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Thermal Decomposition of Maya Blue: Extraction of Indigo Thermal Decomposition Steps from a Multistep Heterogeneous Reaction Using a Kinetic Deconvolution Analysis

机译:玛雅蓝的热分解:使用动力学反卷积分析从多步异构反应中提取靛蓝热分解步骤

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Examining the kinetics of solids’ thermal decomposition with multiple overlapping steps is of growing interest in many fields, including materials science and engineering. Despite the difficulty of describing the kinetics for complex reaction processes constrained by physico-geometrical features, the kinetic deconvolution analysis (KDA) based on a cumulative kinetic equation is one practical method of obtaining the fundamental information needed to interpret detailed kinetic features. This article reports the application of KDA to thermal decomposition of clay minerals and indigo–clay mineral hybrid compounds, known as Maya blue, from ancient Mayan civilization. Maya blue samples were prepared by heating solid mixtures of indigo and clay minerals (palygorskite and sepiolite), followed by purification. The multistep thermal decomposition processes of the clay minerals and Maya blue samples were analyzed kinetically in a stepwise manner through preliminary kinetic analyses based on a conventional isoconversional method and mathematical peak deconvolution to finally attain the KDA. By comparing the results of KDA for the thermal decomposition processes of the clay minerals and the Maya blue samples, information about the thermal decomposition steps of the indigo incorporated into the Maya blue samples was extracted. The thermal stability of Maya blue samples was interpreted through the kinetic characterization of the extracted indigo decomposition steps.
机译:在多个领域,包括材料科学和工程学,研究具有多个重叠步骤的固体热分解动力学的兴趣日益浓厚。尽管难以描述受物理几何特征约束的复杂反应过程的动力学,但基于累积动力学方程的动力学解卷积分析(KDA)是一种获得解释详细动力学特征所需基本信息的实用方法。本文报道了KDA在古代玛雅文明对粘土矿物和靛蓝-粘土矿物混合化合物(称为玛雅蓝)的热分解中的应用。通过加热靛蓝和粘土矿物(坡缕石和海泡石)的固体混合物,然后纯化,制备玛雅蓝样品。通过基于常规等转化方法和数学峰反褶积的初步动力学分析,逐步分析了粘土矿物和玛雅蓝样品的多步热分解过程,最终获得了KDA。通过比较粘土矿物和玛雅蓝样品的热分解过程的KDA结果,可以提取有关掺入玛雅蓝样品中的靛蓝的热分解步骤的信息。通过提取的靛蓝分解步骤的动力学表征解释了玛雅蓝样品的热稳定性。

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