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通过水热硫化从废弃阴极射线管漏斗玻璃中回收铅。

Lead recovery from scrap cathode ray tube funnel glass by hydrothermal sulphidisation.

作者信息

Yuan Wenyi, Meng Wen, Li Jinhui, Zhang Chenglong, Song Qingbin, Bai Jianfeng, Wang Jingwei, Li Yingshun

机构信息

Shanghai Cooperative Centre for WEEE Recycling, Shanghai Second Polytechnic University, Shanghai, China.

School of Environment, Tsinghua University, Beijing, China

出版信息

Waste Manag Res. 2015 Oct;33(10):930-6. doi: 10.1177/0734242X15597777. Epub 2015 Aug 10.

Abstract

This research focused on the application of the hydrothermal sulphidisation method to separate lead from scrap cathode ray tube funnel glass. Prior to hydrothermal treatment, the cathode ray tube funnel glass was pretreated by mechanical activation. Under hydrothermal conditions, hydroxyl ions (OH(-)) were generated through an ion exchange reaction between metal ions in mechanically activated funnel glass and water, to accelerate sulphur disproportionation; no additional alkaline compound was needed. Lead contained in funnel glass was converted to lead sulphide with high efficiency. Temperature had a significant effect on the sulphidisation rate of lead in funnel glass, which increased from 25% to 90% as the temperature increased from 100 °C to 300 °C. A sulphidisation rate of 100% was achieved at a duration of 8 h at 300 °C. This process of mechanical activation and hydrothermal sulphidisation is efficient and promising for the treatment of leaded glass.

摘要

本研究聚焦于水热硫化法在从废旧阴极射线管漏斗玻璃中分离铅方面的应用。在水热处理之前,对阴极射线管漏斗玻璃进行了机械活化预处理。在水热条件下,通过机械活化漏斗玻璃中的金属离子与水之间的离子交换反应生成氢氧根离子(OH(-)),以加速硫的歧化反应;无需额外添加碱性化合物。漏斗玻璃中所含的铅被高效转化为硫化铅。温度对漏斗玻璃中铅的硫化速率有显著影响,当温度从100℃升高到300℃时,硫化速率从25%提高到90%。在300℃下持续8小时可实现100%的硫化率。这种机械活化和水热硫化的过程对于含铅玻璃的处理是高效且有前景的。

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