JOURNAL OF CHEMICAL ENGINEERING OF JAPAN
Online ISSN : 1881-1299
Print ISSN : 0021-9592
Materials Engineering and Interfacial Phenomena
Study on Preparation and Growth Mechanism of MgSO4·5Mg(OH)2·3H2O Whiskers in NH4+–NH3 Buffer System
Tianbo Fan Dongxue HanXiaohui JiaSi ChenYu JiangTingting HuLi LiHongfan GuoYunyi Liu
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2020 Volume 53 Issue 10 Pages 646-652

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Abstract

Magnesium hydroxide Sulfate hydrate (MHSH) whiskers are synthetic inorganic functional materials with certain aspect ratio. The formula is xMgSO4·yMg(OH)2·zH2O. In the NH4+–NH3 buffer system, MgSO4·5Mg(OH)2·3H2O with a length of 10–30 µm, a diameter of 0.05–0.3 µm and an aspect ratio of 30–150 are prepared by one step at atmospheric pressure for a short time. The products are characterized by XRD, SEM, TG, TEM, etc. The influence factors such as reaction concentration, reaction temperature, reaction time and aging time are studied by combining the characterization results. First-principles analysis of the growth mechanism of MHSH whiskers show that growth habits accord with the dislocation spiral growth mechanism. The buffer system stabilizes the acidity and basicity of the solution, reduces the non-ideality of the solution, and enables the crystals to grow directionally under non-forced conditions, which provides an important reference for further industrial application and low-energy consumption production of MHSH whiskers.

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© 2020 The Society of Chemical Engineers, Japan
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