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Prospective Symbiosis of Green Chemistry and Energetic Materials

机译:绿色化学和精力充沛材料的前瞻性共生

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摘要

A global increase in environmental pollution demands the development of new cleaner chemical processes. Among urgent improvements, the replacement of traditional hydrocarbon-derived toxic organic solvents with neoteric solvents less harmful for the environment is one of the most vital issues. As a result of the favorable combination of their unique properties, ionic liquids (ILs), dense gases, and supercritical fluids (SCFs) have gained considerable attention as suitable green chemistry media for the preparation and modification of important chemical compounds and materials. In particular, they have a significant potential in a specific and very important area of research associated with the manufacture and processing of high-energy materials (HEMs). These large-scale manufacturing processes, in which hazardous chemicals and extreme conditions are used, produce a huge amount of hard-to-dispose-of waste. Furthermore, they are risky to staff, and any improvements that would reduce the fire and explosion risks of the corresponding processes are highly desirable. In this Review, useful applications of almost nonflammable ILs, dense gases, and SCFs (first of all, CO2) for nitration and other reactions used for manufacturing HEMs are considered. Recent advances in the field of energetic (oxygen-balanced and hypergolic) ILs are summarized. Significant attention is paid to the SCF-based micronization techniques, which improve the energetic performance of HEMs through an efficient control of the morphology and particle size distribution of the HEM fine particles, and to useful applications of SCFs in HEM processing that makes them less hazardous.
机译:全球环境污染的增加需要开发新的清洁化学过程。在紧急改进中,替代传统的烃类毒性有机溶剂,具有对环境较小的近似有害的问题是最重要的问题之一。由于它们独特的性质,离子液体(ILS),致密气体和超临界流体(SCFS)的良好组合,因此适用于适当的绿色化学介质,用于制备和改性重要的化合物和材料。特别是,它们在与高能量材料(HEMS)的制造和加工相关的特定和非常重要的研究领域具有重要潜力。这些大型制造过程,其中使用危险化学品和极端条件,产生大量的难以处理的废物。此外,它们对工作人员有风险,并且有任何改进,可以减少相应流程的火灾和爆炸风险是非常理想的。在本次综述中,考虑了几乎不易燃的ILS,致密气体和SCFS(首先,首先,CO2)的有用应用,以及用于制造下摆的其他反应。总结了精力充沛(氧气 - 平衡和高胆管)ILS领域的最新进展。基于SCF的微粒化技术支付了重大关注,这通过有效控制下摆细颗粒的形态和粒度分布,提高了HEM的能量性能,以及SCFS在下摆加工中的用途,使它们减少危险。

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