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Stabilization of fluorine-containing industrial waste by production of sintered glass-ceramics

机译:通过生产烧结玻璃陶瓷来稳定含氟工业废物

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摘要

Calcium hydroxide is normally used to neutralize acid fumes escaping from furnaces in glass and ceramic manufacturing processes, leading to huge amounts of waste material known as "exhausted lime". The presence of calcium fluoride greatly complicates the use of this waste as Ca-rich secondary raw material. The present study is aimed at the development of a new type of glass-ceramics, allowing a significant fixation of fluorine (maintained as CaF_2 or in the form of calcium silicon oxyfluorides), by direct sintering of exhausted lime mixed with clay and recycled glass from dismantled cathode ray tubes. The low softening temperature of recycled glass allowed a substantial viscous flow at relatively low temperature. Sintered glass-ceramic samples of optimized composition (glass/clay/waste weight proportion equal to 50/30/20), featured a water absorption below 2%, a good specific strength and, above all, a substantially unchanged F content, compared to the starting mixture. The obtained glass-ceramics could be used as low cost tiles, especially for insulation purposes, exploiting the residual porosity (30-40%).
机译:氢氧化钙通常用于中和玻璃和陶瓷制造过程中从熔炉中逸出的酸烟,导致产生大量废料,称为“废石灰”。氟化钙的存在使这种废物作为富含钙的第二原料的使用大大复杂化。本研究旨在开发一种新型的玻璃陶瓷,该玻璃陶瓷可通过直接烧结混合了废石灰,粘土和再生玻璃的方式,显着固定氟(以CaF_2或​​氟氧化硅钙的形式保持)。拆卸的阴极射线管。再生玻璃的低软化温度允许在相对较低的温度下产生大量的粘性流动。经过优化的成分(玻璃/粘土/废料重量比等于50/30/20)的烧结玻璃陶瓷样品,其吸水率低于2%,具有良好的比强度,最重要的是,与之相比,F含量基本保持不变起始混合物。所获得的玻璃陶瓷可利用剩余孔隙率(30-40%)用作低成本瓷砖,尤其是用于隔热目的。

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