Hydrothermal synthesis and sorption performance to Cs(I) and Sr(II) of zirconia-analcime composites derived from coal fly ash cenospheres

Q4 Materials Science
T. Vereshchagina, E. Kutikhina, O. Buyko, A. Anshits
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引用次数: 0

Abstract

The paper is concerned with (i) the hydrothermal synthesis of hydrous zirconium dioxide (HZD) bearing analcime (HZD-ANA, zirconia-analcime) and (ii) its sorption properties with respect to Cs+ and Sr2+. The HZD-ANA particles were synthesized from coal fly ash cenospheres composed of aluminosilicate glass with (SiO2/Al2O3)wt.=3.1 and characterized by PXRD, SEM-EDS, STA, and low-temperature N2 adsorption. The non-radioactive simulant solutions of different acidity (pH=2–10) and Cs+/Sr2+ content (0.5–50.0 mg/L) were used in the work. The effect of synthesis conditions on the HZD-ANA particle size, zirconia content and localization as well as the sorption behavior with respect to Cs+ and Sr2+ (capacity, KD) were clarified. It was found that the small-sized HZD-ANA composites surpasses the Zr free analcime and large-sized HZD-ANA material in the Cs+ and Sr2+ sorption parameters (KD ~104–106 mL/g). The conditions to synthesize the zirconia-analcime composite of the highly enhanced sorption ability with respect to Sr2+ (KD ~106 mL/g) were determined. The high-temperature solid-phase re-crystallization of Cs+/Sr2+-exchanged HZD-ANA composites was shown to occur at 1000 °C resulting in a polyphase system based on nepheline, tetragonal ZrO2, and glass phase.
煤粉煤灰微球氧化锆-铝胺复合材料的水热合成及其对Cs(I)和Sr(II)的吸附性能
本文研究了(i)含水二氧化锆(HZD)方沸石(HZD-ANA,氧化锆方沸石)的水热合成及其对Cs+和Sr2+的吸附性能。以(SiO2/Al2O3)质量分数为铝硅酸盐玻璃的粉煤灰为原料合成了HZD-ANA颗粒=3.1,并通过PXRD、SEM-EDS、STA和低温N2吸附进行表征。工作中使用了不同酸度(pH=2–10)和Cs+/Sr2+含量(0.5–50.0 mg/L)的非放射性模拟溶液。阐明了合成条件对HZD-ANA颗粒尺寸、氧化锆含量和定位的影响,以及对Cs+和Sr2+(容量,KD)的吸附行为。研究发现,小尺寸HZD-ANA复合材料在Cs+和Sr2+吸附参数(KD~104–106 mL/g)方面优于无锆方沸石和大尺寸HZD-ANA材料。确定了合成对Sr2+(KD~106mL/g)具有高吸附能力的氧化锆-方沸石复合材料的条件。Cs+/Sr2+交换的HZD-ANA复合材料在1000°C下发生高温固相再结晶,形成了基于霞石、四方ZrO2和玻璃相的多相体系。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chimica Techno Acta
Chimica Techno Acta Chemical Engineering-Chemical Engineering (all)
CiteScore
1.00
自引率
0.00%
发文量
67
审稿时长
4 weeks
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