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首页> 外文期刊>Estuaries and coasts >Role of Suspended Particulate Matter in Regulating the Behavior of Dissolved Uranium in the Yellow River Estuary
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Role of Suspended Particulate Matter in Regulating the Behavior of Dissolved Uranium in the Yellow River Estuary

机译:悬浮颗粒物质在黄河河口溶解铀的行为中的作用

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In order to examine the mixing behavior of dissolved uranium (U) in estuaries under different suspended particulate matter (SPM) regimes, three laboratory-based experiments were conducted by mixing seawater with river water containing different concentrations of SPM. Comparing this study with other field and laboratory-based experiments, dissolved U behaved differently depending upon the concentration of SPM. When SPM concentrations are 0.8 g/L in the Yellow River, desorption/dissolution of U from SPM becomes predominant and dissolved U is enriched relative to the theoretical mixing line. However, when SPM concentrations are 0.8 g/L, dissolved U behaves conservatively with some extent of removal during estuarine mixing. U-234/U-238 activity ratios were somewhat constant showing no measurable isotopic fractionation during physical mixing and U sorption/desorption to/from particles. Addition of dissolved U-238 desorbed/dissolved from SPM during the annual Yellow River water-sediment regulation scheme (Jun 30th-Jul 14th, 2014) was estimated at 6.4 x 10(11) dpm, about 9% of the total riverine flux of dissolved U-238 during that same period. This study represents a contribution to studies of dissolved U in muddy rivers and estuaries throughout the world. Results reported here provide not only a perspective to better estimate U flux from rivers to the ocean but also new insights into better understanding its estuarine mixing behavior and controlling factors.
机译:为了检查不同悬浮颗粒物(SPM)制度下溶解铀(U)在河口中的混合行为,通过将含有不同浓度的SPM的河水混合海水进行三种基于实验室的实验。将该研究与其他领域和基于实验室的实验进行比较,取决于SPM的浓度,溶解U不同。当SPM浓度&gt时;在黄河中0.8g / l,来自SPM的U解吸/溶解成为主要的并且溶解U相对于理论混合线富集。但是,当SPM浓度为时& 0.8g / L,溶解U在乙碱混合期间守护得保守地在一定程度上去除。 U-234 / U-238活性比在稍微常数恒定,显示出在物理混合过程中没有可测量的同位素分级,并且对来自颗粒的吸附/解吸。在年度黄河水泥条例计划(2014年6月14日 - 2014年7月14日6月14日,2014年6月14日 - 2014年7月14日)中,添加了溶解的U-238从SPM解吸/溶解。在同一时期溶解U-238。本研究代表了对全世界泥泞河流和河口溶解U的研究的贡献。结果报告的结果不仅提供了更好地估计从河流到海洋的助焊剂的视角,而且还可以更好地理解其河口混合行为和控制因素的新见解。

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