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Evaluation of lead recovery efficiency from waste CRT funnel glass by chlorinating volatilization process

机译:通过氯化挥发工艺评估废CRT漏斗玻璃中铅的回收效率

摘要

The current study was carried out to develop a novel process, namely chloride volatilization procedure for lead recovery from waste cathode ray tube (CRT) funnel glass. In the recovery system, the glass powder was first compressed into cylindrical pellet homogeneously with chlorinating agents, and then subjected to thermal treatment for solid-phase reaction. In this case, lead could be easily released from the silicon oxide network of the glass and it was recovered in the form of PbCl2. It was found that CaCl2 was the most effective chlorinating agent, and the optimum operation temperature, holding time and system pressure were 1000 degrees C, 2 h, 600 +/- 50 Pa, respectively. The evaporated PbCl2 could be easily recovered by a cooling device. The evaporation ratio of lead from waste CRT was 99.1% and the purity of the recovered PbCl2 product was 97.0%. The reaction routes and lead recovery mechanisms of the process were identified. This study provides an efficient and practical process for waste CRT funnel glass detoxification and recycling.
机译:进行了当前的研究以开发一种新的方法,即用于从废阴极射线管(CRT)漏斗玻璃中回收铅的氯化物挥发程序。在回收系统中,首先将玻璃粉与氯化剂均匀地压制成圆柱状颗粒,然后进行热处理以进行固相反应。在这种情况下,铅很容易从玻璃的氧化硅网络中释放出来,并以PbCl2的形式回收。结果发现,CaCl2是最有效的氯化剂,最佳操作温度,保持时间和系统压力分别为1000℃,2 h,600 +/- 50 Pa。蒸发的PbCl 2可以通过冷却装置容易地回收。废CRT中铅的蒸发率为99.1%,回收的PbCl2产品的纯度为97.0%。确定了该方法的反应路线和铅回收机理。这项研究为废CRT漏斗玻璃的解毒和回收利用提供了有效而实用的方法。

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  • 作者

    Erzat Aris; Zhang Fu-Shen;

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  • 年度 2014
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