通过机械化学活化炼钢废渣获得无水泥复合粘结剂

E. V. Korneeva
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摘要

目的。在建筑业中使用矿渣原料的一个前景广阔的领域是借助机械化学提高其结构的不稳定性和活性。本文致力于研究炼钢生产过程中产生的(新鲜)钢渣的联合活化,以创造一种获得无水泥钢渣粘结剂的有效技术。钢渣用作原材料--西西伯利亚冶金厂(新库兹涅茨克)的能量饱和大吨位废料。作为活化剂的是 "Abashevskaya "煤矿(新库兹涅茨克)煤炭工业的废料:从废料堆和污泥中烧掉的岩石,这些污泥是用石灰中和废酸性电池和工业运输电池的电解液后得到的。原材料热重曲线研究:加工前的 "钢渣 "和 "烧结岩 "显示了其特征及其固有的放热和内热效应。确定了添加剂-活化剂对钢渣机械化学活化过程中物理和化学过程的影响,以及主要的结构形成因素。基于所使用的机械活化炉渣原料,获得了一种基质结构的无水泥粘结剂。利用钢铁熔渣制造复合粘结剂是当今大规模建设和技术利用技术形成任务的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanochemical activation of steelmaking slag to obtain a cementless composite binder
Objective. One of the promising areas for the use of slag raw materials in the construction industry is to increase its structural instability and activity with the help of mechanochemistry. The article is devoted to the study of the combined activation of the produced (fresh) slag of steelmaking production in order to create an effective technology for obtaining cementless slag binder.Method. Steel slags were used as raw materials - energy-saturated large-tonnage waste of the West Siberian Metallurgical Plant (Novokuznetsk). As an activator waste from the coal industry of the «Abashevskaya» mine (Novokuznetsk): burnt rocks from waste heaps and sludge, obtained by lime neutralization of electrolytes of spent acid batteries, industrial transport batteries. The study of thermogravimetric curves of raw materials: "steel slag" and "burnt rock" before processing showed the characteristic features and their inherent exothermic and endothermic effects. The effect of additives-activators on the physical and chemical processes during the mechanochemical activation of steel-smelting slag has been established and main structure-forming factors.Result. Based on the used mechanically activated slag raw materials, a cementless binder of a matrix structure was obtained.Conclusion. The creation of composite binders using steel-smelting slag is relevant today as part of a large-scale task of construction and technological utilization of technogenic formations.
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