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Evaluation of processes occurring in the bottom nepheloid layer (BNL) of an eastern Mediterranean area using~(234)Th/~(238)U disequilibria

机译:使用〜(234)Th /〜(238)U不平衡度评估地中海东部地区底部星状胶体层(BNL)中发生的过程

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摘要

Particle-reactive radionuclide ~(234)Th and its ratios with the conservative ~(238)U were used to trace the marine processes occurring over short timescales in the bottom nepheloid layer (BNL) of seven stations in the Saronikos Gulf and the Elefsis Bay (Greece) during three seasons (summer 2008, autumn 2008 and winter 2009). Summer was considered as a steady season where low physical processes occur and stratification is well established, autumn as a commutative period and winter as period of extensive trawling and physical activities. The obtained ratio profiles showed excess of ~(234)Th relative to ~(238)U in the BNL of the sampling area during summer, caused by the dissolved fraction of ~(234)Th. During autumn, the situation was different with large ~(234)Th deficit throughout the water column leading to large export fluxes of particles from the water column. Finally, during winter the ratios showed that predominant phenomenon in the area was likely resuspension of bottom sediments. The resuspension signature was additionally evaluated by total suspended matter (TSM) inventories in the BNL. Despite the intense resuspension, small scavenging of dissolved ~(234)Th was recorded in the BNL resulting in high residence times of dissolved ~(234)Th. A 1 order of magnitude difference between dissolved and particu-late ~(234)Th residence times was observed indicating that scavenging from dissolved to particulate ~(234)Th could be highly variable and, as a result, the Saronikos Gulf is a highly dynamic environment, in terms of temporal and spatial particle uptake and removal. Comparing these values to literature ones consistent results were obtained. The possibility of sediment resuspension in the BNL during winter was amplified by the bloom of phytoplankton resulting in even decreased residence times of particulate ~(234)Th (average values). In contrast, the respective residence times of the dissolved fraction of ~(234)Th in the BNL were higher showing a maximum in winter at the stations where resuspension concluded. Nevertheless, ~(234)Th cycling in the area is not controlled by TSM, probably due to the presence of colloids, which could play an essential role in ~(234)Th scavenging.
机译:粒子反应性放射性核素〜(234)Th及其与保守的〜(238)U的比率用于追踪在短时间尺度内在萨罗尼科斯湾和Elefsis湾的七个站的底部星状体层(BNL)中发生的海洋过程。 (希腊)的三个季节(2008年夏季,2008年秋季和2009年冬季)。夏季被认为是一个稳定的季节,那里的物理过程很少发生,并且已经很好地进行了分层;秋季被认为是可交换的时期,冬季被认为是拖网和进行大量体育活动的时期。所获得的比率分布图表明,由于〜(234)Th的溶解分数,夏季期间采样区的BNL中的〜(234)U相对于〜(238)U过量。在秋季,情况有所不同,整个水柱中都存在〜(234)Th较大的缺陷,导致水柱中颗粒的出口流量较大。最后,在冬季,比率表明该地区的主要现象很可能是底部沉积物的重悬。 BNL中还通过总悬浮物(TSM)清单对重新悬浮签名进行了评估。尽管进行了强烈的重悬浮,但在BNL中仍记录到少量的〜(234)Th溶解清除,导致〜(234)Th的停留时间较长。观察到溶解和有颗粒的〜(234)Th停留时间之间存在1个数量级的差异,表明从溶解到颗粒〜(234)Th的清除可能是高度可变的,因此,萨罗尼科斯海湾具有很高的动态性就时间和空间颗粒的吸收和去除而言将这些值与文献中的值进行比较,可以获得一致的结果。浮游植物的开花增加了冬季BNL中沉积物重新悬浮的可能性,导致〜(234)Th颗粒(平均值)的停留时间甚至减少。相反,BNL中〜(234)Th的溶解级分的各自停留时间较长,表明冬天在重悬结束的站台达到最大值。然而,该地区〜(234)Th的循环不受TSM的控制,可能是由于胶体的存在,而胶体可能在〜(234)Th的清除中起重要作用。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2013年第9期|7097-7113|共17页
  • 作者单位

    NCSR 'Demokritos', Institute of Nuclear Technology-Radiation Protection, Environmental Radioactivity Laboratory, 15310 Agia Paraskevi, Athens, Greece;

    NCSR 'Demokritos', Institute of Nuclear Technology-Radiation Protection, Environmental Radioactivity Laboratory, 15310 Agia Paraskevi, Athens, Greece;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Disequilibrium; Residence times; Bottom nepheloid layer (BNL); Saronikos; Resuspension;

    机译:不平衡;停留时间;底部星状胶体层(BNL);萨罗尼科斯重悬;
  • 入库时间 2022-08-17 13:27:12

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