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Rheological characterization and CFD modeling of corn stover-water mixing system at high solids loading for dilute acid pretreatment

机译:稀酸预处理高固含量玉米秸秆-水混合系统的流变学表征和CFD建模

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摘要

CFD modeling of pretreatment reactors at very high lignocellulose solids content requires the characterization of rheological properties of this specific system. In this study, the non-Newtonian rheological properties of the corn stover-water mixture at high solid loading up to 50% with helical ribbon agitation were characterized. The rheological model was developed by introducing the power law model and measuring the torque values of the mixing system in a small reactor (5 L), and then applied to the larger reactors (50 L and 500 L). The CFD model was developed based on the determined rheological properties. The fluid dynamics experiments in three reactors with different scales were used for validation of the rheological model. The calculated power consumption and mixing efficiency by CFD modeling were in good agreements with the experimental results. This study provided a practical method for the rheology characterization and CFD model at high solids loading. The CFD model could be applied to the design and structure analysis of pretreatment reactors in lignocellulose biorefining processes.
机译:木质纤维素固体含量很高时,预处理反应器的CFD模型要求表征该特定系统的流变性。在这项研究中,表征了玉米秸秆-水混合物在高固含量(高达50%)和螺旋螺带搅拌下的非牛顿流变特性。通过引入幂律模型并测量小型反应器(5升)中混合系统的扭矩值来开发流变模型,然后将其应用于较大的反应器(50升和500升)。基于确定的流变性质开发了CFD模型。在三个不同规模的反应器中进行流体动力学实验,以验证流变模型。通过CFD建模计算出的功耗和混合效率与实验结果吻合良好。该研究为高固含量下的流变学表征和CFD模型提供了一种实用的方法。 CFD模型可用于木质纤维素生物精制过程中预处理反应器的设计和结构分析。

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