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首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Kinetic study of the dehydration reaction of lithium sulfate monohydrate crystals using microscopy and modeling
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Kinetic study of the dehydration reaction of lithium sulfate monohydrate crystals using microscopy and modeling

机译:硫酸锂一水合物晶体脱水反应的动力学及模型研究

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Simulation of gas-solid reactions occurring in industrial processes requires a robust kinetic model to be applicable in a wide range of complicated reaction conditions. However, in literature it is often seen that even the same reaction under specific controlled conditions is interpreted with different kinetic models. In the present work, a phenomenological model based on nucleation and nuclei growth processes is presented to study the kinetics of the dehydration reaction of lithium sulfate monohydrate single crystals. The two elementary processes of the reaction, nucleation and nuclei growth, are characterized and quantified as a function of temperature by using optical microscopy experiments. The in-situ measured characteristics of the dehydration reaction provided confirmatory evidence that the rate of nucleation obeys an exponential law and the rate of nuclei growth is approximately constant. With knowledge acquired from the optical observations as inputs of the kinetic model, the fractional conversion of the dehydration reaction was calculated and compared with experimental results from thermogravimetric analysis (TGA). A satisfactory comparison was found both in isothermal and non-isothermal conditions. It is demonstrated that this knowledge-based model has a great potential to represent the gas-solid reaction kinetics in a wide range of process conditions regarding temperature, pressure and particle geometry. (C) 2015 Elsevier B.V. All rights reserved.
机译:对工业过程中发生的气固反应的模拟需要鲁棒的动力学模型,以适用于各种复杂的反应条件。但是,在文献中经常看到即使在特定受控条件下的相同反应也可以用不同的动力学模型来解释。在目前的工作中,基于成核和核生长过程的现象学模型被提出来研究硫酸锂一水合物单晶的脱水反应动力学。反应的两个基本过程,成核和核生长,通过光学显微镜实验表征和量化为温度的函数。脱水反应的原位测量特性提供了证实性证据,证明成核速率服从指数规律,并且成核速率大致恒定。利用从光学观测中获得的知识作为动力学模型的输入,可以计算脱水反应的分数转化率,并将其与热重分析(TGA)的实验结果进行比较。在等温和非等温条件下均发现令人满意的比较。事实证明,这种基于知识的模型具有很大的潜力,可以代表温度,压力和颗粒几何形状等多种工艺条件下的气固反应动力学。 (C)2015 Elsevier B.V.保留所有权利。

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