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首页> 外文期刊>International Journal of Minerals,Metallurgy and Materials >Synthesis of kalsilite from microcline powder by an alkali-hydrothermal process
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Synthesis of kalsilite from microcline powder by an alkali-hydrothermal process

机译:碱水热法从微晶粉中合成钾铝石

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The properties of aluminosilicate kalsilite have attracted the interest of researchers in chemical synthesis, ceramic industry, biofu-els, etc. In this study, kalsilite was hydrothermally synthesized from microcline powder in a KOH solution. The microcline powder, rich in potassium, aluminum, and silicon, was collected from Mountain Changling in Northwestern China. The effects of temperature, time, and KOH concentration on the decomposition of microcline were investigated. The kalsilite and intermediate products were characterized by means of wet chemistry analysis, X-ray Diffraction (XRD), infrared spectrometry (IR), ~(29)Si magic angle spinning nuclear magnetic resonance (~(29)Si MAS NMR), ~(27)Al MAS NMR, and scanning electron microscope (SEM). With increasing temperature, the microcline powder transforms into a metastable KAlSiO_4 polymorph before transforming further into pure kalsilite. A mixture of both kalsilite and metastable KAlSiO_4 polymorph is obtained when the hydrothermal reaction is carried out within 2 h; but after 2 h, kalsilite is the predominant product. The concentration of KOH, which needs to be larger than 4.3 M, is an important parameter influencing the synthesis of kalsilite.
机译:铝硅酸盐钙铝石的性质引起了化学合成,陶瓷工业,生物燃料等领域的研究人员的兴趣。在这项研究中,钙铝石是由微碱粉末在KOH溶液中水热合成的。富含钾,铝和硅的微线粉末是从中国西北部的长岭山采集的。研究了温度,时间和KOH浓度对微系分解的影响。通过湿化学分析,X射线衍射(XRD),红外光谱(IR),〜(29)Si魔角旋转核磁共振(〜(29)Si MAS NMR),〜 (27)Al MAS NMR和扫描电子显微镜(SEM)。随着温度的升高,微线粉末先转变为亚稳态的KAlSiO_4多晶型物,然后再转变为纯硅藻土。当水热反应在2 h内进行时,得到了方沸石和亚稳KAlSiO_4多晶型物的混合物。但2小时后,钾盐岩是主要产品。 KOH的浓度必须大于4.3 M,这是影响钾盐合成的一个重要参数。

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