Thermal Stability of Ammonium Nitrate in Two-Component Mixtures with Powdered and Fine-Grained Materials

K. Dysz
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Abstract

Abstract. Ammonium nitrate(V) (AN, NH4NO3) is widely and widely used in the chemical industry, in agriculture as a fertilizer, explosive for military and civil purposes (e.g. in mining) or as a solid propellant [1, 2]. Storage of ammonium nitrate poses many problems, as it may be hazardous. This was proven, for example, by the explosion in 2020 in Beirut. Ammonium nitrate was stored in a warehouse at the port among other wares and an unfortunate turn of events caused a huge explosion. The explosion contributed to the formation of a 140-meter crater and an earthquake with a magnitude of 3.3 on the Richter scale. This explosion was classified as the third most destructive urban explosion of all time, after the atomic bombs in Hiroshima and Nagasaki at the end of World War II [3, 4], as the mixtures of oils (fuel or gas) and a concentrated form of nitrogen fertilizer  ammonium nitrate form explosives [5]. The dangerous properties of AN have been extensively studied. It is known that pure AN is stable at room temperature but may explode when mixed with impurities in a confined space or under fire-hazard conditions [1]. The research aimed to analyze the changes occurring in two-component mixtures with ammonium nitrate and powdered or fine-grained materials and to assess the effect of such an admixture on the fertilizer. Thermal analysis was used to carry out the TG-DSC tests.
硝酸铵在粉末和细粒材料双组分混合物中的热稳定性
摘要硝酸铵(V) (AN, NH4NO3)在化学工业、农业中作为肥料、军用和民用炸药(如采矿)或作为固体推进剂被广泛使用[1,2]。硝酸铵的储存有很多问题,因为它可能很危险。例如,2020年在贝鲁特发生的爆炸就证明了这一点。硝酸铵和其他货物一起存放在港口的一个仓库里,不幸的事件导致了一场巨大的爆炸。这次爆炸形成了一个140米高的火山口,并引发了里氏3.3级地震。这次爆炸被列为有史以来第三次最具破坏性的城市爆炸,仅次于二战结束时广岛和长崎的原子弹[3,4],因为油(燃料或气体)和浓缩形式的氮肥(硝酸铵)的混合物形成炸药[5]。AN的危险性质已被广泛研究。众所周知,纯AN在室温下是稳定的,但在密闭空间或火灾危险条件下与杂质混合时可能发生爆炸[1]。本研究旨在分析硝酸铵和粉状或细粒材料的双组分混合物中发生的变化,并评估这种混合物对肥料的影响。热分析用于TG-DSC测试。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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