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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Environmental and biological controls on elemental (Mg/Ca, Sr/Ca and Mn/Ca) ratios in shells of the king scallop Pecten maximus
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Environmental and biological controls on elemental (Mg/Ca, Sr/Ca and Mn/Ca) ratios in shells of the king scallop Pecten maximus

机译:扇贝大花蜜壳中元素(Mg / Ca,Sr / Ca和Mn / Ca)比的环境和生物控制

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摘要

The relationship between potential elemental proxies (Mg/Ca, Sr/Ca and Mn/Ca ratios) and environmental factors was investigated for the bivalve Pecten maximus in a detailed field study undertaken in the Menai Strait, Wales, U.K. An age model constructed for each shell by comparison of measured and predicted oxygen-isotope ratios allowed comparison on a calendar time scale of shell elemental data with environmental variables, as well as estimation of shell growth rates. The seasonal variation of shell Mn/Ca ratios followed a similar pattern to one previously described for dissolved Mn2+ in the Menai Strait, although further calibration work is needed to validate such a relationship. Shell Sr/Ca ratios unexpectedly were found to co-vary most significantly with calcification temperature, whilst shell Mg/Ca ratios were the next most significant control. The temporal variation in the factors that control shell Sr/Ca ratios strongly suggest the former observation most likely to be the result of a secondary influence on shell Sr/Ca ratios by kinetic effects, the latter driven by seasonal variation in shell growth rate that is in turn influenced in part by seawater temperature. P. maximus shell Mg/Ca ratio to calcification temperature relationships exhibit an inverse correlation during autumn to early spring (October to March-April) and a positive correlation from late spring through summer (May-June to September): No clear explanation is evident for the former trend, but the similarity of the records from the three shells analysed indicate that it is a real signal and not a spurious observation. These observations confirm that application of the Mg/Ca proxy in P. maximus shells remains problematic, even for seasonal or absolute temperature reconstructions. For the range of calcification temperatures of 5-19 degrees C, our shell Mg/Ca ratios in P. maximus are approximately one-fourth those in inorganic calcite, half those in the bivalve Pinna nobilis, twice those in the bivalve Mytilus trossulus, and four to five times higher than Mg/Ca ratios in planktonic and benthonic foraminifera. Our findings further support observations that Mg/Ca ratios in bivalve shell calcite are an unreliable temperature proxy, as well as substantial taxon- and species-specific variation in Mg incorporation into bivalves and other calcifying organisms, with profound implications for the application of this geochemical proxy to the bivalve fossil record. (c) 2006 Elsevier Inc. All rights reserved.
机译:在英国威尔士的梅奈海峡进行的详细实地研究中,对双壳类果蝇的潜在元素代理(Mg / Ca,Sr / Ca和Mn / Ca比)与环境因素之间的关系进行了研究通过比较测得的氧同位素比率和预测的氧同位素比率,可以在具有环境变量的贝壳元素数据的日历时间尺度上比较贝壳,并估算贝壳的生长速率。壳中Mn / Ca比值的季节性变化遵循与先前描述的在梅奈海峡中溶解的Mn2 +相似的模式,尽管需要进一步的校准工作来验证这种关系。意外地发现,壳Sr / Ca比值与钙化温度的变化最为显着,而壳Mg / Ca比值是次高的对照。控制壳Sr / Ca比值的因素的时间变化强烈表明,前者很可能是动力学效应对壳Sr / Ca比值产生二次影响的结果,而后者是由壳生长速率的季节性变化驱动的,即反过来部分地受海水温度的影响。 P. maximus壳的Mg / Ca比值与钙化温度的关系在秋季至初春期间(10月至3月至4月)呈反相关,从春季末期至夏季(5月至6月至9月)呈正相关:没有明确的解释对于前一种趋势,但是来自三个炮弹的记录的相似性表明,这是一个真实的信号,而不是虚假的观察。这些观察结果证实,即使对于季节性或绝对温度重建,在最大的P.maximus壳中使用Mg / Ca替代物仍然存在问题。对于5-19摄氏度的钙化温度范围,我们最大壳中的壳Mg / Ca比约为无机方解石的四分之一,是双壳类Pinna nobilis的一半,是双壳类Mytilus trossulus的两倍,并且比浮游和底栖有孔虫的Mg / Ca比值高四到五倍。我们的发现进一步支持了以下观察结果:双壳贝壳方解石中的Mg / Ca比值是不可靠的温度替代物,并且镁在双壳类和其他钙化生物体中掺入的镁的分类和物种特异性差异很大,这对该地球化学方法的应用具有深远的影响代表双壳类化石记录。 (c)2006 Elsevier Inc.保留所有权利。

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