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首页> 外文期刊>Inzynieria Chemiczna i Procesowa >NUMERICAL ANALYSIS OF THE EFFECT OF HYDRODYNAMICS AND OPERATING CONDITIONS ON BIODIESEL SYNTHESIS IN A ROTOR-STATOR SPINNING DISK REACTOR
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NUMERICAL ANALYSIS OF THE EFFECT OF HYDRODYNAMICS AND OPERATING CONDITIONS ON BIODIESEL SYNTHESIS IN A ROTOR-STATOR SPINNING DISK REACTOR

机译:流体动力学与运行条件对转子定子纺丝磁盘反应器中生物柴油合成效果的数值分析

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摘要

A rotor-stator spinning disk reactor for intensified biodiesel synthesis is described and numerically simulated in the present research. The reactor consists of two flat disks, located coaxially and parallel to each other with a gap ranging from 0.1 mm to 0.2 mm between the disks. The upper disk is located on a rotating shaft while the lower disk is stationary. The feed liquids, triglycerides (TG) and methanol are injected into the reactor from centres of rotating disk and stationary disk, respectively. Fluid hydrodynamics in the reactor for synthesis of biodiesel from TG and methanol in the presence of a sodium hydroxide catalyst are simulated, using convection-diffusion-reaction multicomponent transport model with the CFD software ANSYS(C)Fluent v. 13.0. Effect of operating conditions on TG conversion is particularly investigated. Simulation results indicate that there is occurrence of back flow close to the stator at the outlet zone. Small gap size and fast rotational speed generally help to intensify mixing among reagents, and consequently enhance TG conversion. However, increasing rotational speed of spinning disk leads to more backflow, which decreases TG conversion. Large flow rate of TG at inlet is not recommended as well because of the short mean residence time of reactants inside the reactor.
机译:在本研究中描述和数值模拟了用于加强生物柴油合成的转子定子旋转盘式反应器。反应器由两个平板组成,彼此同轴和平行地位于磁盘之间的间隙范围为0.1mm至0.2mm。上盘位于旋转轴上,而下盘是静止的。进料液体,甘油三酯(Tg)和甲醇分别从旋转盘和固定盘的中心注入反应器中。模拟在氢氧化钠催化剂存在下,使用CFD软件Ansys(c)流畅的v.13.0,模拟了在氢氧化钠催化剂存在下从Tg和甲醇合成生物柴油和甲醇的反应器中的流体流体动力学。13.0。特别研究了操作条件对TG转化的影响。仿真结果表明,在出口区处发生靠近定子的后流动发生。小间隙尺寸和快速转速通常有助于强化试剂中的混合,从而增强Tg转化。然而,增加旋转盘的转速导致更多的回流,这降低了Tg转换。由于反应器内反应物的短平均停留时间,不推荐在入口处的TG流速大。

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