首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Sorption kinetics and impact of temperature, ionic strength and colloid concentration on the adsorption of plutonium-239 by inorganic colloids
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Sorption kinetics and impact of temperature, ionic strength and colloid concentration on the adsorption of plutonium-239 by inorganic colloids

机译:吸附动力学以及温度,离子强度和胶体浓度对无机胶体对of239吸附的影响

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摘要

Plutonium (Pu) is one of the primary actinides of concern for long-term disposal and storage of nuclear waste. Strong sorption of Pu onto colloids of iron oxide, clay, and silica could result in colloid-facilitated transport of this actinide in groundwater systems. However, fundamental data on Pu sorption to colloids is sparse, resulting in large uncertainties in long-term predictions of colloid-facilitated Pu transport. This sparseness of data and the potential to significantly reduce uncertainties in predictive models served as a motivation for this study. The authors investigated the sorption and desorption behaviors of Pu-239(V) on three types of inorganic colloids (hematite, montmorillonite and silica), with adsorption being measured as a function of temperature, ionic strength and colloid concentration for each colloid. Natural ground water collected from Well-13 near Yucca Mountain, Nevada. and synthetic ground water (SYN.J-13) were used in the experiments. The results indicated that the adsorption of Pu-239(V) onto hematite colloids was faster and had a higher partition coefficient (K-p ml g(-1)) than onto montmorillonite or silica colloids in both J-13 and SYN.J-13 waters. Temperature did not significantly influence the adsorption of Pu-239(V) onto hematite and silica colloids, but the adsorption of Pu-239(V) onto montmorillonite colloids increased significantly with increasing temperature. While ionic strength did not significantly influence the adsorption of Pu-239(V) onto hematite colloids, an increase in ionic strength decreased the adsorption of Pu-239 onto montmorillonite and silica colloids. Adsorption of Pu-239(V) per unit mass of colloid was much higher at low colloid concentrations than at high colloid concentrations. Desorption of Pu-239 from Pu-239-loaded colloids was considerably slower than the adsorption process. [References: 26]
机译:is是核废料的长期处置和储存的主要act系元素之一。 Pu在氧化铁,粘土和二氧化硅的胶体上的强烈吸附可能导致该act系元素在地下水系统中的胶体促进运输。但是,有关Pu吸附到胶体上的基本数据很少,导致胶体促进Pu转运的长期预测存在很大的不确定性。数据的稀疏性和显着减少预测模型不确定性的潜力是本研究的动机。作者研究了Pu-239(V)在三种类型的无机胶体(赤铁矿,蒙脱土和二氧化硅)上的吸附和解吸行为,并根据温度,离子强度和每种胶体的浓度对吸附量进行了测量。从内华达州尤卡山附近的13井收集的天然地下水。实验中使用了合成地下水(SYN.J-13)。结果表明,在J-13和SYN.J-13中,Pu-239(V)在赤铁矿胶体上的吸附速度更快,分配系数(Kp ml g(-1))比蒙脱土或二氧化硅胶体更高。水域。温度并未显着影响Pu-239(V)在赤铁矿和二氧化硅胶体上的吸附,但是Pu-239(V)在蒙脱土胶体上的吸附随温度的升高而显着增加。虽然离子强度没有显着影响Pu-239(V)在赤铁矿胶体上的吸附,但是离子强度的增加降低了Pu-239在蒙脱石和二氧化硅胶体上的吸附。在低胶体浓度下,每单位质量胶体对Pu-239(V)的吸附要比在高胶体浓度下高得多。从负载Pu-239的胶体中解吸Pu-239比吸收过程要慢得多。 [参考:26]

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