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Comparative study on reaction characteristics of micron-sized aluminum and nano-sized aluminum in O_2 and CO_2 environment

机译:O_2和CO_2环境中微米级铝和纳米级铝反应特性的比较研究

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To understand the difference in reaction behavior of micronano Al powder in O_2 and CO_2 environment at 25-1500 °C, thermal analysis experiment for 50 nm and 1.5 μm Al powder was performed in this study. The experimental results show that the reaction of 50 nm and 1.5 μm Al powders with O_2 mainly occurs at 530 - 575 °C and 775 - 1500 °C, respectively. In CO_2 environment, the reaction of 50 nm and 1.5 pm Al powders with CO_2 mainly occurs at 445 - 955 °C and 590 - 1130 °C, respectively. For reaction products, most of the reaction products condensed together and form agglomerated Al_2O_3 in O_2 environment. However, in CO_2 environment, because the oxidation reaction rate and reaction heat between Al and CO_2 are lower than that between Al and O_2, the particles of the reaction product are still relatively independent. The experimental results clearly show the reaction characteristics of micronano Al powder in O_2 and CO_2 environment at 25- 1500 °C, which is of great significance for the study of ignition and combustion mechanism of Al powder.
机译:为了了解微米/纳米Al粉在O_2和CO_2环境中在25-1500°C下反应行为的差异,本研究针对50 nm和1.5μmAl粉进行了热分析实验。实验结果表明,50 nm和1.5μm的Al粉与O_2的反应主要发生在530-575°C和775-1500°C处。在CO_2环境中,50 nm和1.5 pm Al粉末与CO_2的反应分别主要在445-955°C和590-1130°C下发生。对于反应产物,大多数反应产物在O_2环境中凝结在一起并形成团聚的Al_2O_3。然而,在CO_2环境中,由于Al和CO_2之间的氧化反应速率和反应热低于Al和O_2之间的氧化反应速率和反应热,因此反应产物的颗粒仍然相对独立。实验结果清楚地表明了微米/纳米Al粉在O_2和CO_2环境中在25〜1500℃下的反应特性,对研究Al粉的点火和燃烧机理具有重要意义。

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