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Briquetting of waste glass cullet fine particles for energy saving glass manufacture

机译:用于节能玻璃制造的废玻璃Cullet细粒子的压块

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Fine particles of glass cullet (fines) arising during glass recycling cannot presently be recycled into glass manufacture due to the potential for bubble formation and foaming. Consolidation of glass fines into briquettes could enable their reintroduction into furnaces, reducing waste and glass melting energies. Properties of briquetted cullet fines and briquette melting behaviour in soda-lime-silica glass batches are presented. Morphology and density of glass fines and briquettes; and briquette mass and mechanical properties as functions of time after formation were analyzed. Compressive strength increases linearly with time after briquette formation. With slight batch modifications to maintain the same final glass composition, up to 15 wt% briquettes were successfully added to a representative container glass batch and melted. Results confirm that briquette batch additions can provide equivalent final glass composition, optical absorption characteristics and redox to briquette-free batches, supporting their industrial uptake.
机译:由于泡沫形成和发泡的可能性,在玻璃回收期间产生的玻璃Cullet(粉末)的细颗粒不能呈现为玻璃制造。将玻璃含量固结成煤球物可以将其重新介入到炉子中,减少废物和玻璃熔化能量。提出了苏打水分玻璃批次煤层粉的性质和煤层熔化行为。玻璃料和煤层的形态和密度;分析了聚片和机械性能作为形成后的时间函数。抗压强度随着地块形成后的时间线性增加。通过轻微的分批修饰来维持相同的最终玻璃组合物,成功地加入到代表性的容器玻璃批量中并熔化成功加入15wt%的团块。结果证实,压块批量添加可以提供等效的最终玻璃组成,光学吸收特性和氧化还原,对抗普通批次,支持其工业吸收。

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