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Preparation and performance of slag-based binders for the cementation of fine tailings

机译:矿渣基粘合剂的胶粘剂粘合剂的制备与性能

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摘要

To achieve effective cementation of fine tailings, slag-based binders were prepared using Portland cement clinker stimulation, early strength activator (ESA, mixture of anhydrite and triethanolamine at 97:3 (w/w)) activation and slag pulverization methods. The compressive strength, hydration products, slag reaction degree and non-evaporable water content of the consolidated samples under different curing times were analyzed to clarify the application performance and early strength action mechanisms of this slag-based binder. The results showed that clinker alone was able to effectively stimulate the slag's cementitious property, but the cementation strength was relatively low. The addition of ESA in the clinker activated slag promoted the conversion of C(4)AH(13) into ettringite (AFt) and accelerated the consumption of Ca(OH)(2), all of which significantly improved the early cementation strength of fine tailings. Slag pulverization promoted the slag reaction degree and increased the yield of hydrated products, which led to a further increase in the early strength of the slag-based binder. Eventually, a more efficient and higher early strength slag-based binder was prepared with the composition of 27% clinker, 10% ESA and 63% pulverized slag, and the cementation strength at 3 curing days for the fine tailings sample was 231% more than that of P.O 42.5 Portland cement.
机译:为了实现精细尾矿的有效胶结,使用波特兰水泥熟料刺激,早期强度活化剂(ESA,AnHydry的ESA和97:3(w / w))活化和渣粉碎方法的熔渣基粘合剂。分析了在不同固化时间下巩固样品的抗压强度,水合产物,渣反应程度和非蒸发水含量,以阐明该渣基粘合剂的应用性能和早期强度作用机制。结果表明,单独的熟料能够有效地刺激渣的水泥性能,但胶结强度相对较低。在熟料活化渣中添加ESA促进C(4)αH(13)的转化为Ettringite(AFT),加速Ca(OH)(2)的消耗,所有这些都显着提高了细微的早期胶结强度尾矿。渣粉碎促进了渣反应程度并增加了水合产物的产率,这导致了渣基粘合剂的早期强度的进一步增加。最终,使用27%熟料,10%ESA和63%粉碎渣的组成制备了更高效且更高的早期强度渣粘合剂,并且对于细尾样样品的3个固化天的胶结强度比231%更高Po 42.5波特兰水泥。

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