首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >SR/CA AND C-13/C-12 RATIOS IN SKELETAL CALCITE OF MYTILUS TROSSULUS - COVARIATION WITH METABOLIC RATE, SALINITY, AND CARBON ISOTOPIC COMPOSITION OF SEAWATER
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SR/CA AND C-13/C-12 RATIOS IN SKELETAL CALCITE OF MYTILUS TROSSULUS - COVARIATION WITH METABOLIC RATE, SALINITY, AND CARBON ISOTOPIC COMPOSITION OF SEAWATER

机译:扁桃体骨骼钙硅石中的SR / CA和C-13 / C-12比值-与海水代谢率,盐度和碳同位素组成的变化

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摘要

Minor element and isotopic compositions of marine bivalve calcite are frequently used as proxy records of seawater temperature and salinity. Although molluscan calcite is secreted at or near oxygen isotope equilibrium, the influence of metabolic activity (i.e., vital effects) on skeletal Sr/Ca ratios and delta(13)C values is not well known. We present measurements of skeletal chemistry from (a) consecutive samples milled in chronological order from the organism's final year of growth and (b) adjacent samples within three separate growth bands of the marine mussel Mytilus trossulus to investigate chemical disequilibrium effects among different parts of the shell. Seawater temperature and salinity were monitored for one year at Squirrel Cove, British Columbia. At the end of the year, a young, rapidly growing mussel (mussel A) and an old, slowly growing mussel (mussel B) were harvested from this site. Growth bands within the shells were sampled to provide a chronological record of shell carbonate chemistry. Results from consecutive samples show (1) a significantly higher average Sr/Ca ratio in mussel A than that in mussel B and (2) delta(13)C values that correlate well with salinity in mussel A but not in mussel B. Results from time-equivalent, adjacent samples show (1) higher Sr/Ca and delta(13)C values near the ventral margin than at time-equivalent regions on lateral margins of the shell and (2) little or no variation in delta(18)O values. These observations suggest that Skeletal chemistry (Sr/Ca and delta(13)C) is primarily controlled by rate of mantle metabolic activity and secondarily modified by variation in seawater salinity. Because metabolic activity in the mantle at the site of carbonate precipitation varies with shell curvature, the composition of calcite secreted along lateral margins is influenced to a greater extent by metabolic activity than calcite secreted coevally at the central margin of the shell. Hence, the chemistry of calcite secreted at the ventral margin is precipitated in near-equilibrium with seawater and allows accurate estimation of seawater Sr/Ca ratios and carbon isotopic composition. In contrast, shell precipitation along lateral margins is dominantly controlled by metabolic activity, and calcite chemistry is not in equilibrium with ambient seawater. In this context, we present a biomineralization model where variations in skeletal Sr/Ca and delta(13)C values are explained in the context of mantle metabolic activity and seawater salinity. [References: 59]
机译:海洋双壳类方解石的微量元素和同位素组成经常被用作海水温度和盐度的替代记录。尽管软体动物方解石是在氧同位素平衡或在其附近分泌的,但代谢活性(即生命作用)对骨骼Sr / Ca比值和delta(13)C值的影响尚不清楚。我们提供了从(a)从生物的最后生长年开始按时间顺序研磨的连续样品和(b)在海洋贻贝Mystilus trossulus的三个独立生长带中的相邻样品中的骨骼化学测量结果,以研究不同部位之间化学不平衡的影响贝壳。在不列颠哥伦比亚省的松鼠湾对海水温度和盐度进行了一年的监测。在这一年年底,从该地点收获了一个年轻的,快速生长的贻贝(贻贝A)和一个古老的,缓慢生长的贻贝(贻贝B)。采样壳内的生长带以提供壳碳酸盐化学的时间顺序记录。连续样本的结果表明(1)贻贝A的平均Sr / Ca比明显高于贻贝B,(2)与贻贝A的盐度很好相关但与贻贝B无关的delta(13)C值。时间等效,相邻样本显示(1)腹缘附近的Sr / Ca和delta(13)C值比壳侧缘的时间等效区域高,并且(2)δ几乎没有变化(18) O值。这些观察结果表明,骨骼化学(Sr / Ca和delta(13)C)主要受地幔代谢活动速率的控制,其次是受海水盐度变化的影响。因为在碳酸盐沉淀部位的地幔中代谢活动随壳曲率而变化,所以代谢活动对沿侧缘分泌的方解石的组成的影响要比在壳中央边缘隐伏着的方解石的代谢活性更大。因此,在腹缘分泌的方解石的化学成分在与海水的接近平衡中沉淀出来,可以准确估算海水的Sr / Ca比值和碳同位素组成。相比之下,壳沿侧缘的沉淀主要受代谢活动控制,方解石化学与周围海水不平衡。在这种情况下,我们提出了一个生物矿化模型,其中在地幔代谢活性和海水盐度的背景下解释了骨骼中Sr / Ca和delta(13)C值的变化。 [参考:59]

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