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基于偏高岭土的地质聚合物高效稳定重金属的实验设计方法

Design of Experiments Approach for Efficient Heavy Metals Stabilization Using Metakaolin-Based Geopolymers.

作者信息

Russo Raffaele Emanuele, Santoni Elisa, Fattobene Martina, Giovini Mattia, Genua Francesco, Leonelli Cristina, Lancellotti Isabella, Herrero Ana, Berrettoni Mario

机构信息

School of Science and Technology, Chemistry Division, University of Camerino, Via Madonna delle Carceri-ChIP, 62032 Camerino, MC, Italy.

Department of Engineering "Enzo Ferrari", University of Modena and Reggio Emilia, Via P. Vivarelli n. 10, 41125 Modena, MO, Italy.

出版信息

Molecules. 2025 Aug 1;30(15):3235. doi: 10.3390/molecules30153235.

Abstract

Alkali-activated aluminosilicate matrices are increasingly studied for their ability to stabilize hazardous metal contaminants via alkali activation at room temperature. In this study, metakaolin-based geopolymers were used to immobilize chromium and nickel salts, with systematic variation of key synthesis parameters, Na/Al molar ratio, metal concentration, anion type, and alkaline solution aging time, which have not been previously studied. A Design of Experiments approach was employed to study the effect of factors on metal leaching behavior and to better understand the underlying immobilization mechanisms. The analysis revealed that higher Na/Al ratios significantly enhance geopolymerization and reduce metal release, as supported by FTIR spectral shifts and decreased shoulder intensity. Notably, aging time had an influence on chromium behavior due to its effect on early silicate network formation, which can hinder the incorporation of chromium species. All tested formulations achieved metal immobilization rates of 98.8% or higher for both chromium and nickel. Overall, this study advances our understanding of geopolymer-based heavy metal immobilization.

摘要

碱激活的硅铝酸盐基质因其在室温下通过碱激活稳定有害金属污染物的能力而受到越来越多的研究。在本研究中,基于偏高岭土的地质聚合物被用于固定铬盐和镍盐,同时系统地改变了关键合成参数,如钠铝摩尔比、金属浓度、阴离子类型和碱性溶液老化时间,这些参数此前尚未被研究过。采用实验设计方法来研究各因素对金属浸出行为的影响,并更好地理解潜在的固定机制。分析表明,较高的钠铝比显著增强了地质聚合作用并减少了金属释放,傅里叶变换红外光谱(FTIR)的谱带位移和肩部强度降低也证实了这一点。值得注意的是,老化时间对铬的行为有影响,因为它会影响早期硅酸盐网络的形成,进而阻碍铬物种的掺入。所有测试配方对铬和镍的金属固定率均达到98.8%或更高。总体而言,本研究增进了我们对基于地质聚合物的重金属固定作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c050/12348866/b27a50428d77/molecules-30-03235-g001.jpg

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