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Synthesis and Chemical Stability Studies of Sodium Ferrate(VI) Solution

机译:钠盐钠(VI)溶液的合成与化学稳定性研究

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Sodium ferrate solution was prepared by the wet oxidation process using liquid FeCl3 with NaOCl in a strong alkaline solution. The reference and the product were characterized using UV-visible, XRD and FTIR. The maximum concentration of Na2FeO4(VI) solution was 12.4 g/L (as FeO4~(2-)). Its stability was studied by recording the absorbances of several ferrate solutions at 505 run on daily basis for a period of one month. The average rates atpH 12 were 3.19 x 10~(-11) M s~(-11) forK2Fe04and 1.09 x 10~(-11) Ms~(-11) for Na2FeO4. These average rates of degradation indicate that ferrate can last longer without conserving the ferrate solutions using different buffer solutions or phosphates. The peaks obtained around 700, 769 and 879 cm'1 using FTIR confirmed the presence of Fe-O bond in the crystals, which is Na2Fe04 (VI). XRD patterns showed an isomorphism between the diffractograms of Na2FeO4 and K2FeO4.
机译:使用液体FECL3在强碱溶液中使用液体FECL3制备钠氧化方法。 参考和产品的特征在于使用UV可见,XRD和FTIR。 Na 2 FeO 4(VI)溶液的最大浓度为12.4g / L(作为FeO4〜(2-))。 通过在每日505次运行时通过记录几个月的稳定性的稳定性来研究其一个月。 平均速率12均为3.19×10〜(-11)m s〜(-11)叉2fe04和1.09×10〜(-11)ms〜(-11)对于Na2FeO4。 这些平均劣化率表明,使用不同的缓冲溶液或磷酸盐可以持续不保守铁丙乳溶液的延长率。 使用FTIR约700,769和879cm'1获得的峰证实了晶体中的Fe-O键存在,即Na 2 FeO 4(VI)。 XRD图案显示了Na2FeO4和K2FeO4的衍射图之间的同构。

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