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Effective utilization of waste cathode ray tube glass-Crystalline silicotitanate synthesis

机译:有效利用废旧阴极射线管玻璃-结晶硅钛酸盐的合成

摘要

A novel process for crystalline silicotitanate (CST) synthesis was developed using waste cathode ray tube (CRT) panel glass as silicon source. The key trait of the process was to extract most of the silicon out of the glass for CST preparation, but leave Ba and Sr in the residue which had the potential to be employed as raw material for metallic Ba and Sr metallurgy. In the synthesis process, waste CRT panel glass was firstly treated by supercritical water (SCW)-NaOH solution for Si extraction, then sol-gel and hydrothermal treatments were used for CST preparation. 80% of Si in the glass could be extracted into the solution, while Sr and Ba were enriched in the residue in the form of Sr(2)SiO(4) and Ba(2)Si(3)O(8), respectively. Sr and Ba contents in the residue were 2-3 times higher than those in the raw glass. SEM, XRD and TEM results indicated that CST was successfully synthesized. Ion exchanging experiments showed that the batch distribution coefficient of the synthesized CST to Cs(+) was up to 1.2 x 10(4) mL/g at pH 0.26. (C) 2010 Elsevier B.V. All rights reserved.
机译:利用废阴极射线管(CRT)平板玻璃作为硅源,开发了一种新的晶体硅钛酸盐(CST)合成方法。该工艺的关键特性是从玻璃中提取出大部分硅,用于CST制备,而残留的Ba和Sr可能用作金属Ba和Sr冶金的原料。在合成过程中,首先用超临界水(SCW)-NaOH溶液处理废旧的CRT平板玻璃,进行硅萃取,然后采用溶胶-凝胶法和水热处理法制备CST。玻璃中80%的Si可以萃取到溶液中,而Sr和Ba分别以Sr(2)SiO(4)和Ba(2)Si(3)O(8)的形式富集在残留物中。残留物中的Sr和Ba含量是原始玻璃中的2-3倍。 SEM,XRD和TEM结果表明CST合成成功。离子交换实验表明,合成的CST对Cs(+)的批分布系数在pH 0.26时高达1.2 x 10(4)mL / g。 (C)2010 Elsevier B.V.保留所有权利。

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