Loutit T S, Kennett J P
Science. 1979 Jun 15;204(4398):1196-9. doi: 10.1126/science.204.4398.1196.
A distinct (0.5 per mil) carbon-13/carbon-12 isotopic shift in the light direction has been identified in a shallow marine sedimentary sequence of Late Miocene age at Blind River, New Zealand, and correlated with a similar shift in Late Miocene Deep Sea Drilling Project sequences throughout the Indo-Pacific. A dated piston core provides an age for the shift of 6.2 +/- 0.1 million years. Correlations based on the carbon isotopic change require a revision of the previously established magnetostratigraphy at Blind River. The carbon shift at Blind River occurs between 6.2 and 6.3 +/- 0.1 million years before present. A new chronology provides an age for the evolutionary first appearance datum of Globorotalia conomiozea at 6.1 +/- 0.1 million years, the beginning of a distinct latest Miocene cooling event associated with the Kapitean stage at 6.2 +/- 0.1 million years, and the beginning of a distinct shallowing of water depths at 6.1 +/- 0.1 million years. The Miocene-Pliocene boundary as recognized in New Zealand is now dated at 5.3 +/- 0.1 million years. Extension of carbon isotope stratigraphy to other shallow Late Miocene sequences should provide an important datum for international correlation of Late Miocene shallow and deep marine sequences.
在新西兰盲河晚中新世的浅海沉积层序中,已识别出在轻方向上有明显的(千分之0.5)碳-13/碳-12同位素偏移,并与整个印度-太平洋地区晚中新世深海钻探计划层序中的类似偏移相关联。一个测年的活塞岩芯给出了该偏移发生的年龄为620±10万年。基于碳同位素变化的对比需要对盲河先前建立的磁性地层学进行修正。盲河的碳偏移发生在距今620万至630±10万年之间。一种新的年代学给出了 Globorotalia conomiozea进化首次出现数据的年龄为610±10万年,与卡皮蒂阶相关的晚中新世明显降温事件开始于620±10万年,以及水深明显变浅开始于610±10万年。新西兰所认可的中新世-上新世边界现在测年为530±10万年。将碳同位素地层学扩展到其他晚中新世浅海层序,应为晚中新世浅海和深海层序进行国际对比提供一个重要数据。