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Radionuclide uptake by colloidal and particulate humic acids obtained from 14 soils collected worldwide

机译:从全世界14个土壤中获得的胶体和颗粒腐殖酸对放射性核素的吸收

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摘要

Uptake of six particle-reactive and/or redox-sensitive radionuclides (210Pb, 234Th, 7Be, 59Fe, 237Np and 233Pa) by 14 humic acids (HAs) was investigated in artificial groundwater under mildly acidic conditions (pH~5.5). In HA-groundwater slurry, Pb, Be, Fe and Pa bound strongly to particulate HA (>0.45 µm), supporting their application as tracers of soil erosion. Th bound strongly to the colloidal HA (3 kDa-0.45 µm) and as such, would not be a good candidate as a tracer for monitoring soil erosion. HAs likely reduced the oxidized neptunyl form (Np(V)O4+) to Np(IV) based on its enhanced particle-reactivity and Np uptake by particulate HAs, partially retarding the movement of anthropogenic 237Np in field polluted environments. Particulate/colloidal carbonyl/O-aryl (likely through hydroquinone/quinone) functionalities in the HA correlated to Np and Pa uptake, but only particulate O-aryl functionalities was responsible for Fe uptake. The carboxylate- and carbonyl/O-aryl-containing organic functionalities in the HA correlated strongly with Th uptake. In contrast, no significant correlations between organic parameters and Pb or Be uptake implied their predominance of uniform surface adsorption onto particles. This study provides novel insight into the binding of six radionuclides with different organic functionalities of three size fractions, as well as its possible impact on their application in the soil-tracing research.
机译:吸收六种对颗粒具有反应性和/或氧化还原敏感性的放射性核素( 210 Pb, 234 Th, 7 Be, 59 Fe, 237 Np和 233 Pa)的影响。在HA地下水浆液中,Pb,Be,Fe和Pa与HA颗粒(>0.45μm)牢固结合,从而支持其作为土壤侵蚀的示踪剂。 Th与胶体HA(3 kDa-0.45 µm)牢固结合,因此,它不适合作为监测土壤侵蚀的示踪剂。 HAs可能由于其颗粒HAs增强的颗粒反应性和Np吸收而将其氧化的壬基形式(Np(V)O4 + )还原为Np(IV),部分阻碍了人为产生的运动237 Np在田间污染的环境中。 HA中的颗粒/胶体羰基/ O-芳基(可能通过对苯二酚/醌)官能团与Np和Pa的吸收有关,但只有颗粒状的O-芳基官能团才是Fe吸收的原因。 HA中含羧酸盐和羰基/ O-芳基的有机官能团与Th的吸收密切相关。相比之下,有机参数与Pb或Be吸收之间没有显着相关性,暗示了它们均匀地吸附在颗粒上的优势。这项研究为六个放射性核素与三个大小部分的不同有机功能的结合提供了新颖的见解,并对其在土壤示踪研究中的应用可能产生了影响。

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