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首页> 外文期刊>Minerals Engineering >Recycling mica and carbonate-rich mine tailings in alkali-activated composites: A synergy with metakaolin
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Recycling mica and carbonate-rich mine tailings in alkali-activated composites: A synergy with metakaolin

机译:在碱活化复合材料中回收云母和富含碳酸盐的矿尾矿:与Metakaolin的协同作用

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摘要

The main objective of this paper was to investigate the alkali activation of mine tailings (MT) after mechanochemical activation and the effect of metakaolin (MK) addition. Finnish mica-rich tailings from a phosphate mine were studied as precursors for alkali-activated materials (AAM) with a potential application as a substitute for ordinary Portland cement (OPC). The principal physical properties (water absorption, apparent porosity and unconfined compressive strength) were measured for samples containing 30% to 70% tailings. Zeolite phases such as natrolite and cancrinite were observed and the formation of C-(N)-A-S-H-1 and N-A-S-H gels was identified by XRD, DRIFT, FESEM-EDS and NMR technologies. A life cycle assessment (LCA) was conducted on specimens in comparison to OPC. This work indicated that phosphate MT can be recycled through alkali activation with lower CO2 emission compared to all-metakaolin geopolymers and that the binder phase formed at the most promising tailings contents (60-70%) was C-(N)-A-S-H gel.
机译:本文的主要目的是研究机械化学激活后矿山尾矿(MT)的碱活化和偏塔林(MK)添加的影响。从磷酸矿石中致芬兰云母富含尾矿作为碱活化材料(AAM)的前体,其潜在应用作为普通波特兰水泥(OPC)的替代品。测量含有30%至70%尾矿的样品测量的主要物理性质(吸水,表观孔隙率和不包含抗压强度)。观察到沸石等阶段和甲状腺石,并通过XRD,漂移,FESEM-EDS和NMR技术鉴定C-(N)-A-S-H-1和N-A-S-H凝胶的形成。与OPC相比,在标本上进行生命周期评估(LCA)。该作品表明,与全甲醇素地质聚合物相比,磷酸盐MT可以通过碱活化通过具有较低的CO 2排放,并且在最有前途的尾矿内容物(60-70%)上形成的粘合剂相是C-(n)-A-H凝胶。

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