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[福州盆地第四纪岩芯的连续X射线荧光元素特征及沉积相指示意义]

[Continuous XRF Element Characteristics and Significance of Sedimentary Facies Indication of the Quaternary Core from Fuzhou Basin].

作者信息

Zhang Gui-fang, Zheng Zhuo, Yue Yuan-fu, Barry Rollet, Huang Kang-you, Zhu Guang-qi

出版信息

Guang Pu Xue Yu Guang Pu Fen Xi. 2016 Sep;36(9):2971-7.

PMID:30085489
Abstract

This paper focuses on the study on continuous XRF (X-Ray Fluorescence) scanning elements of a 39 m core from Fuzhou Basin. The XRF scanning result is used to recognize the different sedimentary environment before the discussion of the element variation of different deposit in transitional zone between land and ocean. There are five sedimentary facies in the study area from the late Pleistocene: lacustrine-fluvial-estuary (mud tidal flat)-mixed tidal flat-fluvial. The XRF result from the 5 sedimentary stages shows that the high concentration of Co, Fe, Ti, Si are controlled largely by grain size. The average element intensity of layers with similar grain size indicates that Ca, Ti, Mn, Fe and Co from the marine (tidal flat) deposit is 3~10 times bigger than those from terrestrial (fluvial) deposit, with higher content of Si coinciding with terrestrial deposit. It is indicated that except grain size, the deposit environment is an important factor for element concentration. In this study, Ca, Ti, Mn, Fe and Co are relatively better indicator elements for marine sediments while Si is good and K, Rb and Sr have some indication for terrestrial sediments. The study result shows XRF continuous scanning can help to identify the subtle variation of elements, as to the determination of the sediment facies. Thus, XRF scanning is an important supplement to sediment facies identification. This study also provides an application example of XRF in a typical transitional zone between land and ocean.

摘要

本文聚焦于对福州盆地一条39米岩芯的连续X射线荧光(XRF)扫描元素的研究。在探讨海陆过渡带不同沉积物的元素变化之前,利用XRF扫描结果来识别不同的沉积环境。研究区域晚更新世存在五个沉积相:湖相 - 河流相 - 河口(泥质潮坪) - 混合潮坪 - 河流相。五个沉积阶段的XRF结果表明,Co、Fe、Ti、Si的高浓度主要受粒度控制。粒度相似的层的平均元素强度表明,海洋(潮坪)沉积物中的Ca、Ti、Mn、Fe和Co比陆地(河流)沉积物中的大3至10倍,而Si含量较高与陆地沉积物一致。这表明除粒度外,沉积环境是影响元素浓度的重要因素。在本研究中,Ca、Ti、Mn、Fe和Co是海洋沉积物相对较好的指示元素,而Si对海洋沉积物也适用,K、Rb和Sr对陆地沉积物有一定指示作用。研究结果表明,XRF连续扫描有助于识别元素的细微变化,从而确定沉积相。因此,XRF扫描是沉积相识别的重要补充。本研究还提供了XRF在典型海陆过渡带的应用实例。

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