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Formation of metacinnabar by milling of liquid mercury and elemental sulfur for long term mercury storage

机译:通过研磨液态汞和元素硫来长期储存汞来形成朱砂

摘要

In this paper we present the results of the formation of black HgS (metacinnabar) from liquid mercury and elemental sulfur using the mechanical energy provided by a ball mill in different conditions. Metacinnabar formation was observed even after short milling times (15 min) and unreacted liquid mercury was no longer detected after 60 min of milling. The reaction mechanism was monitored with a scanning electron microscope. The impact and friction forces of milling on the Hg and S mixture resulted in the formation of metacinnabar by reducing the size of mercury drops, giving rise to microspheres, and lowering the surface tension to allow sulfur grains to become adhered at the reaction interface. After 60 min of milling, the metacinnabar formation reaction was observed to be more than 99.99% complete, yielding a Toxicity Characteristic Leaching Procedure value of 3.1 microg/L Hg. The reaction product thus complies with the limits of the most stringent Universal Treatment Standard requirements, which allow a maximum TCLP concentration of 25 microg/L.
机译:在本文中,我们介绍了使用球磨机在不同条件下提供的机械能,由液态汞和元素硫形成黑色HgS(metacinnabar)的结果。即使经过很短的研磨时间(15分钟),也观察到了辰砂的形成,并且研磨60分钟后不再检测到未反应的液态汞。用扫描电子显微镜监测反应机理。研磨对Hg和S混合物的冲击力和摩擦力通过减小汞滴的大小,形成微球并降低表面张力以使硫粒粘附在反应界面上而导致形成朱砂。研磨60分钟后,观察到前朱砂的形成反应已完成99.99%以上,毒性特征浸出程序值为3.1 microg / L Hg。因此,反应产物符合最严格的通用处理标准要求的限制,该要求允许最大TCLP浓度为25微克/升。

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