Geopolymer Materials from Fly Ash—A Sustainable Approach to Hazardous Waste Management

Materials Pub Date : 2024-07-16 DOI:10.3390/ma17143515
K. Zarębska, J. Szczurowski, Joanna Muszyńska, P. Baran
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Abstract

This study explores the utilisation challenges of fly ash from municipal waste incineration, specifically focusing on ash from a dry desulphurisation plant (DDS), which is categorised as hazardous due to its high heavy metal content. The ash’s low silicon and calcium contents restrict its standalone utility. Laboratory investigations initially revealed that geopolymers derived solely from fly ash after flue gas treatment (FGT), in combination with coal combustion fly ash, exhibited low compressive strength (below 0.6 MPa). However, the study demonstrated significant improvements by modifying the FGT ash through water leaching. This process enhanced its performance when mixed with high-silica and -aluminium fly ash, resulting in geopolymers achieving compressive strengths of up to 18 MPa. Comparable strength outcomes were observed when the modified ash was blended with commercial cement. Leachability tests conducted for heavy metals (HMs) such as copper, zinc, lead, cadmium, and nickel indicated that their concentrations fell below the regulatory limits for landfill disposal: 2, 4, 0.5, 0.04, and 0.4 mg/kg, respectively. These results underscore the effectiveness of water-washing FGT ash in conjunction with other materials for producing geopolymers, contributing to sustainable waste management practices.
从粉煤灰中提取土工聚合物材料--危险废物管理的可持续方法
本研究探讨了城市垃圾焚烧产生的飞灰的利用难题,特别关注干法脱硫厂(DDS)产生的灰烬,由于其重金属含量高,被归类为有害物质。灰烬中的硅和钙含量较低,限制了其单独使用。实验室研究最初发现,仅从烟气处理(FGT)后的粉煤灰中提取的土工聚合物与燃煤粉煤灰结合后,抗压强度较低(低于 0.6 兆帕)。不过,研究表明,通过水浸法对 FGT 灰进行改性后,抗压强度有了显著提高。在与高硅铝粉煤灰混合时,这一工艺提高了粉煤灰的性能,使土工聚合物的抗压强度高达 18 兆帕。当改性灰与商品水泥混合时,也观察到了类似的强度结果。对铜、锌、铅、镉和镍等重金属(HMs)进行的可浸出性测试表明,它们的浓度低于垃圾填埋处理的规定限值:分别为 2、4、0.5、0.04 和 0.4 毫克/千克。这些结果表明,水洗 FGT 灰与其他材料一起用于生产土工聚合物非常有效,有助于可持续废物管理实践。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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