STUDY OF THE POSSIBILITY OF USING VARIOUS CARBONATE ROCKS IN THE SYNTHESIS OF CALCIUM-ALUMINOFERRITE CLINKER

I. Borisov, A. Novosyolov, M. Nikitina
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Abstract

The article considers the possibility of using carbonate rocks of limestone, marl and chalk in the synthesis of calcium-aluminoferrite clinker (CAFC). The analysis of the structure of carbonate rocks, as well as their influence on the physico-chemical processes occurring during the synthesis of calcium-aluminoferrite clinker, is given. Phase formation has been studied in the temperature ranges 900-1000 °C and 1100-1200 °C with an isothermal exposure of 20 minutes. The heat treatment mode has been selected to obtain the basic phase composition of calcium-aluminoferrite clinker. The dynamics of changes in the qualitative phase composition of firing products at various temperatures, ranging from 900 °C to the clinker sintering temperature of 1200 ° C, as well as quantitative characteristics of the intensity of formation of the main clinker phases are presented. It was found that during the firing of CAFC in the temperature range of 900-1000 °C, raw materials mixtures gradually undergo a number of physico–chemical transformations, the main of which are thermal dissociation of CaCO3, the formation of intermediate phases (CS, CF, Al2O3•4SiO2, Al2O3•SiO2), as a result of decomposition of accompanying minerals and solid-phase interactions, as well as the beginning of the formation of clinker compounds CA, C2AS and C2F. It is proposed to use for the limestone-bauxite composition a temperature of 1150 °C with an exposure of 40-60 minutes, marl-bauxite - 1100 °C with an exposure of 30-40 minutes and chalk-bauxite- 1100 °C with an exposure of 30-40 minutes.
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利用各种碳酸盐岩合成钙铝铁熟料的可能性研究
文章探讨了利用石灰石、泥灰岩和白垩等碳酸盐岩合成钙铝铁熟料(CAFC)的可能性。文章分析了碳酸盐岩的结构及其对钙铝硬质合金熟料合成过程中发生的物理化学过程的影响。在 900-1000 °C 和 1100-1200 °C 的温度范围内研究了相的形成,等温接触 20 分钟。热处理模式的选择是为了获得钙铝硬质合金熟料的基本相组成。介绍了在从 900 ℃ 到熟料烧结温度 1200 ℃ 的不同温度下烧结产品的定性相组成的动态变化,以及熟料主要相形成强度的定量特征。研究发现,在 900-1000 °C 温度范围内烧制 CAFC 时,生料混合物会逐渐发生一系列物理化学转变,其中主要是 CaCO3 的热解离、中间相(CS、CF、Al2O3-4SiO2、Al2O3-SiO2)的形成(由于伴生矿物的分解和固相相互作用)以及熟料化合物 CA、C2AS 和 C2F 的开始形成。建议石灰石-铝土矿成分的温度为 1150 °C,煅烧时间为 40-60 分钟;泥灰岩-铝土矿成分的温度为 1100 °C,煅烧时间为 30-40 分钟;白垩-铝土矿成分的温度为 1100 °C,煅烧时间为 30-40 分钟。
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