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A physics-based temperature model for ultrasonic vibration-assisted pelleting of cellulosic biomass

机译:基于物理的温度模型用于纤维素生物质的超声振动辅助造粒

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摘要

Temperature in ultrasonic vibration-assisted (UV-A) pelleting of cellulosic biomass has a significant impact on pellet quality. However, there are no reports on temperature models for UV-A pelleting of cellulosic biomass. The development of a physics-based temperature model can help to explain experimentally determined relations between UV-A pelleting process variables and temperature, and provide guidelines to optimize these process variables in order to produce pellets of good quality. This paper presents such a model for UV-A pelleting of cellulosic biomass. Development of the model is described first. Then temperature distribution is investigated using the model, and temperature difference between the top and the bottom surfaces of a pellet is explained. Based on this model, relations between process variables (ultrasonic power and pelleting duration) and temperature are predicted. Experiments were conducted for model verification, and the results agreed well with model predictions.
机译:纤维素生物质的超声振动辅助(UV-A)造粒过程中的温度对造粒质量有重大影响。但是,没有关于纤维素生物质的UV-A造粒温度模型的报道。基于物理学的温度模型的开发可以帮助解释UV-A制粒工艺变量和温度之间实验确定的关系,并为优化这些工艺变量提供指导,以生产出高质量的颗粒。本文提出了一种用于纤维素生物质的UV-A造粒的模型。首先描述模型的开发。然后使用该模型研究温度分布,并解释颗粒顶部和底部表面之间的温差。基于此模型,可以预测过程变量(超声波功率和造粒持续时间)与温度之间的关系。进行了模型验证实验,结果与模型预测吻合良好。

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