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Impact of high CO2 on the geochemistry of the coralline algae Lithothamnion glaciale

机译:高二氧化碳对珊瑚藻类地球化学的影响

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Coralline algae are a significant component of the benthic ecosystem. Their ability to withstand physical stresses in high energy environments relies on their skeletal structure which is composed of high Mg-calcite. High Mg-calcite is, however, the most soluble form of calcium carbonate and therefore potentially vulnerable to the change in carbonate chemistry resulting from the absorption of anthropogenic CO2 by the ocean. We examine the geochemistry of the cold water coralline alga Lithothamnion glaciale grown under predicted future (year 2050) high pCO2 (589 μatm) using Electron microprobe and NanoSIMS analysis. In the natural and control material, higher Mg calcite forms clear concentric bands around the algal cells. As expected, summer growth has a higher Mg content compared to the winter growth. In contrast, under elevated CO2 no banding of Mg is recognisable and overall Mg concentrations are lower. This reduction in Mg in the carbonate undermines the accuracy of the Mg/Ca ratio as proxy for past temperatures in time intervals with significantly different carbonate chemistry. Fundamentally, the loss of Mg in the calcite may reduce elasticity thereby changing the structural properties, which may affect the ability of L. glaciale to efficiently function as a habitat former in the future ocean.
机译:珊瑚藻是底栖生态系统的重要组成部分。它们在高能量环境中抵御身体应力的能力依赖于其骨骼结构,该骨骼结构由高Mg-棉签组成。然而,高Mg-CaliCite是最可溶的碳酸钙形式,因此可能易受海洋吸收人为CO2导致的碳酸酯化学变化的影响。我们研究了在预测未来(2050年)高PCO2(589μATM)下的冷水珊瑚藻类岩石岩石冰川的地球化学,使用电子微探针和纳米粒子分析。在天然和对照材料中,较高的Mg方解石在藻类细胞周围形成透明的同心带。正如预期的那样,与冬季生长相比,夏季增长率较高。相反,在升高的CO 2下,没有镁盐的条带可识别,并且整体Mg浓度较低。碳酸盐中的Mg的这种降低破坏了Mg / Ca比的准确性,因为在时间间隔的过去温度下的代理具有明显不同的碳酸化学化学。从根本上说,方解石中Mg的损失可能降低弹性,从而改变结构性质,这可能影响L.Blaciale在未来海洋中有效地发挥为栖息地以前的能力。

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