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Synchronous barium peaks in high-resolution profiles of calcite and aragonite marine bivalve shells

机译:方解石和文石海洋双壳贝壳高分辨率剖面中的同步钡峰

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摘要

Barium/calcium profiles of bivalve shells are characterized by flat background signals periodically interrupted by sharp peaks, with the background signals correlated with water Ba/Ca. To test if the peaks are an environmental signal related to productivity, we analyzed high-resolution Ba/Ca profiles in bivalve shells that grew adjacent to one another. Two aragonitic Saxidomus giganteus show remarkable similarity over a decade of growth, clearly indicating an environmental forcing. Four calcitic Pecten maximus shells also record synchronous Ba/Ca peaks, again indicating an exogenous control. The Ba/Ca peaks, however, start ~40 days after the crash of a bloom, while sedimentation takes place immediately following the bloom. Barite formation in settling phytoplankton flocs, as has been previously proposed, is clearly not the cause of these peaks. Other possible causes, such as dissolved Ba in ambient water, spawning, shell organic matter content, and kinetic growth rate effects are also discussed, but none provide satisfactory explanations. Background shell Ba partition coefficients (Ba/Cacarbonate/Ba/Cawater) for both the calcitic shells (0.18) and aragonitic shells (0.16) are similar to that previously reported for the calcitic Mytilus edulis (~0.1). We suggest that Ba/Ca peaks in bivalve shells are caused by an as yet undetermined environmental forcing, while background Ba/Ca levels are a good indication of dissolved Ba/Ca in the water; both are independent of shell mineralogy.
机译:双壳贝壳的钡/钙分布特征是平坦的背景信号周期性地被尖峰中断,背景信号与水Ba / Ca相关。为了测试峰是否是与生产率相关的环境信号,我们分析了彼此相邻生长的双壳贝壳中的高分辨率Ba / Ca分布图。两种非洲虎耳草在十年的生长过程中显示出惊人的相似性,清楚地表明了环境的强迫。四个钙化的果胶最大壳也记录了同步的Ba / Ca峰,再次表明是外源控制。但是,Ba / Ca峰值在水华崩溃后约40天开始,而水华紧随其后便发生沉淀。如先前所提出的,在浮游植物絮凝物沉淀中的重晶石形成显然不是这些峰的原因。还讨论了其他可能的原因,例如环境水中Ba的溶解,产卵,壳中有机物含量和动力学生长速率的影响,但都没有提供令人满意的解释。钙壳(0.18)和烟碱壳(0.16)的背景壳Ba分配系数(Ba / Ca 碳酸盐 / Ba / Ca )与先前报道的相似钙化的Mytilus edulis(〜0.1)。我们认为,双壳类贝壳中的Ba / Ca峰是由尚未确定的环境强迫引起的,而背景Ba / Ca的水平很好地表明了水中Ba / Ca的溶解。两者均与壳矿物学无关。

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