渣结构的聚合程度对碱活化渣粘结剂强度的影响

Q1 Earth and Planetary Sciences International Journal of Mineral Processing Pub Date : 2017-07-10 DOI:10.1016/j.minpro.2017.05.007
P.M. Keeley , N.A. Rowson , T.P. Johnson , D.E. Deegan
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引用次数: 25

摘要

作为工业副产物产生的矿渣可以通过生产碱活性矿渣(AAS)粘结剂来替代水泥。炉渣是由各种高温过程产生的,炉渣的成分会根据其来源而变化。本文研究了渣的化学成分对其硅酸盐玻璃网络结构的影响及其对碱活化过程中渣性能的影响。得到了几种不同的炉渣成分,并用拉曼光谱测定了炉渣中的硅酸盐结构。采用机械强度试验和溶出试验对碱活化过程中炉渣的性能进行了评价。结果表明,化学成分对炉渣的聚合有一定的影响,炉渣网络结构聚合度的降低导致AAS粘结剂强度的提高和炉渣反应性的提高。
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The effect of the extent of polymerisation of a slag structure on the strength of alkali-activated slag binders

Slags produced as industrial by-products can be used to replace cement by producing alkali-activated slag (AAS) binders. Slags are produced from a variety of high temperature processes and the composition of the slag will change depending on its origin. This paper presents work which investigated the effect of the chemical composition of the slag on its silicate glass network structure and how this affects the performance of the slag during alkali-activation. Several different slag compositions were obtained and Raman spectroscopy was used to determine the silicate structure present in the slags. Mechanical strength testing and dissolution experiments were used to assess the performance of the slags during alkali-activation. The results show that the chemical composition effects the polymerisation of the slag and a decrease in polymerisation of the slag's network structure leads to an increase in the strength of the AAS binder and greater slag reactivity.

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来源期刊
International Journal of Mineral Processing
International Journal of Mineral Processing 工程技术-工程:化工
CiteScore
3.02
自引率
0.00%
发文量
0
审稿时长
11.1 months
期刊介绍: International Journal of Mineral Processing has been discontinued as of the end of 2017, due to the merger with Minerals Engineering. The International Journal of Mineral Processing covers aspects of the processing of mineral resources such as: Metallic and non-metallic ores, coals, and secondary resources. Topics dealt with include: Geometallurgy, comminution, sizing, classification (in air and water), gravity concentration, flotation, electric and magnetic separation, thickening, filtering, drying, and (bio)hydrometallurgy (when applied to low-grade raw materials), control and automation, waste treatment and disposal. In addition to research papers, the journal publishes review articles, technical notes, and letters to the editor..
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