氯化镁溶液定向水解过程中氢氧化镁析出的特征

M. Sychov
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摘要

镁化合物是自然界中常见的固体岩石和水中的溶液。本文分析了各种原料镁化合物的各种工艺和利用方法、科技成果、镁的生产和技术现状。镁及其氧化物和氢氧化物对于镁化合物的工业用途是最重要的,镁化合物用于生产钢铁、耐热陶瓷和结构、生产橡胶制品、具有特殊防火性能的塑料,以及化学、制药工业、医药、光学、荧光粉、单晶的生产,镁化合物对新工业至关重要。导致了新研究和新技术的出现。在氯化镁原料的净化技术和技术解决方案中,重要的是利用氢氧化镁作为有效吸附剂的可能性和开发分离大浓度沉积物的条件。研究了氯化镁的碱法水解过程及其在不同浓度下氢氧化物沉淀的形成。研究了该过程的动力学以及从镁盐纯化溶液中分离这种吸附剂的特点。结果表明,利用氢氧化镁均相沉淀的原理,与已知的方法相比,是一种相当有效和简单的解决方案。确定了获得高过滤系数氢氧化镁沉淀的条件和数学规律,从而可以对氢氧化镁沉淀的性质进行编程,优化生产高纯氯化镁溶液、氢氧化镁溶液和由氢氧化镁生成的氧化物。研究结果可用于医药、新药生产、标准样品、基质捕集剂、吸附剂和科研计量支持标准。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
FEATURES OF MAGNESIUM HYDROXIDE PRECIPITATION DURING DIRECTIONAL HYDROLYSIS IN SOLUTIONS OF MAGNESIUM CHLORIDE
Magnesium compounds are common in nature as solid rocks and solutions in waters. The article has been analyzed variety of technologies and methods of use of various kinds of raw magnesium compounds, scientific and technological achievements, the state of magnesium production and tech-nology. Magnesium and its oxide and hydroxide are the most important for industrial use of magnesi-um compounds used in the production of steel, heat-resistant ceramics and structures, in the produc-tion of rubber products, plastics with special fire-resistant properties, as well as in the chemical, pharmaceutical industries, in medicine, in the production of optics, phosphors, single crystals, heed for magnesium compounds, important for new industries, caused the emergence of new studies and technologies. Important in the purification technologies of raw materials and technical solutions of magnesium chloride is the possibility of using magnesium hydroxide as effective sorbent and develop-ing conditions for separating the sediment in a wide range of concentrations. The processes of alka-line hydrolysis of magnesium chloride and the formation of the precipitate of its hydroxide in a wide range of concentrations were studied. The kinetics of the process and the features of separating such a sorbent from the purified solution of magnesium salt are studied. It is shown that the use of the princi-ple of homogeneous precipitation of magnesium hydroxide, performed in the proposed technology, is a fairly efficient and simple solution compared to those known. The conditions and mathematical regu-larities for obtaining the precipitate of magnesium hydroxide with a high filtration coefficient have been determined, which makes it possible to program the properties of the precipitate of magnesium hydroxide, to optimize the production of high-purity solutions of magnesium chloride, its hydroxide and oxide from it. The results of studies may use in medicine, in the production of new pharmaceuti-cals, standard samples, matrix collectors-sorbents and standards for metrological support in re-search.
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