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Heat transfer and flow characterization studies in a moving and stirred bed vacuum pyrolysis reactor handling polydispersed softwood bark feedstock.

机译:在移动和搅拌床真空热解反应器中处理多分散的软木树皮原料的传热和流动特性研究。

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In this work, the heat transfer and flow characteristics have been studied in a pilot scale moving and stirred bed vacuum pyrolysis reactor fed with polydispersed softwood bark feedstock. Thermo-physical properties such as particle density, particle thermal conductivity and specific heat of softwood bark and therein derived softwood char have been experimentally measured and are reported for the first time. A new comprehensive unified approach using Linear Packing Theory and Unit Cell Model, is proposed for calculation of the effective thermal conductivity (ETC) of polydispersed packed beds. This approach has been validated on binary and ternary beds and has been applied to higher order beds of softwood bark and softwood char. The ETC of polydispersed beds of softwood bark and softwood char have been predicted as a function of particle size distribution. Using the polydispersed fluorescent tracers and residence time distribution technique, the flow characteristics of polydispersed particle of softwood bark have been studied in a pilot scale reactor. Single parameter dispersed plug flow model and identical CSTRs-in-series models have been successfully used to fit the experimental data.
机译:在这项工作中,在中试规模的移动和搅拌床真空热解反应器中研究了传热和流动特性,该反应器中装有多分散的软木树皮原料。已通过实验测量并首次报道了热物理性质,例如软木树皮及其中衍生的软木炭的颗粒密度,颗粒热导率和比热。提出了一种使用线性填充理论和单元格模型的综合性新方法,用于计算多分散填充床的有效导热系数(ETC)。该方法已经在二元和三元床上得到验证,并已应用于软木树皮和软木炭的高阶床。据预测,软木树皮和软木炭的多分散床的ETC是粒径分布的函数。使用多分散荧光示踪剂和停留时间分布技术,在中试规模反应器中研究了软木树皮多分散颗粒的流动特性。单参数分散塞流模型和相同的CSTRs串联模型已成功用于拟合实验数据。

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