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Chemical Reaction under Highly Precise Microwave Irradiation

机译:高精度微波辐射下的化学反应

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Chemists sometimes experience enhancements in the rates and selectivity of the products in chemical reactions conducted under microwave irradiation, but these enhancements are not always reproducible. This could be due to the unstable irradiation of chemical systems by microwaves. To achieve experimental reproducibility of chemical reactions under microwave irradiation, a solid-state microwave source with an ultra-precise voltage-controlled surface-acoustic-wave oscillator (VCSO), a high-power amplifier (HPA) module, and an elliptical applicator are developed. The HPA has an average power of up to 141 W and generates a 2.45 GHz sine signal. Although the output power is 100 W, the phase noise of the developed microwave source is still small, reaching as low as -80 dBc/Hz at a 1-kHz offset. This good phase noise characteristic originates from that of the VCSO. An elliptical applicator generates the TM_(110) mode and can concentrate the electric field of the microwaves at the focal point. The signal purity is very important for microwave irradiation to achieve high efficiency for heating and chemical processes. It is demonstrated boiling of water in a shorter time using the HPA with a VCSO and a 40% reduction in the water-boiling time compared with a magnetron under 150-W MW irradiation was observed because of the 2.45 GHz sine signal of the HPA with a VCSO. With these features, reproducible reactions can be conducted. Methanol decomposition as a solid-gas reaction with a Pd/C catalyst under microwave irradiation using this HPA and applicator is also shown. Before comparing with electrical furnace heating, the temperatures of the catalyst bed were thoroughly investigated by experiment and simulation, and there were no hot spots in the catalyst bed. The reaction rate under microwave irradiation was three times greater than under electric furnace heating.
机译:化学家有时会在微波辐射下进行的化学反应中,其产物的速率和选择性得到提高,但是这些提高并非总是可重复的。这可能是由于微波对化学系统的照射不稳定。为了实现在微波辐射下化学反应的实验可再现性,需要具有超精密压控表面声波振荡器(VCSO),高功率放大器(HPA)模块和椭圆形施加器的固态微波源发达。 HPA的平均功率高达141 W,并产生2.45 GHz正弦信号。尽管输出功率为100 W,但已开发的微波源的相位噪声仍然很小,在1 kHz偏移时可低至-80 dBc / Hz。这种良好的相位噪声特性源自VCSO。椭圆施加器产生TM_(110)模式,并且可以将微波的电场集中在焦点处。信号纯度对于微波辐射实现加热和化学过程的高效率非常重要。结果表明,使用VCSO的HPA可以在更短的时间内沸腾水,并且与磁控管相比,在150 W MW辐射下,沸腾时间缩短了40%,这是因为HPA的2.45 GHz正弦信号具有VCSO。具有这些特征,可以进行可再现的反应。还显示了使用该HPA和施加器在微波辐射下与Pd / C催化剂发生的固溶反应甲醇分解。在与电炉加热进行比较之前,通过实验和模拟对催化剂床的温度进行了彻底研究,并且在催化剂床中没有热点。微波辐射下的反应速率是电炉加热下的三倍。

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