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Combustion Characteristics of Ammonium Nitrate and Carbon Mixtures Based on a Thermal Decomposition Mechanism

机译:基于热分解机理的硝酸铵和碳混合物的燃烧特性

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摘要

In order to obtain a better understanding of the combustion characteristics of ammonium nitrate (AN) and carbon (C) mixtures (AN/C), burning tests and differential scanning calorimetry (DSC) were performed. AN mixed with carbon that is oxidized by nitric acid (HNO3), such as activated carbon (AC), burned at 1 MPa. However, AN mixed with carbon that is not oxidized by HNO3, such as graphite, did not burn under 7 MPa. Compositions with more than stoichiometric amounts of activated carbon had higher burning rates. Heat characteristic examinations found a similar trend. The burning rate of AN/AC mixed with CuO as a combustion catalyst deteriorated faster than an additive-free one. From the DSC result, AN/AC/CuO had a higher onset temperature and a lower heat of reaction than AN/ AC. These results suggested that, in the combustion wave of AN/C, a thermal decomposition zone is formed on the burning surface, and combustion performance was affected by the thermal decomposition of AN/C.
机译:为了更好地了解硝酸铵(AN)和碳(C)混合物(AN / C)的燃烧特性,进行了燃烧测试和差示扫描量热法(DSC)。与硝酸(HNO3)氧化的碳(例如活性炭(AC))混合的AN,在1 MPa下燃烧。但是,与未被HNO3氧化的碳(例如石墨)混合的AN在7 MPa下不会燃烧。活性炭含量超过化学计量的组合物具有更高的燃烧速率。热特性检查发现了类似的趋势。混合有作为燃烧催化剂的CuO的AN / AC的燃烧速度比不含添加剂的燃烧速度更快。从DSC结果来看,AN / AC / CuO比AN / AC具有更高的起始温度和更低的反应热。这些结果表明,在AN / C的燃烧波中,在燃烧表面上形成热分解区,并且燃烧性能受到AN / C的热分解的影响。

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