0.4-1.1 kpa. Heating the condenser provided liquid-phase condensation of selenium vapor. The resulting refined selenium was cast into 5.0 kg bars, besides, we obtained the free-flowing residuals enriched with precious metals during vacuum distillation with a silver content of 13 400 g/t. the free-flowing residue was 8.1%.
机译:本文证明了用代表性粗硒样品进行的技术试验结果,在哈萨克赫斯冶炼LLP中获得,使用真空蒸馏技术制备精制硒,在冶金和矿石受益JSC在冶金和矿石受益JSC中使用的蒸汽相滤波方法现有的工艺设备技术方案在接受熔融炉中提供粗硒的初步熔化,随后的硒真空蒸馏。测定真空蒸馏回收技术参数,用于由Kazakhmys冶炼LLP在靠近生产的条件下产生的含硒的含硒。我们使用哈萨克斯坦共和国唯一的工业真空蒸馏装置原型进行了测试。这些测试使我们能够获得含有超过99.5%的主要成分的精制硒,整个恢复率为94.1%。该单元包括接收熔炼炉的源材料和真空蒸馏装置。源材料偏析过程在大气压下实施,在475℃下,通过位于接收熔炼炉中的假底部的金属栅格过滤所得熔体。然后,将硒的铸锭熔化到由蒸发器和冷凝器组成的真空蒸馏装置。我们进行了在最佳条件下重塑的硒的真空蒸馏蒸发器温度为425℃,冷凝器温度为165℃,并且系统中的残余压力为0.4-1.1kPa。加热冷凝器提供了硒蒸汽的液相缩合。将得到的精制硒除了5.0kg的条形中,除了,我们在真空蒸馏过程中获得了富含贵金属的自由流动残留物,其银含量为13 400g / t。自由流动的残余物为8.1%。

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