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Waste tyre pyrolysis: Modelling of a moving bed reactor

机译:废轮胎热解:移动床反应器的建模

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This paper describes the development of a new model for waste tyre pyrolysis in a moving bed reactor. This model comprises three different sub-models: a kinetic sub-model that predicts solid conversion in terms of reaction time and temperature, a heat transfer sub-model that calculates the temperature profile inside the particle and the energy flux from the surroundings to the tyre particles and, finally, a hydro-dynamic model that predicts the solid flow pattern inside the reactor. These three sub-models have been integrated in order to develop a comprehensive reactor model. Experimental results were obtained in a continuous moving bed reactor and used to validate model predictions, with good approximation achieved between the experimental and simulated results. In addition, a parametric study of the model was carried out, which showed that tyre particle heating is clearly faster than average particle residence time inside the reactor. Therefore, this fast particle heating together with fast reaction kinetics enables total solid conversion to be achieved in this system in accordance with the predictive model.
机译:本文介绍了在移动床反应器中用于废轮胎热解的新模型的开发。该模型包括三个不同的子模型:根据反应时间和温度预测固体转化的动力学子模型,计算颗粒内部的温度曲线以及从周围环境到轮胎的能量通量的传热子模型。颗粒,最后是预测反应器内部固体流动方式的流体动力学模型。这三个子模型已经集成在一起,以开发一个综合的反应堆模型。在连续移动床反应器中获得实验结果,并将其用于验证模型预测,并且在实验结果与模拟结果之间获得了很好的近似值。此外,对该模型进行了参数研究,结果表明轮胎颗粒加热明显快于反应堆内部的平均颗粒停留时间。因此,根据预测模型,这种快速的颗粒加热以及快速的反应动力学使该系统能够实现总固体转化率。

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