An Overview of Oligocene to Recent Sediments of the Western Pacific Warm Pool (WPWP) (International Ocean Discovery Program-IODP Exp. 363) Using Warm and Cool Foraminiferal Species

IF 2.7 4区 工程技术 Q2 ENGINEERING, CIVIL Journal of Marine Science and Technology Pub Date : 2021-01-01 DOI:10.30564/jms.v3i3.3516
Patrícia Pinheiro Beck Eichler, Christofer Paul Barker, M. Gomes, H. Vital
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引用次数: 1

Abstract

We use the excellent sediment recovery of International Ocean Discovery Program (IODP) Exp. 363, in the Western Pacific Warm Pool (WPWP) to assess down-core variations in the abundance of warm versus cool benthic foraminiferal species through a warm benthic foraminifers (WBF) curve. The total percentage of the “warm” shallower species group (Laticarinina pauperata, Cibicidoides kullenbergi, C. robertsonianus, Cibicidoides sp., Hoeglundina elegans, and Bulimina aculeata) and of the “cool” species group from deep waters (Pyrgo murrhina, Planulina wuellerstorfi, Uvigerina peregrina, and Globobulimina hoeglundi, Hopkinsina pacifica) at all sites is used to assess paleo temporal and spatial variations in preservation and marine temperature. Our study sites span water depths ranging from 875 m to 3421 m and our results indicate that well-preserved living and fossil foraminifera characterize mudline and core sediments at all water depths attesting the wide environmental tolerance of these species to temperature and pressure. Using magneto-and biostratigraphy datum, these sediments are of Oligocene age. Our low-resolution study showed that with the exception of core 1486B which the linear tendency of warmer species is toward cool sediments in old times, all of them show that older sediments indicate warmer periods than today, which is expected from Miocene to Recent. Our results provide evidence for the preservation potential of deeply buried sediments, which has implications on climate reconstructions based on the population dynamics of calcareous benthic foraminifera.
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西太平洋暖池(WPWP)渐新世至近代沉积物概述(国际海洋发现计划- iodp Exp. 363)
我们利用国际海洋发现计划(IODP) Exp. 363在西太平洋暖池(WPWP)的出色沉积物恢复,通过暖底栖有孔虫(WBF)曲线评估了暖底栖有孔虫物种与冷底栖有孔虫物种丰度的下核变化。所有地点的“温暖”浅水物种组(Laticarinina pauperata, Cibicidoides kullenbergi, c.r robertsonianus, Cibicidoides sp., Hoeglundina elegans和Bulimina aculeata)和“凉爽”深水物种组(Pyrgo murrhina, Planulina wuellerstorfi, Uvigerina peregrina, Globobulimina hoeglundi, Hopkinsina pacifica)的总百分比用于评估保存和海洋温度的古时空变化。我们的研究地点的水深从875米到3421米不等,我们的结果表明,保存完好的有孔虫和化石有孔虫在所有水深的泥线和岩心沉积物中都有特征,证明了这些物种对温度和压力的广泛环境耐受性。根据磁地层和生物地层资料,这些沉积物属于渐新世。我们的低分辨率研究表明,除了1486B岩心较暖的物种线性倾向于古时较冷的沉积物外,所有的岩心都表明较老的沉积物比现在更温暖,预计从中新世到近代。我们的研究结果为深埋沉积物的保存潜力提供了证据,这对基于钙质底栖有孔虫种群动态的气候重建具有重要意义。
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来源期刊
Journal of Marine Science and Technology
Journal of Marine Science and Technology 工程技术-工程:海洋
CiteScore
5.60
自引率
3.80%
发文量
47
审稿时长
7.5 months
期刊介绍: The Journal of Marine Science and Technology (JMST), presently indexed in EI and SCI Expanded, publishes original, high-quality, peer-reviewed research papers on marine studies including engineering, pure and applied science, and technology. The full text of the published papers is also made accessible at the JMST website to allow a rapid circulation.
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