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Development and Application of 3D Printed Mesoreactors in Chemical Engineering Education

机译:化工教育3D印刷中模因思的开发与应用

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摘要

3D printing technology has an enormous potential to apply to chemical engineering education. In this paper, we describe several designs of 3D printed mesoreactors (Y-shape, T-shape, and Long channel shape) using the following steps: reactor sketching, CAD modeling, and reactor printing. With a focus on continuous plug flow mesoreactors (PFRs, i.d. = 2 mm), fluid mixing phenomena were explored by using a passive mixing method. The small channel of mesoreactors facilitates the stability of a laminar flow in the system at low Reynolds number. With changes in flow rates (0.2 and 4.0 mL/min) and channel geometry (0° and 90° outlet angle), fluid mixing was controlled. Our results provided that 3D printed mesoreactors can be possibly used in teaching fluid dynamics, chemical kinetics, and reaction engineering, which are main courses of the chemical engineering undergraduate program. Furthermore, the cost of mesoreactor printing was suitable (<$1.00/microreactor) for education.
机译:3D印刷技术具有巨大的潜力,适用于化学工程教育。 在本文中,我们使用以下步骤描述了多个3D印刷中模因子(Y形,T形和长通道形状)的设计:反应堆素描,CAD建模和电抗器印刷。 在连续塞流中聚焦,通过使用被动混合方法探索流体混合现象。 MesoreActors的小通道有助于在低雷诺数下系统中的层流的稳定性。 随着流速的变化(0.2和4.0ml / min)和通道几何形状(0°和90°出口角),控制流体混合。 我们的结果,条件称3D印刷的内脏反应器可能用于教学流体动力学,化学动力学和反应工程,这是化学工程本科课程的主要课程。 此外,用于教育的MesoreActor印刷的成本适用于(<00美元/ MicroreActor)。

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