烧成温度对水力白云岩粘结剂化学性能的影响

I. Kiriloviča, I. Vītiņa, S. Igaune-Blumberga, L. Lindiņa
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摘要

研究了以白云石粉和粘土为原料合成粘结剂的工艺。该粘合剂的主要预期用途是修复历史上的白云质罗马水泥制品。在19 /20世纪,在拉脱维亚境内,白云石罗马水泥是用于建筑的主要液压粘合剂。自1865年以来,它一直在里加加工,将当地的白云质泥灰岩原料烧成低于烧结温度(800-900°C),并经过精细研磨。由于其快速定型和良好的耐水性,该材料主要用于外墙的装饰元素。然而,自20世纪中叶以来,它的生产已经停止。为了提供一种适合修复需要的相容性材料,研究了白云石粉和粘土的组合物作为合成低温水力粘结剂的前景原料。以两种粘土和白云石粉为原料,合成了粉末状的混合物。组成物中的粘土含量从13%到30%不等。将原料混合,半干压,750-950℃烧制样品。该研究对粘土和白云石粉混合合成粘合剂的化学过程有了深入的了解。通过XRD分析和全化学分析,比较了不同生产温度和粘土类型的粘结剂的热化学过程。DOI: http://dx.doi.org/10.5755/j01.ct.67.1.14986
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Influence of firing temperature on the chemical properties of hydraulic dolomitic binder
The synthesis of a binder from the mixture of dolomite flour and clay is investigated. The main anticipated usage of the binder is for the restoration of historical dolomitic Roman cement objects. During the 19 th /20 th century, in the territory of Latvia dolomitic Roman cement was the main hydraulic binder applied for the construction of buildings. It was processed in Riga since 1865 by firing the local raw material dolomitic marlstone below its sintering temperature (800–900 °C) and by fine milling. Because of its fast setting and good water resistance, the material was used mostly for decorative elements of facades. However, since the middle of the 20 th century its production has been stopped. With the aim to provide a compatible material for restoration needs, compositions from dolomite flour and clay were investigated as a perspective raw material for the synthesis of a low-temperature hydraulic binder. Mixtures from two types of clay and dolomite flour in powder state were synthesized. Clay content in the compositions varied from 13 to 30 %. Samples were prepared by mixing the raw materials, semi-dry pressing and firing at 750–950 °C. The study gives an insight into the chemical processes that occur during the synthesis of a binder from a mixture of clay and dolomite flour. Thermochemical processes in the obtained binder depending on production temperature and clay type were compared by using the XRD analysis and a full chemical analysis. DOI: http://dx.doi.org/10.5755/j01.ct.67.1.14986
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