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Effect of specimen geometry on kinetics of thermal decomposition of minerals in porous ceramic tiles

机译:试样几何对多孔陶瓷砖矿物质热分解动力学的影响

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Porous ceramic tiles are used as covering for indoor vertical surfaces in buildings. Clay and limestone are the starting raw materials. The firing step consolidates the product's properties in the manufacturing process. In this step several reactions occur, among them are the dehydroxylation of the clay minerals and decomposition of the carbonates. This study determined the kinetics parameters associated with the decomposition of these 2 minerals. Two different methods of samples preparation were investigated. In the first method, 60 mg of a spray-dried powder was submitted to analysis in traditional thermogravimetric equipment. In the second method, compacted specimens with dimensions of 80 x 20 x 2.5 mm(3) and a mass of 7 g, compacted at 25 MPa, were submitted to analysis using customized thermogravimetric apparatus. The curves were obtained for 6 different heating rates between 2.5 and 20 K min(-1). The activation energy, the pre-exponential factor of the specific velocity equation, and the reaction mechanism were determined. Depending on the methods and compaction degree the activation energy varies from 177.0 to 224.7 kJ mol(-1) and from 188.5 to 230.2 kJ mol(-1) for kaolinite and calcium carbonate, respectively. For accurate measurement of the activation energy, the heat transfer needs to be considered for each particular experimental configuration.
机译:多孔陶瓷砖用作建筑物中室内垂直表面的覆盖物。粘土和石灰石是起始原料。射击步骤在制造过程中巩固了产品的性质。在该步骤中,发生几种反应,其中是粘土矿物的脱羟基化和碳酸盐的分解。该研究确定了与这2个矿物分解相关的动力学参数。研究了两种不同的样品制备方法。在第一种方法中,将60mg喷雾干燥的粉末提交以分析传统的热重型设备。在第二种方法中,将尺寸为80×20×2.5mm(3)的压实样品和7g,在25MPa中压实的7g,使用定制的热重装置进行分析。在2.5和20kmin(-1)之间的6种不同的加热速率获得曲线。测定激活能量,特定速度方程的预指数因子和反应机理。根据方法和压实程度,活化能量可从177.0至224.7 kJ摩尔(-1)和188.5至230.2 kJ mol(-1)分别用于高岭石和碳酸钙。为了精确测量激活能量,需要考虑对每个特定的实验配置进行传热。

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