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Bromine counts from XRF scanning as an estimate of the marine organic carbon content of sediment cores

机译:XRF扫描中的溴计数是对沉积物岩心海洋有机碳含量的估计

摘要

XRF sediment core scanning technology is increasingly used to quantify sediment composition. The overall good correlation between biophilic halogen bromine (Br) and sedimentary total organic carbon (TOC) potentially allows the fast estimation of down core TOC profiles by XRF scanning. In order to test this approach we present data from the Arabian Sea and a Mediterranean brine basin, comparing XRF core scanning Br data with discrete sample TOC analyses. Overall, Br counts and TOC show a clear correlation, except when stable carbon isotope and C/N data indicate intervals characterized by enhanced input of terrestrial organic matter. Hence, solid phase Br is exclusively associated with marine organic matter (MOC) and can be used as a direct estimate of this parameter after a calibration is established. High pore water Br in the brine core steepens the Br/TOC correlation but after salt correction shows a nearly identical gradient to that of the Arabian Sea core
机译:XRF沉积物芯扫描技术越来越多地用于量化沉积物成分。亲生物卤素溴(Br)与沉积的总有机碳(TOC)之间的总体良好相关性可能允许通过XRF扫描快速估算下层TOC剖面。为了测试这种方法,我们将来自阿拉伯海和地中海盐水盆地的数据进行了比较,将XRF岩心扫描Br数据与离散样品TOC分析进行了比较。总体而言,Br计数和TOC表现出明显的相关性,除非稳定的碳同位素和C / N数据表明以增加的陆地有机质为特征的间隔。因此,固相Br仅与海洋有机物(MOC)有关,并且可以在建立校准后用作该参数的直接估计值。盐水核心中的高孔隙水Br使Br / TOC相关性变陡,但盐校正后显示出与阿拉伯海核心几乎相同的梯度

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