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首页> 外文期刊>Journal of Thermal Science and Technology >Isothermal Reactor for Continuous Flow Microwave-Assisted Chemical Reaction
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Isothermal Reactor for Continuous Flow Microwave-Assisted Chemical Reaction

机译:等温反应器用于连续流微波辅助化学反应

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An isothermal reactor in which reaction solutions can be controlled at constant temperature under constant microwave irradiation was developed. This is useful for investigating microwave effects on chemical reactions that are not observed under conventional heating conditions. We devised a structure in which a heat-transfer medium with a low dielectric loss factor, which hardly absorbs any microwaves, flowed outside a spiral reaction tube and designed the basic structure of the reactor using electromagnetic simulation to optimize the energy absorption rate. The conditions for increasing the temperature controlling ability of the reactor were also investigated theoretically and experimentally by taking into consideration the influences of three elements: the velocity of the internal fluid, the material for the tube, and the velocity of the external fluid. The velocity of the external fluid had the greatest influence on temperature controlling ability and the material for the tube had the least influence under the experimental conditions. The overall heat transfer coefficient was about 3.9×10~(2) W/(m~(2)·K) when water flowed through the quartz reaction tube at 7.1 mm/s and the external fluid flowed outside the tube at 44 mm/s. We also tested and confirmed that the temperature of water used as internal fluid could be controlled to within ±1.5 K at 309.3 K when microwaves at 26 W were irradiated into the reactor, whereas the temperature of water was over 373 K and boiled without the heat-transfer medium flowing outside the reaction tube using a conventional method of microwave heating. In addition, we investigated microwave effects on Suzuki-Miyaura coupling reaction using the developed isothermal reactor and we confirmed that the temperatures were controlled well in the reactor. The yields obtained by microwave heating were almost the same as that obtained by oil-bath heating.
机译:开发了等温反应器,其中可以在恒定的微波辐射下将反应溶液控制在恒定的温度下。这对于研究微波对化学反应的影响很有用,而在常规加热条件下是不会观察到的。我们设计了一种结构,其中具有低介电损耗因子(几乎不吸收任何微波)的传热介质流到螺旋反应管外,并使用电磁仿真设计了反应器的基本结构,以优化能量吸收率。还考虑了三个因素的影响,从理论上和实验上研究了提高反应器温度控制能力的条件:内部流体的速度,管的材料和外部流体的速度。在实验条件下,外部流体的速度对温度控制能力的影响最大,而用于管道的材料的影响最小。当水以7.1 mm / s的速度流经石英反应管且外部流体以44 mm / s的速度流经管外时,总传热系数约为3.9×10〜(2)W /(m〜(2)·K)。 s。我们还测试并确认,当将26 W的微波辐射到反应堆中时,用作内部流体的水的温度在309.3 K时可以控制在±1.5 K之内,而水的温度超过373 K且在不加热的情况下沸腾-使用常规的微波加热方法使转移介质在反应管外部流动。另外,我们使用开发的等温反应器研究了微波对铃木-宫浦偶合反应的影响,并确认反应器中的温度得到了很好的控制。通过微波加热获得的产率与通过油浴加热获得的产率几乎相同。

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