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Leaching behavior of fly ash-waste glass and fly ash-slag-waste glass-based geopolymers

机译:粉煤灰废物玻璃和飞灰 - 渣玻璃基地质聚合物的浸出行为

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摘要

The leaching behavior of contaminants in the fly ash/waste glass or fly ash/blast furnace slag/waste glass-based geopolymers was investigated through surface area analysis and leaching tests. Spent fluorescent lamps classified as hazardous waste due to their specific contaminant contents were used as a source of waste glass. The results from semi-dynamic leaching tests showed that the mobility of contaminants increases as the amount of waste glass added to the synthesis mixture increases. These results are consistent with those obtained from the surface area analysis. However, the comparative analysis of mobility of contaminants between types of activated mixtures highlighted a different trend of mobility of contaminants to that of pore size distributions. Therefore, the leaching behavior of contaminants suggests that their immobilization in the activated mixtures might occur by both physical and chemical mechanisms. Also, it was emphasized that waste glass is not compliant with respect to its leachable Hg content, and that Hg and Pb exhibit high mobility in the geopolymers with high amount of waste glass added to the synthesis mixtures.
机译:通过表面积分析研究了粉煤灰/废玻璃或粉煤灰/高炉炉渣/废玻璃基地质聚合物的浸出行为。由于其特定的污染物内容物而被归类为危险废物的废光灯用作废玻璃的来源。半动脉冲试验的结果表明,随着添加到合成混合物的废玻璃的量增加,污染物的迁移量增加。这些结果与从表面积分析中获得的结果一致。然而,活化混合物类型之间污染物迁移率的比较分析突出了污染物迁移率与孔径分布的不同趋势。因此,污染物的浸出行为表明它们的固定在活性混合物中可能因物理和化学机制而发生。而且,强调废物玻璃不符合其可浸没的Hg含量,并且Hg和Pb在加入合成混合物中的高量废物玻璃中表现出高迁移率。

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