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The Formation of Sodium Stannate from Mineral Cassiterite by the Alkaline Decomposition Process with Sodium Carbonate (Na2CO3)

机译:用碱性分解法与碳酸钠(Na2CO3)的碱性分解过程从矿物烧结率的形成

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Extraction of cassiterite using alkaline decomposition of sodium carbonate (Na2CO3) has been studied. Cassiterite (SnO2) is a mineral ore that contains tin (Sn) about 57.82 wt% and impurities like quartz, ilmenite, monazite, rutile and zircon. The initial step for the process was to remove the impurities in cassiterite through washing and separation by a high magnetic separator (HTS). The aim of this research is to increase the added value of cassiterite from local area Indonesia that using alkaline decomposition to form sodium stannate (Na2SnO3). The result shows that cassiterite from Indonesia can form sodium stannate (Na2SnO3) which soluble with water in the leaching process. The longer the time for decomposition, the more phases of sodium stannate that will be formed. Optimum result reached when the decomposition process was done in 850 °C for 4 hours with a mole ratio Na2CO3 to cassiterite 3:2. High Score Plus (HSP) was used in this research to analyze the mass of sodium stannate (Na2SnO3). HSP analysis showed that mass of sodium stannate (Na2SnO3) is 70.3 wt%.
机译:研究了使用碱性分解碳酸钠(Na2CO3)的羧酸辛钛的提取。 Cassiterite(SnO2)是矿物质矿石,其含有约57.82wt%和杂质,如石英,Ilmenite,Monazite,金红石和锆石等杂质。该方法的初始步骤是通过洗涤和通过高磁性分离器(HTS)分离来除去Cassiterite中的杂质。本研究的目的是增加来自印度尼西亚局部地区的卡斯特钛的附加值,所述碱性分解形成碘酸钠(Na2SnO3)。结果表明,来自印度尼西亚的咔缕可以形成溶于浸出过程中的水的硅酸钠(Na2SnO 3)。分解的时间越长,将形成的钠锡酸盐的阶段越多。当分解过程在850℃下以摩尔比Na 2 CO 3进行4小时时,达到最佳结果,摩西菌素3:2。在该研究中使用高分加(HSP),分析钠静脉(Na2SnO3)的质量。 HSP分析表明,碘酸钠质量(Na2SnO3)为70.3重量%。

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