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Removal of lead from cathode ray tube funnel glass by combined thermal treatment and leaching processes

机译:结合热处理和浸出工艺从阴极射线管漏斗玻璃中除去铅

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摘要

The reduction melting process is useful to recover toxic lead from cathode ray tube funnel glass; however, this process generates SiO_2-containing residues that are disposed in landfill sites. To reduce the volume of landfill waste, it is desirable to recycle the SiO_2-containing residues. In this study, SiO_2 powder was recovered from the residue generated by reduction melting. The funnel glass was treated by a process combining reduction melting at 1000 ℃ and annealing at 700 ℃ to recover a large quantity of lead from the glass. The oxide phase generated by the thermal treatment was subjected to water leaching and acid leaching with 1 M hydrochloric acid to wash out unwanted non-SiO_2 elements for SiO_2 purification. In the water washing, the oxide phase was microparticulated, and porous structures formed on the oxide surfaces. This increased the surface area of the oxide phase, and the unwanted elements were effectively washed out during the subsequent acid leaching. By controlling the acid leaching time and the amount of added acid, porous and amorphous SiO_2 (purity >95 wt%) was recovered. In the obtained SiO_2-concentrated product, unrecovered lead remained at concentrations of 0.25-0.79 wt%. When the Na_2CO_3 dosage in the thermal treatment was increased, the lead removal by acid leaching was enhanced, and the lead concentration in the obtained product decreased to 0.016 wt%.
机译:还原熔融过程可用于从阴极射线管漏斗玻璃中回收有毒铅;但是,此过程产生了包含SiO_2的残留物,这些残留物位于填埋场中。为了减少垃圾填埋场的体积,希望回收含SiO 2的残留物。在这项研究中,从还原熔融产生的残留物中回收了SiO_2粉末。通过将1000℃的还原熔融和700℃的退火相结合的工艺处理漏斗玻璃,以从玻璃中回收大量的铅。将通过热处理产生的氧化物相进行水浸和用1 M盐酸进行酸浸,以洗去不需要的非SiO_2元素以进行SiO_2纯化。在水洗中,氧化物相被微粒化,并且在氧化物表面上形成多孔结构。这增加了氧化物相的表面积,并且在随后的酸浸过程中有效地洗掉了不需要的元素。通过控制酸浸出时间和酸的添加量,回收了多孔和无定形的SiO_2(纯度> 95 wt%)。在获得的SiO 2浓缩产物中,未回收的铅以0.25-0.79wt%的浓度保留。当增加热处理中的Na_2CO_3剂量时,通过酸浸去除铅的作用增强,并且所得产物中的铅浓度降低至0.016wt%。

著录项

  • 来源
    《Waste Management》 |2015年第11期|343-350|共8页
  • 作者单位

    Headquarters for Innovative Society-Academic Cooperation, University of Fukui, Bunkyo 3-9-1, Fukui 910-8507, Japan;

    Headquarters for Innovative Society-Academic Cooperation, University of Fukui, Bunkyo 3-9-1, Fukui 910-8507, Japan;

    Headquarters for Innovative Society-Academic Cooperation, University of Fukui, Bunkyo 3-9-1, Fukui 910-8507, Japan;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cathode ray tube; Funnel glass; Reduction melting; Residue; Silica; Purification;

    机译:阴极射线管;漏斗玻璃;还原熔化;残留物;二氧化硅纯化;

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