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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >Prognosticating the humic complexation for redox sensitive actinides through analogy, using the charge neutralisation model
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Prognosticating the humic complexation for redox sensitive actinides through analogy, using the charge neutralisation model

机译:使用电荷中和模型通过类比预测氧化还原敏感act系元素的腐殖配合物

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The complexation of redox sensitive elements by humic acid (HA), described through the charge neutralisation model (CNM), has been reviewed in order to have a comprehensive scope. The data acquired in HUMICS program on thorium(IV), and data available in the literature, were reinterpreted according to the CNM, and adapted to uranium(IV), neptunium(IV) and plutonium(IV) through analogy in order to draw a boundary prediction. Otherwise, available data obtained in the framework of the CNM were used, or adapted if necessary, for other redox states when the analogy is justified, i.e. Am3+-Cm3+ for Pu3+, NPO2+ for PuO2+ and UO22+ for PuO2(2+).The obtained speciation diagrams indicate that, when (HA) = 100 mg/L, redox sensitive actinides should be reduced to their +IV state when E-h less than or equal to 650 mV/SHE for plutonium, E-h less than or equal to 100 mV/SHE for neptunium and E-h less than or equal to -20 mV/SHE for U. Plutonium could be present as mixtures of plutonium(III) and (IV) depending on the pH value in reducing ground waters -150 less than or equal to E-h (mV/SHE) less than or equal to 150. The known reduction of neptunium(V) to neptunium(IV) in Gorleben ground waters seems also well represented, so is the stability of uranium(VI) in humic solution when E-h greater than or equal to 100 mV/SHE. Conversely, the known association of plutonium(VI) in marine systems is not satisfactorily represented, so does is the uranium behaviour under reducing conditions. Experiments under well-controlled conditions are still needed to ascertain the plutonium and uranium comportment in the presence of humic acid.
机译:通过电荷中和模型(CNM)描述了腐殖酸(HA)对氧化还原敏感元素的络合作用,以具有全面的范围。根据CNM重新解释了HUMICS程序中有关((IV)的数据和文献中可用的数据,并通过类推将其改编为铀(IV),n(IV)和p(IV),以便得出边界预测。否则,在类推合理的情况下,使用CNM框架中获得的可用数据,或在必要时将其用于其他氧化还原状态,例如Pu3 +的Am3 + -Cm3 +,PuO2 +的NPO2 +和PuO2(2+)的UO22 +。形态图表明,当(HA)= 100 mg / L时,当E的Eh小于或等于650 mV / SHE,Eh小于或等于100 mV / SHE时,氧化还原敏感的act系元素应还原为+ IV状态对于n和Eh来说,U小于或等于-20 mV / SHE。P可以以reducing(III)和(IV)的混合物形式存在,具体取决于还原地下水中-150小于或等于Eh的pH值( mV / SHE)小于或等于150。在Gorleben地下水中((V)还原为n(IV)的已知还原似乎也很好地体现出来,当Eh大于或时,在腐殖溶液中铀(VI)的稳定性也是如此。等于100 mV / SHE。相反,不能令人满意地描述海洋系统中known的已知缔合,还原条件下的铀行为也不能令人满意。在腐殖酸的存在下,仍然需要在良好控制的条件下进行实验以确定the和铀的比重。

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