...
【24h】

Cadmium isotopic composition in the ocean

机译:海洋中的镉同位素组成

获取原文
获取原文并翻译 | 示例

摘要

The oceanic cycle of cadmium is still poorly understood, despite its importance for phytoplankton growth and paleoceanographic applications. As for other elements that are biologically recycled, variations in isotopic composition may bring unique insights. This article presents (i) a protocol for the measurement of cadmium isotopic composition (Cd IC) in seawater and in phytoplankton cells; (ii) the first Cd IC data in seawater, from two full depth stations, in the northwest Pacific and the northwest Mediterranean Sea; (iii) the first Cd IC data in phytoplankton cells, cultured in vitro. The Cd IC variation range in seawater found at these stations is not greater than 1.5 epsilon(Cd/amu) units, only slightly larger than the mean uncertainty of measurement (0.8 epsilon(Cd/amu)). Nevertheless, systematic variations of the Cd IC and concentration in the upper 300 in of the northwest Pacific suggest the occurrence of Cd isotopic fractionation by phytoplankton uptake, with a fractionation factor of 1.6 +/- 1.4 epsilon(Cd/amu) units. This result is supported by the culture experiment data suggesting that freshwater phytoplankton (Chlamydomonas reinhardtii and Chlorella sp.) preferentially take up light Cd isotopes, with a fractionation factor of 3.4 +/- 1.4 epsilon(Cd/amu) units. Systematic variations of the Cd IC and hydrographic data between 300 and 700 m in the northwest Pacific have been tentatively attributed to the mixing of the mesothermal (temperature maximum) water (epsilon(Cd/amu) = -0.9 +/- 0.8) with the North Pacific Intermediate Water (epsilon(Cd/amu) = 0.5 +/- 0.8). In contrast, no significant Cd IC variation is found in the northwest Mediterranean Sea. This observation was attributed to the small surface Cd depletion by phytoplankton uptake and the similar Cd IC of the different water masses found at this site. Overall, these data suggest that (i) phytoplankton uptake fractionates Cd isotopic composition to a measurable degree (fractionation factors of 1.6 and 3.4 epsilon(Cd/amu) units, for the in situ and culture experiment data, respectively), (ii) an open ocean profile of Cd IC shows upper water column variations consistent with preferential uptake and regeneration of light Cd isotopes, and (iii) different water masses may have different Cd IC. This isotopic system could therefore provide information on phytoplankton Cd uptake and on water mass trajectories and mixing in some areas of the ocean. However, the very small Cd IC variations found in this study indicate that applications of Cd isotopic composition to reveal aspects of the present or past Cd oceanic cycle will be very challenging and may require further analytical improvements. Better precision could possibly be obtained with larger seawater samples, a better chemical separation of tin and a more accurate mass bias correction through the use of the double spiking technique. (c) 2006 Elsevier Inc. All rights reserved.
机译:尽管镉对浮游植物的生长和古海洋学的应用很重要,但对镉的海洋循环仍然知之甚少。至于其他可生物回收的元素,同位素组成的变化可能带来独特的见解。本文介绍(i)测量海水和浮游植物细胞中镉同位素组成(Cd IC)的协议; (ii)来自西北太平洋和西北地中海的两个全深度站的海水中第一批Cd IC数据; (iii)体外培养的浮游植物细胞中的第一批Cd IC数据。在这些站点发现的海水中Cd IC的变化范围不大于1.5 epsilon(Cd / amu)单位,仅略大于测量的平均不确定度(0.8 epsilon(Cd / amu))。然而,西北太平洋上部300个区域中Cd IC和浓度的系统变化表明,浮游植物的吸收会导致Cd同位素分馏,其分馏因子为1.6 +/- 1.4 epsilon(Cd / amu)单位。该结果得到培养实验数据的支持,该数据表明淡水浮游植物(莱茵衣藻和小球藻)优先吸收轻量的Cd同位素,其分馏因子为3.4 +/- 1.4 epsilon(Cd / amu)单位。西北太平洋300至700 m之间Cd IC和水文数据的系统变化初步归因于中温(最高温度)水(ε(Cd / amu)= -0.9 +/- 0.8)与北太平洋中间水(ε(Cd / amu)= 0.5 +/- 0.8)。相反,在西北地中海没有发现明显的Cd IC变化。该观察结果归因于浮游植物吸收引起的少量Cd消耗,以及在该地点发现的不同水团的相似Cd IC。总体而言,这些数据表明:(i)浮游植物的摄取可将Cd同位素组成分级到可测量的程度(就地和培养实验数据而言,分离因子分别为1.6和3.4 epsilon(Cd / amu)单位),(ii) Cd IC的开放海洋剖面显示出上部水柱的变化与轻Cd同位素的优先吸收和再生相一致,并且(iii)不同水团可能具有不同的Cd IC。因此,这种同位素系统可以提供有关浮游植物Cd吸收以及海洋某些区域水质轨迹和混合的信息。然而,这项研究中发现的很小的Cd IC变化表明,应用Cd同位素组成揭示当前或过去Cd海洋周期的各个方面将非常具有挑战性,可能需要进一步的分析改进。通过使用双尖峰技术,使用较大的海水样品,更好的锡化学分离和更精确的质量偏差校正可能会获得更高的精度。 (c)2006 Elsevier Inc.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号