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Infrared imaging of temperature profiles in microreactors for fast and exothermic reactions

机译:微型反应器中温度曲线的红外成像,用于快速和放热反应

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摘要

Though microreactors provide high heat transfer rates, temperature profiles are formed in case of fast and highly exothermic reactions. A method based on non-intrusive infrared thermometry has been developed to track these profiles quantitatively with a resolution of 250 data points/cm~2 and a precision of 1 °C. By placing the microreactor at a pressure of 10~(-2) mbar, convective heat losses are efficiently suppressed which assures well defined boundaries and reproducible results. The temperature profiles of the fast and exothermic hydrolysis of tetraethoxysilane were measured inside a microcapillary at different flow rates via infrared transparent window. In the reactor provided with a cooling system, the heat transfer coefficient was determined by thermal imaging for different operating conditions. The data obtained are in good agreement with the values reported in literature.
机译:尽管微反应器提供高传热速率,但在快速且高度放热的反应情况下会形成温度分布。已经开发了一种基于非侵入式红外测温的方法,以250个数据点/ cm〜2的分辨率和1°C的精度定量跟踪这些轮廓。通过将微反应器置于10〜(-2)mbar的压力下,可有效抑制对流热损失,从而确保界限分明且可重复的结果。通过红外透明窗口,以不同的流速测量了微毛细管内部四乙氧基硅烷快速水解和放热水解的温度曲线。在具有冷却系统的反应器中,通过热成像针对不同的操作条件确定传热系数。获得的数据与文献报道的值非常一致。

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