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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Modeling cesium retention onto Na-, K- and Ca-smectite: Effects of ionic strength, exchange and competing cations on the determination of selectivity coefficients
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Modeling cesium retention onto Na-, K- and Ca-smectite: Effects of ionic strength, exchange and competing cations on the determination of selectivity coefficients

机译:在钠,钾和钙蒙脱石上建立铯保留模型:离子强度,交换和竞争阳离子对选择性系数测定的影响

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摘要

Cesium (~(137)Cs) retention onto three homoionic smectites (Na-, K- and Ca-smectite), obtained from natural Spanish FEBEX bentonite, was studied. Special emphasis was given to the analysis of non-linear sorption behaviour and the dependence of selectivity on the ionic strength. A very large set of experimental sorption data was generated from sorption tests under a wide range of pHs (2-11), ionic strengths (10~(-3) to 10~0 M), and radionuclide concentrations (10~(-10) to 10~(-3) M). The aqueous phase, in contact with the clay, was analysed to quantify the effects of the presence of trace aqueous ions on Cs retention. For all the exchanged clays, Cs sorption was non-linear and a two-site exchange model approach was adopted to interpret and model sorption data. Highly selective sites for Cs sorption (Type 1 sites, T1), resembling those present in micaceous materials, with very low capacity but controlling uptake of Cs at low concentration, were observed. The logarithm value of selectivity coefficients determined for Cs~~+ in respect to Na~+, K~+ and Ca~(2+) in these sites is: LogCs NaK_(SEL)(T1) = 7:59±0:15; Log_K~(Cs) K_(SEL)(T1) = 5:15 ± 0:15 and Log_(Ca)~(Cs)K_(SEL)(T1) = 14:41 ± 0:17, respectively. The exchange sites at the surface of smectite sheets (planar sites), with a capacity approximately equivalent to the cation exchange capacity (CEC) of the clay, constitute the second type of sorption sites (Type 2 sites, T2). The logarithm of the selectivity coefficients determined for Cs~~+ with respect to Na~+, K~+ and Ca~(2+) is: Log_(Na)~(Cs)K_(SEL)(T2) = 1:68 ± 0:15;LogCsK K_(SEL)(T2) = 1:16 ± 0:15Log_(Ca)~(Cs)K_(SEL)(T2) = 3:02± 0.15, respectively. The analysis of the dependence of sorption values on the ionic strength clearly indicated that for a correct interpretation of data, competition effects of trace ions in solution must be always accounted for. Data obtained in this work and performed analyses are basic to explain the behaviour of raw FEBEX bentonite, and other smectite-based clay materials, under more complex experimental conditions.
机译:研究了从天然西班牙FEBEX膨润土获得的铯(〜(137)Cs)在三种均离子蒙脱石(Na-,K-和Ca-蒙脱石)上的保留。特别强调了非线性吸附行为的分析以及选择性对离子强度的依赖性。在宽范围的pH值(2-11),离子强度(10〜(-3)至10〜0 M)和放射性核素浓度(10〜(-10)的条件下进行的吸附测试产生了大量实验吸附数据)到10〜(-3)M)。分析与粘土接触的水相,以量化痕量水离子的存在对Cs保留的影响。对于所有交换的粘土,Cs吸附都是非线性的,并且采用两点交换模型方法来解释和模拟吸附数据。观察到了高选择性的Cs吸附位点(1型位点,T1),类似于云母质材料中存在的那些,具有非常低的容量,但在低浓度下控制Cs的吸收。在这些位置上针对Nas +,K〜+和Ca〜(2+)确定的Cs ~~ +的选择性系数的对数值为:LogCs NaK_(SEL)(T1)= 7:59±0:15 ; Log_K〜(Cs)K_(SEL)(T1)= 5:15±0:15和Log_(Ca)〜(Cs)K_(SEL)(T1)= 14:41±0:17。蒙脱石板表面的交换位点(平面位点)的容量大约等于粘土的阳离子交换容量(CEC),构成了第二种类型的吸附位点(2型位点,T2)。对于Cs ~~ +所确定的相对于Na〜+,K〜+和Ca〜(2+)的选择系数的对数为:Log_(Na)〜(Cs)K_(SEL)(T2)= 1:68 ±0:15; LogCsK K_(SEL)(T2)= 1:16±0:15Log_(Ca)〜(Cs)K_(SEL)(T2)= 3:02±0.15。吸附值对离子强度的依赖性分析清楚地表明,为了正确解释数据,必须始终考虑溶液中痕量离子的竞争效应。在这项工作中获得的数据和进行的分析,对于解释原始的FEBEX膨润土和其他蒙脱石基粘土材料在更复杂的实验条件下的行为至关重要。

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