Modeling of Synthesis of Aluminum Hydride via Binary Hydrides of Alkaline Earth Metals

U. Mirsaidov, M.Yu. Akramov, I. U. Mirsaidov, O. Azizov
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Abstract

In this article given the mathematical modeling of energy-intensive substances obtaining, which allows expanding the resource base, providing the possibility of using various binary hydrides in the process of aluminum hydride - AlH 3 synthesis. Due to the absence of soluble hydride forms of binary hydrides of alkaline-earth (MH 2 ) metals, it is necessary to carry out at least 4-6 steps of the process for the production of aluminum hydride. Polynomials for the programmed synthesis of AlH 3 with autoinitiation have been developed. A programmed synthesis of aluminum hydride with autoinitiation was developed and implemented, which allows expanding the raw material base enabling the synthesis of other metal hydrides.
碱土金属二元氢化物合成氢化铝的模拟
本文给出了能量密集型物质获取的数学模型,扩大了资源库,为在氢化铝- alh3合成过程中使用多种二元氢化物提供了可能。由于碱土(MH 2)金属的二元氢化物缺乏可溶的氢化物形式,因此生产氢化铝至少需要进行4-6个步骤。建立了自引发程序合成alh3的多项式。开发并实现了一种自动引发氢化铝的程序合成方法,该方法可以扩大原料基础,从而可以合成其他金属氢化物。
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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