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The Chemometric Study of Limestone Physico-chemical Properties and Thermal Behavior for Application in Construction Composites

机译:石灰石物理化学性能和施工复合材料应用热行为的化学计量研究

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摘要

The limestone, as an economically sustainable and easily available basic raw material, is frequently utilized in the building industry for resolving of the environmental protection issues. The limestone is incorporated in a cementitious system either by grinding with cement clinker, or by blending with the binder during concrete production. The employing of powdery limestone as partial cement replacement gives the construction composites with properties comparable to that of conventional concrete. The study of limestone thermal behavior and its chemistry is crucial for the prognosis of the designed composites properties. In this work, the instrumental techniques (atomic emission spectroscopy, differential thermal and thermo-gravimetric analysis, Fourier transform infrared spectroscopy) and the Principal component analysis were employed to discriminate and classify 22 limestone types. The PCA statistical method, as a means of spectra and experimental data fingerprinting, grouped the samples in a multi-dimensional factor space producing four graphical prognosis - one for each instrumental method. DTA/TG peak values varied the most in a short range between 830-870 degrees C, while FTIR spectra showed the highest diversity in the 867-887 cm(-1) and 1237-1647 cm(-1) ranges. This research was governed by an idea to reveal whether it is possible to differentiate various limestone types and to predict the possibility of their employment in construction composites on the basis of the results of instrumental and mathematical analyses.
机译:作为经济上可持续和易于可用的基本原料的石灰石经常在建筑行业中用于解决环境保护问题。通过用水泥熟料研磨,或通过在混凝土生产期间与粘合剂混合来掺入水泥系统中。粉末状石灰石作为部分水泥置换的用途为施工复合材料提供了与传统混凝土的性质相当的性质。对石灰石热行为及其化学的研究对于设计复合材料的预后至关重要。在这项工作中,使用仪器技术(原子发射光谱,差分热和热重分析,傅里叶变换红外光谱)和主要成分分析来区分和分类22种石灰岩类型。 PCA统计方法,作为光谱和实验数据指纹识别的手段,将样品分组在多维因子空间中,产生四个图形预后 - 每个乐器方法。 DTA / TG峰值值在830-870摄氏度之间的短程范围内变化,而FTIR光谱在867-887cm(-1)和1237-1647cm(-1)范围内显示出最高的分集。这项研究受到了一个想法的管辖,揭示了是否有可能区分各种石灰岩类型并在仪器和数学分析的结果的基础上预测其在施工复合材料中的就业。

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