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Thermal hazard assessment of AN and AN-based explosives

机译:AN和AN基炸药的热危害评估

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摘要

Ammonium nitrate (AN) is an essential ingredient in most fertilizers. It is also widely used in the commercial explosives industry. In this latter application, it is mostly mixed with fuel oil to form the most popular commercial explosive: ANFO. In both the fertilizer and the explosive industry, aqueous AN solutions (ANS) of various concentrations are processed. These solutions also form the basis of ammonium nitrate emulsion explosives (also called ammonium nitrate emulsions or ANE), which are produced either in bulk or in packaged form. For all these AN-based products, quantities of the order of 20,000 kg are being manufactured, transported, stored, and processed at elevated temperatures and/or elevated pressures. Correspondingly, major accidents involving overheating of large quantities of these products have happened in several of these operations. In comparison, convenient laboratory quantities to investigate thermal decomposition properties are generally less than 1 kg. As a result, in order to provide information applicable to real-life situations, any laboratory study must use techniques that minimize heat losses from the samples to their environment. In the present study, two laboratory-scale calorimeters providing an adiabatic environment were used: an accelerating rate calorimeter (ARC) and an adiabatic Dewar calorimeter (ADC). Experiments were performed on pure AN, ANFO, various ANS systems, and typical bulk and packaged ANE systems. The effects of sample mass, atmosphere, and formulation on the resulting onset temperatures were studied. A comparison of the results from the two techniques is provided and a proposed method to extrapolate these results to large-scale inventories is examined.
机译:硝酸铵(AN)是大多数肥料中必不可少的成分。它还广泛用于商业炸药行业。在后一种应用中,它主要与燃料油混合以形成最受欢迎的商业炸药:ANFO。在化肥和炸药工业中,都处理各种浓度的AN水溶液(ANS)。这些解决方案还构成了硝酸铵乳化炸药(也称为硝酸铵乳化剂或ANE)的基础,这些炸药可以散装或包装形式生产。对于所有这些基于AN的产品,在升高的温度和/或升高的压力下都将制造,运输,存储和处理大约20,000千克的数量。相应地,在其中一些操作中发生了涉及大量这些产品过热的重大事故。相比之下,用于研究热分解特性的方便实验室数量通常小于1 kg。因此,为了提供适用于现实生活情况的信息,任何实验室研究都必须使用使样品从样品到其环境的热损失最小化的技术。在本研究中,使用了两个提供绝热环境的实验室量热仪:加速量热仪(ARC)和绝热杜瓦量热仪(ADC)。在纯AN,ANFO,各种ANS系统以及典型的散装和包装ANE系统上进行了实验。研究了样品质量,气氛和配方对所得起始温度的影响。提供了两种技术结果的比较,并研究了将这些结果外推到大型库存的建议方法。

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