Oommen C, Jain SR
Department of Aerospace Engineering, Indian Institute of Science, Sir C.V. Raman Avenue, Bangalore 560 012, India.
J Hazard Mater. 1999 Jun 30;67(3):253-81. doi: 10.1016/s0304-3894(99)00039-4.
Ammonium nitrate (AN) is extensively used in the area of fertilizers and explosives. It is present as the major component in most industrial explosives. Its use as an oxidizer in the area of propellants, however, is not as extensive as in explosive compositions or gas generators. With the growing demand for environmental friendly chlorine free propellants, many attempts have been made of late to investigate oxidizers producing innocuous combustion products. AN, unlike the widely used ammonium perchlorate, produces completely ecofriendly smokeless products. Besides, it is one of the cheapest and easily available compounds. However, its use in large rocket motors is restricted due to some of its adverse characteristics like hygroscopicity, near room temperature phase transformation involving a volume change, and low burning rate (BR) and energetics. The review is an attempt to consolidate the information available on the various issues pertaining to its use as a solid propellant oxidizer. Detailed discussions on the aspects relating to phase modifications, decomposition chemistry, and BR and energetics of AN-based propellants, are presented. To make the review more comprehensive brief descriptions of the history, manufacture, safety, physical and chemical properties and various other applications of the salt are also included. Copyright 1999 Elsevier Science B.V.
硝酸铵(AN)广泛应用于肥料和炸药领域。它是大多数工业炸药的主要成分。然而,它在推进剂领域作为氧化剂的应用不如在炸药组合物或气体发生器中广泛。随着对环境友好型无氯推进剂需求的不断增长,近来人们进行了许多尝试来研究能产生无害燃烧产物的氧化剂。与广泛使用的高氯酸铵不同,硝酸铵能产生完全环保的无烟产物。此外,它是最便宜且最容易获得的化合物之一。然而,由于其一些不利特性,如吸湿性、接近室温时涉及体积变化的相变、低燃烧速率(BR)和能量学特性,它在大型火箭发动机中的应用受到限制。这篇综述旨在整合关于其作为固体推进剂氧化剂使用的各种相关问题的现有信息。文中对基于硝酸铵的推进剂的相改性、分解化学以及燃烧速率和能量学等方面进行了详细讨论。为使综述更全面,还包括了该盐的历史、制造、安全性、物理和化学性质以及其他各种应用的简要描述。版权所有1999爱思唯尔科学出版社B.V.