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Solid-Phase Transformation of Cs~+- and Sr~(2+)-Bearing Zeolite Sorbents Derived From Cenospheres to Mineral-Like Forms

机译:Cs〜+ - 和Sr〜(2 +) - 轴承沸腾吸附剂的固相转化,衍生自用于矿物形式的胶囊形式

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The paper describes the studies of the transformation of Cs~+- and Sr~(2+)-containing zeolite sorbents synthesized from fly ash cenospheres to crystalline mineral composition, suitable for the long-term disposal.Series of Cs~+- and Sr~(2+)-exchanged NaP1-containing sorbents were subjected to the thermochemical transformation in the temperature range 40-1100°C at atmospheric pressure in air and the progress of reaction was monitored by DSC and XRD analysis. It was shown that initial sodium zeolite undergoes two-step transformation at 736-785 °C and 892-982°C forming nepheline as the principle product, with the conversion temperatures being dependant on the heating rate.The thermal treatment of Cs~+-bearing zeolite sorbent led to formation of a complex multiphase system, the principal components of which were nepheline and pollucite. Increasing cesium content in the samples led to a monotonous shift of crystallization peak to the higher temperature range (1005-1006°C). A more complicated behavior was observed for Sr~(2+)-containing samples, for which the crystallization temperature tends to increase (compared with NaPl) at lower Sr contents, but it starts decreasing parallel to the Sr~(2+) content at Sr~(2+) loadings >10 mg/g. The principal crystalline phases in Sr-NaPl sample conversion were nepheline and Sr~(2+)-containing feldspar, the quantity of which increased parallel to the increase of strontium content in zeolite.Apparent activation energies of thermochemical transformations were calculated and possible approaches to reduce transformation temperature are discussed and experimentally illustrated.
机译:本文介绍了从粉煤灰吊膜合成的Cs〜+ - 和Sr〜(2 +)〜(2 +)〜(2 +)沸腾吸附剂转化的研究,以结晶矿物组合物,适用于长期处理。CS〜+ - 和SR的饲料〜(2 +) - 在空气中的大气压下,在40-1100℃的温度范围内进行含含NAP1的吸附剂,通过DSC和XRD分析监测反应的进展。结果表明,初始沸石在736-785℃和892-982°C成形为原理产品的两步转变,转换温度取决于加热速率。Cs〜+的热处理 - 轴承沸石吸附剂导致形成复杂的多相体系,其中主要成分是尼奈尔和散流度。将样品中的铯含量增加导致结晶峰的单调转移到较高温度范围(1005-1006℃)。对于含Sr〜(2 +)的样品,观察到更复杂的行为,其中结晶温度倾向于在较低的Sr含量下增加(与Napl)增加(与Napl)增加,但它开始与Sr〜(2+)含量平行下降Sr〜(2+)装载> 10 mg / g。 SR-NaPL样品转化中的主结晶相是尼触和Sr〜(2 +)的长石,其量与沸石中锶含量的增加平行增加。计算了热化学变换的活化能量和可能的方法讨论和实验说明了降低变换温度。

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