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Coaxial traveling-wave microwave reactors: Design challenges and solutions

机译:同轴行驶波微波炉反应堆:设计挑战和解决方案

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Microwave chemistry applications have been investigated for more than three decades. Contrary to common cavity-based microwave applicators, the traveling-wave microwave reactor has the potential to enable the process scale-up, a better coupling of microwave energy with microwave-susceptible catalysts, and consequently highly uniform microwave heating. In this work, the engineering challenges entailed with the design of a traveling-wave microwave waveguide are explained and appropriate solutions developed. A new traveling-wave microwave reactor with a coaxial waveguide structure is presented. Simulation results show that there is no standing wave generated along the structure. Furthermore, in order to keep the impedance matching and minimize the microwave reflections while the reactor is loaded with catalyst samples, new reactor's loading patterns are introduced. Simulation results showed that for the proposed method, microwave-susceptible catalytic fixed-bed could interact more efficiently with microwave energy and produce a uniform heating profile. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:微波化学应用已被调查超过三十年。与普通腔的微波涂布器相反,行进波微波反应器具有能够使过程展示的可能性,微波能量与微波易感催化剂更好地耦合,因此高度均匀的微波加热。在这项工作中,解释了具有旅行波微波波导设计的工程挑战,并开发了适当的解决方案。提出了一种具有同轴波导结构的新的行波微波反应器。仿真结果表明,沿着结构产生的常设波。此外,为了使阻抗匹配并最小化微波反射,而在反应器加载催化剂样品时,引入了新的反应器的装载图案。仿真结果表明,对于所提出的方法,微波易溶性催化固定床可以与微波能量更有效地相互作用,并产生均匀的加热曲线。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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