Cusack M, Kamenos N A, Rollion-Bard C, Tricot G
School of Geographical and Earth Sciences, University of Glasgow, Glasgow, G12 8QQ, UK.
Institut de Physique du Globe, Paris, France.
Sci Rep. 2015 Feb 2;5:8175. doi: 10.1038/srep08175.
Reconstructing pH from biogenic carbonates using boron isotopic compositions relies on the assumption that only borate, and no boric acid, is present. Red coralline algae are frequently used in palaeoenvironmental reconstruction due to their widespread distribution and regular banding frequency. Prior to undertaking pH reconstructions using red coralline algae we tested the boron composition of the red coralline alga Lithothamnion glaciale using high field NMR. In bulk analysed samples, thirty percent of boron was present as boric acid. We suggest that prior to reconstructing pH using coralline algae 1) species-specific boron compositions and 2) within-skeleton special distributions of boron are determined for multiple species. This will enable site selective boron analyses to be conducted validating coralline algae as palaeo-pH proxies based on boron isotopic compositions.
利用硼同位素组成从生物源碳酸盐中重建pH值依赖于仅存在硼酸盐而不存在硼酸的假设。由于红珊瑚藻分布广泛且具有规律的条带频率,因此常用于古环境重建。在使用红珊瑚藻进行pH值重建之前,我们使用高场核磁共振测试了红珊瑚藻石枝藻的硼组成。在大量分析的样本中,30%的硼以硼酸形式存在。我们建议在使用珊瑚藻重建pH值之前,1)确定多种物种的物种特异性硼组成以及2)硼在骨骼内的特殊分布。这将能够进行位点选择性硼分析,从而验证基于硼同位素组成的珊瑚藻作为古pH值指标的有效性。