首页> 外文期刊>Sedimentary geology >Environmental changes around the Jurassic/Cretaceous transition: New nannofossil, chemostratigraphic and stable isotope data from the Lokut section (Transdanubian Range, Hungary)
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Environmental changes around the Jurassic/Cretaceous transition: New nannofossil, chemostratigraphic and stable isotope data from the Lokut section (Transdanubian Range, Hungary)

机译:侏罗纪/白垩纪过渡时期的环境变化:来自卢库特剖面(匈牙利的跨丹努比亚山脉)的新的纳米化石,化学地层学和稳定的同位素数据

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摘要

New biostratigraphical, chemical and stable isotope (C, 0) data are presented from the Lokut section (Transdanubian Range, Hungary) representing a ca. 13 m thick continuous succession of Lower Tithonian-Lower Berriasian pelagic limestones. The study is conducted to verify timing of nannofossil events and major palaeoenvironmental changes at the Jurassic/Cretaceous transition including lithogenic input, palaeoredox and palaeoproductivity variations. Nannofossil zones from NJT 16b to NKT have been identified in the Lokfit section and correlated with magnetostratigraphy, covering an interval from polarity zone M21r to M18r. The nannofossil Zone NJT 16b spans the interval from the upper part of M21r to lowermost part of M19n2n but its lower limit is poorly defined due to large diachronism in first occurrence (FO) of Nannoconus infans in various Tethyan sections. FOs of N. kamptneri minor and N. steinmannii minor are situated in the topmost part of the M19n2n and lowermost part of Ml9n1r magnetozones, respectively. They are located ca. 2-2.5 m above the J/K boundary defined as Intermedia/Alpina subzonal boundary, which falls within the lower half of magnetozone M19n2n. The position of first occurrences of these taxa is similar to that from the Puerto Escano section (southern Spain) and slightly lower than in Italian sections (Southern Alps). Concentrations of chemical element proxies of terrigenous transport (Al, K, Rb, Th) decrease towards the top of the Wait section, which suggests a decrease in input of terrigenous material and increasing carbonate productivity during the Early Tithonian and the Berriasian. Slight oxygen depletion at the sea bottom (decrease of Th/U ratio), and large increase in concentrations of productive elements (P, Ba, Ni, Cu) is observed upsection. Nutrients supply via upwelling seems to be the most likely explanation. Increase in phosphorus accumulation rate and a microfacies change from Saccocoma to calpionellid dominated took place in the polarity chron M19r, which apparently coincided with the worldwide Nannofossil Calcification Event, related to a bloom of strongly calcified calcareous nannoplankton taxa. Deposition in the Lokut area was probably affected by long-term climatic trends: aridization and warming, Decreasing delta C-13 values of bulk carbonates throughout the Tithonian and the Berriasian are interpreted as a result of a global trend of accelerated carbonate productivity supported by local factors such as increased upwelling intensity, and a possible change in the composition of carbonate mud. (C) 2017 Elsevier B.V. All rights reserved.
机译:Lokut部分(匈牙利Transdanubian山脉,匈牙利)显示了新的生物地层,化学和稳定同位素(C,0)数据。下提通尼-下贝里亚斯上层石灰岩的13 m厚连续演替。进行该研究以验证侏罗纪/白垩纪过渡期纳米化石事件的时间和主要的古环境变化,包括成岩作用输入,古氧化还原和古生产力变化。在Lokfit断层中已经确定了从NJT 16b到NKT的Nannofossil带,并与地层学相关联,覆盖了从极性带M21r到M18r的间隔。纳诺化石带NJT 16b跨度从M21r的上部到M19n2n的最下部,但是由于在各个特提斯地区的纳诺孔纳斯扇动的首次发生(FO)的历时较大,其下限定义不明确。 N. kamptneri minor和N. steinmannii minor的FO分别位于M19n2n的最上部和Ml9n1r磁区的最下部。他们位于ca。在J / K边界上方2-2.5 m处定义为中间层/ Alpina次区域边界,该边界位于磁区M19n2n的下半部分。这些分类单元的首次出现位置与埃斯卡诺港地区(西班牙南部)相似,但略低于意大利地区(南阿尔卑斯山)。陆运的化学元素代理(Al,K,Rb,Th)的浓度朝着等待区的顶部减小,这表明在早期的ththonian和Berriasian,陆源物质的输入减少,碳酸盐生产率提高。观测到海平面上的海底氧气耗竭(Th / U比降低),生产元素(P,Ba,Ni,Cu)的浓度大幅增加。通过上升的营养供应似乎是最可能的解释。磷的累积速率增加,并且微晶相从Saccocoma变为Caphionellid占主导地位,发生在极性chron M19r上,这显然与世界范围的Nanofossil钙化事件相吻合,这与钙化钙质性纳米浮游生物类群的大量开花有关。 Lokut地区的沉积可能受到长期气候趋势的影响:干旱和变暖,整个Tithonian和Berriasian的散装碳酸盐的δC-13值下降,被解释为是全球碳酸盐生产率提高的趋势得到了本地化的支持。诸如上升流强度增加以及碳酸盐泥成分可能发生变化等因素。 (C)2017 Elsevier B.V.保留所有权利。

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