首页> 外文期刊>Journal of Analytical & Applied Pyrolysis >Mathematical modeling of waste plastic pyrolysis in conical spouted beds: Heat, mass, and momentum transport
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Mathematical modeling of waste plastic pyrolysis in conical spouted beds: Heat, mass, and momentum transport

机译:锥形喷头中废塑料热解的数学模型:热量,质量和动量传递

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摘要

A mathematical model has been developed for unsteady-state operation of waste plastic pyrolysis in spouted bed reactors. Such a model is not yet available in the literature. This model predicts radial distributions of solid conversion, yields of individual gas products, solid and gas temperatures and velocity profiles inside the bed. To prevent application of a bulk of empirical equations for determining the hydrodynamic parameters, the momentum balance equations have been included in the model. The results predicted from the model have been compared with those determined experimentally by other researchers for pyrolysis of polystyrene in a spouted bed. A satisfactory agreement has been observed with a mean relative deviation of 0.8%. The model predictions for a scaled-up spouted bed demonstrates that due to the existence of an excellent gas-solid contact in spouted beds the limitations imposed by heat and mass transfer are minimized. In addition, the bed is maintained under isothermal condition. The inlet gas temperature highly affects the model's results in comparison with mass of initial plastic. The amount of inert particles used can be reduced as less as a stable spouting is preserved. A critical value exists for power intensity of heating elements to keep the isothermal conditions of spouted bed that should be carefully considered in design purposes.
机译:已经开发了用于喷床反应器中废塑料热解的非稳态运行的数学模型。在文献中尚没有这种模型。该模型可预测固体转化的径向分布,单个气体产物的产率,固体和气体温度以及床内速度分布。为了避免应用大量的经验方程式来确定水动力参数,动量平衡方程式已包含在模型中。已将模型预测的结果与其他研究人员在喷床中热解聚苯乙烯的实验结果进行了比较。观察到令人满意的一致性,平均相对偏差为0.8%。大型喷头床的模型预测表明,由于喷头床中存在出色的气固接触,可以将传热和传质带来的限制降到最低。另外,将床保持在等温条件下。与初始塑料的质量相比,进气温度对模型的结果影响很大。惰性颗粒的使用量可以减少,只要保持稳定的喷口即可。加热元件的功率强度存在一个临界值,以保持喷射床的等温条件,在设计时应仔细考虑。

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