Effect of mineralizer and synthesis duration on sorption properties of sitinakite and ivanyukite

I Perovskiy, T. Panikorovskii, D Shushkov
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Abstract

Titanosilicates with the structure of sitinakite and ivanyukite were synthesized with the use of enrichment wastes of quartz-leucoxene concentrate (Yarega deposit, Komi Republic) by autoclave method. It was found that using a mixture of mineralizer KOH and NaOH at a concentration of 0.15 and 1 mol/l, K-Na sitinakite was formed. Increasing the concentration of KOH to 0.45 mol/L and decreasing NaOH to 0.7 mol/L led to crystallization of ivanyukite. The obtained titanosilicates are characterized by high sorption activity towards Sr2+ and Cs+ cations. Sorption capacity of K-Na sitinakite and ivanyukite for Sr2+ was 95–110 and 102–114 mg/g, respectively. The Cs+ sorption capacity for K-Na sitinakite is 240 mg/g, the sorption capacity for ivanyukite is much higher — 370–380 mg/g. It was shown that the differences in the sorption capacity of K-Na sitinakite and ivanyukite are caused by the features of the crystal structure.
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矿化剂和合成时间对锡矿石和伊万琉石吸附特性的影响
利用石英-白桉烯精矿(科米共和国亚雷加矿床)的富集废料,通过高压釜法合成了具有西替纳克石和伊万乌克石结构的钛硅酸盐。研究发现,使用浓度分别为 0.15 和 1 摩尔/升的矿化剂 KOH 和 NaOH 的混合物,可形成 K-Na 西替纳克石。将 KOH 的浓度提高到 0.45 摩尔/升,将 NaOH 的浓度降低到 0.7 摩尔/升,可使钛铁矿结晶。所获得的钛硅酸盐对 Sr2+ 和 Cs+ 阳离子具有高吸附活性。K-Na 西提那石和 ivanyukite 对 Sr2+ 的吸附容量分别为 95-110 毫克/克和 102-114 毫克/克。K-Na 锡铁矿石对 Cs+ 的吸附容量为 240 毫克/克,而 ivanyukite 的吸附容量要高得多--370-380 毫克/克。研究表明,K-Na 西钛纳石和 ivanyukite 的吸附能力差异是由晶体结构的特征造成的。
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