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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Influence of humic acid on plutonium sorption to gibbsite: Determination of Pu-humic acid complexation constants and ternary sorption studies
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Influence of humic acid on plutonium sorption to gibbsite: Determination of Pu-humic acid complexation constants and ternary sorption studies

机译:腐殖酸对p吸附到三水铝石的影响:腐植酸络合常数的测定和三元吸附研究

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In this work stability constants describing Pu(IV), Th(IV), and Np(V) binding to Leonardite humic acid (HA) were determined using a discrete pK_a model. A hybrid ultra-filtration/equilibrium dialysis, ligand exchange technique was used to generate the partitioning data. Ethylenediaminetetraacetic acid (EDTA) was used as a reference ligand to allow the aqueous chemistry of the Pu(IV)-HA system to be examined over a range of pH values, while minimizing the possibility of precipitation of Pu(IV). The conditional stability constant for Pu(IV) complexation with HA determined as part of this work is log β_(112) = 6.76 ± 0.14 based on the equation: Pu~(4+) + HL3 + 2H_2O?Pu(OH)_2L3~+ + 3H~+ where HA is represented by HL3 (a binding site on the HA with a pK_a value of 7). This value is three orders of magnitude higher than the Th(IV)-HA constant and between six and eight orders of magnitude higher than the Np(V)-HA complex. The magnitude of the stability constants and the general trend of increasing complexation strength with increasing pH is consistent with previous observations. The Pu(IV)-HA stability constants were used to model sorption of Pu(IV) to gibbsite in the presence of HA. Assuming only aqueous Pu-HA complexes and AlOH-Pu surface complexes, the model was unable to predict the observed data which exhibited greater sorption at pH 4 relative to pH 6; a phenomenon which does not occur in the absence of HA. Therefore, this study demonstrates that ternary Pu-HA-gibbsite complexes may form under low pH conditions and exhibit greater sorption than that observed in the absence of HA. Although the presence of HA may increase the solubility/aqueous concentrations of Pu in the absence of a solid phase, formation of ternary complexes may indeed retard the subsurface migration of Pu. The corollary to this finding is that increased mobility may occur if the ternary surface complex forms on a mobile colloid rather than part of the subsurface matrix.
机译:在这项工作中,使用离散的pK_a模型确定了描述与Leonardite腐殖酸(HA)结合的Pu(IV),Th(IV)和Np(V)的稳定性常数。混合超滤/平衡渗析,配体交换技术用于生成分配数据。乙二胺四乙酸(EDTA)被用作参考配体,以允许在一定pH值范围内检查Pu(IV)-HA系统的水性化学,同时将Pu(IV)沉淀的可能性降至最低。根据以下公式确定,Pu(IV)与HA络合的条件稳定性常数为logβ_(112)= 6.76±0.14,基于以下公式:Pu〜(4+)+ HL3 + 2H_2O?Pu(OH)_2L3〜 + + 3H〜+其中HA由HL3表示(HA上的结合位点,pK_a值为7)。该值比Th(IV)-HA常数高三个数量级,比Np(V)-HA络合物高六个到八个数量级。稳定常数的大小以及随着pH值增加而增加络合强度的总体趋势与先前的观察结果一致。 Pu(IV)-HA稳定常数用于模拟在HA存在下Pu(IV)对三水铝石的吸附。假设仅水性Pu-HA配合物和AlOH-Pu表面配合物,该模型无法预测观察到的数据,这些数据在pH 4时相对于pH 6表现出更大的吸附性。在没有HA的情况下不会发生的现象。因此,这项研究表明,三元的Pu-HA-三水铝石复合物可能在低pH条件下形成,并且比在没有HA的情况下表现出更大的吸附性。尽管在不存在固相的情况下,HA的存在可能会增加Pu的溶解度/水溶液浓度,但三元配合物的形成实际上可能会阻碍Pu的地下迁移。这一发现的推论是,如果三元表面复合物形成在可移动的胶体而不是部分地下基质上,则可能会增加迁移率。

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