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Rapid production of biodiesel in a microchannel reactor at room temperature by enhancement of mixing behaviour in methanol phase using volume of fluid model

机译:通过使用流体模型的体积增强甲醇相中的混合行为,在室温下快速生产微通道反应器中的生物柴油

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摘要

The demand for biodiesel to reduce consumption of fossil fuels has motivated engineers to design a rapid and safe production process. However, the slow mass transfer of multiphase transesterification reaction hinders the overall reaction time. A continuous process using a microchannel reactor was proven to achieve complete reaction time in 40 s with high oil conversion of 98.6% due to the enhancement of mixing inside the methanol slug phase. The reaction was successfully performed at ambient room environment, without heating element in the reactor that reduces the design complexity and makes the operation energy efficient and safer. The enhancement of reaction was investigated based on the hydrodynamic factors such as interfacial area and mixing. Three-dimensional Computational Fluid Dynamics (CFD) simulation shows a torus-shaped recirculation structure inside methanol slug that enhances mixing. Microchannel reactor has been proven to enhance the mixing and capable in having faster, highly efficient, and safer process. (C) 2020 Elsevier Ltd. All rights reserved.
机译:对生物柴油的需求减少化石燃料的消耗具有促进的工程师设计了快速安全的生产过程。然而,多相酯交换反应的缓慢传质阻碍了整体反应时间。已经证明使用微通道反应器的连续方法在40秒内实现完全反应时间,其高油转化为98.6%,由于在甲醇裂片阶段内部的混合增强。在环境室环境中成功进行反应,在反应器中没有加热元件,这降低了设计复杂性并使操作能量有效和更安全。基于界面区域如界面区域和混合等水动力因子研究了反应的增强。三维计算流体动力学(CFD)仿真显示了甲醇块内的圆环形再循环结构,其增强混合。已证明微通道抗料器以增强混合,并能够更快,高效,更安全的过程。 (c)2020 elestvier有限公司保留所有权利。

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