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首页> 外文期刊>Minerals Engineering >Mechanochemical immobilization of lead smelting slag using quartz sand
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Mechanochemical immobilization of lead smelting slag using quartz sand

机译:使用石英砂的铅冶炼炉渣的机械化学固定

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The lead smelting industry has produced a large amount of heavy metal-containing solid wastes, and lead leaching from these wastes under acidic conditions poses a great threat to the environment. In this study, lead slag was effectively stabilized by a mechanochemical reaction through a co-grinding operation with quartz sand (SiO2) in a planetary ball mill. The synthetic precipitation leaching procedure (SPLP) was used to examine the stabilization efficiency of lead slag by ball milling, and the results demonstrated that the lead immobilization for smelting slag with initial lead leaching concentration of 1503 mg/L could reach 99.99% under the conditions of 1000 rpm and 35:1 charge ratio when the ball milling time was 2 h, which was under the permitted concentration of lead according to the Chinese standards for hazardous wastes ( < 5 mg/L, GB5085.3-2007). Kinetic studies found that the rotation speed of the ball mill and the charge ratio between balls and powder were two key factors affecting stabilization efficiency. The stabilization rate increased with the rotation speed of the ball mill and the charge ratio, and fitted well with the Delogu Model. X-ray diffraction (XRD) characterization revealed that the characteristic peaks for both PbO and PbS disappeared after long-time grinding with SiO2. Mechanistic studies suggested that E centers ( S.) and non-bridging oxygen hole center radicals were generated due to the mechanical energy from ball milling with SiO2, which provide the possibility for the formation of Si-O-Pb and could effectively stabilize Pb species in the lead slag.
机译:铅冶炼工业生产了大量的含重金属的固体废物,并且在酸性条件下从这些废物中浸出了良好的环境威胁。在该研究中,通过在行星球磨机中的石英砂(SiO2)中通过共研磨操作有效地通过机械化学反应有效地稳定了铅渣。使用合成沉淀浸出程序(SPLP)来检查通过球磨的铅渣的稳定效率,结果表明,在初始铅浸出浓度为1503mg / L的铅渣中的铅固定化可以在条件下达到99.99%当球磨时间为2小时时,1000 rpm和35:1的电荷比率根据中国危险废物标准(<5 mg / L,GB5085.3-2007)允许的铅浓度下。动力学研究发现,球磨机的转速和球和粉末之间的电荷比是影响稳定效率的两个关键因素。稳定速率随着球磨机的转速和电荷比而增加,与DELOGU模型很好。 X射线衍射(XRD)表征显示,在用SiO 2长时间研磨后,PBO和PBS的特征峰消失。机械研究表明,由于与SiO2的球磨的机械能,产生E中心和非桥接氧气孔中心基团,这提供了形成Si-O-Pb的可能性,并且可以有效地稳定PB物种在铅渣中。

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