...
首页> 外文期刊>Paleoceanography >Environmental versus biological controls on Mg/Ca variability in Globigerinoides ruber (white) from core top and plankton tow samples in the southwest Pacific Ocean
【24h】

Environmental versus biological controls on Mg/Ca variability in Globigerinoides ruber (white) from core top and plankton tow samples in the southwest Pacific Ocean

机译:西南太平洋核心层和浮游生物丝束样本中球形双歧杆菌(白色)中Mg / Ca变异性的环境与生物控制

获取原文
获取原文并翻译 | 示例

摘要

Laser ablation inductively coupled plasma mass spectrometry was used to analyze the individual chambers from tests of foraminiferal fossil and plankton tow Globigerinoides ruber from the southwest Pacific Ocean, from latitudes 3°S to 42°S. The variability of Mg/Ca between chambers of an individual (intraindividual) and individuals of the same population (interindividual), is such that when converted to temperature, the extent of intra-individual and interindividual variability appears to exceed that attributable to either calcification or seasonal temperature variability. The pooled mean chamber Mg/Ca from each core top and plankton tow site demonstrates a significant (p < 0.05) positive correlation with temperature. We derive chamber-specific calibrations where Mg/_(CaCh-F-2) = 0.798 exp~(0.070 T), Mg/Ca_(Ch-F-1) = 0.891 exp~(0.067 T) and Mg/Ca_(Ch-F) = 0.590 exp~(0.072 T). We do not observe any bias between the two morphotypes Gs. ruber ruber and Gs. ruber pyramidalis. The chamber-specific calibrations potentially offset Mg/Ca-based temperature reconstructions if used on bulk (whole) test Mg/Ca or applied to misidentified chambers. Nevertheless, these calibrations can be used to reliably estimate sea surface temperature. Although there is a general overriding temperature control on Mg/Ca, we show that removal of the effect of temperature at each site reveals a lognormal Mg/Ca distribution. This suggests that Mg/Ca variability at each site is also affected by biological mechanism(s) that may control the distribution of interindividual Mg/Ca. In addition, other TE/Ca data (Al/Ca and Mn/Ca) from laser ablation trace element depth profiles can be used to identify detrital or diagenetic phases that may bias the trace element/Ca signal.
机译:激光烧蚀-电感耦合等离子体质谱法用于分析西南太平洋(南纬3°至42°S)的有孔虫化石和浮游生物拖曳的Globigerinoides ruber的各个腔室。个体(个体内)和同一群体(个体间)之间的Mg / Ca变异性使得当转换为温度时,个体内和个体间变异的程度似乎超过了由于钙化或钙化引起的变异。季节性温度变化。来自每个核心顶部和浮游生物拖曳位置的合并平均腔室Mg / Ca表现出与温度的显着正相关(p <0.05)。我们得出了特定于腔室的校准,其中Mg / _(CaCh-F-2)= 0.798 exp〜(0.070 T),Mg / Ca_(Ch-F-1)= 0.891 exp〜(0.067 T)和Mg / Ca_(Ch -F)= 0.590 exp〜(0.072 T)。我们没有观察到两个形态Gs之间的任何偏差。橡胶和GS。锥体金字塔。如果在批量(整体)测试Mg / Ca上使用或应用于错误识别的腔室,则特定于腔室的校准可能会抵消基于Mg / Ca的温度重建。然而,这些校准可以用来可靠地估计海面温度。尽管对Mg / Ca进行了一般性的最高温度控制,但我们显示,去除每个位置的温度影响后,Mg / Ca的分布呈对数正态分布。这表明每个位点的Mg / Ca变异性也受到可能控制个体Mg / Ca分布的生物学机制的影响。另外,来自激光烧蚀痕量元素深度分布图的其他TE / Ca数据(Al / Ca和Mn / Ca)可用于识别可能会使痕量元素/ Ca信号产生偏差的碎屑或成岩相。

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