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首页> 外文期刊>Biogeosciences >Seawater pH reconstruction using boron isotopes in multiple planktonic foraminifera species with different depth habitats and their potential to constrain pH and ip/iCOsub2/sub gradients
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Seawater pH reconstruction using boron isotopes in multiple planktonic foraminifera species with different depth habitats and their potential to constrain pH and ip/iCOsub2/sub gradients

机译:使用不同深度栖息地的多个浮游动物的硼同位素重建海水pH重建,其具有不同深度栖息地的潜力,并限制pH和 p 2 梯度

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Boron isotope systematics of planktonic foraminifera from core-top sediments and culture experiments have been studied to investigate the sensitivity of δ11B of calcite tests to seawater pH. However, our knowledge of the relationship between δ11B and pH remains incomplete for many taxa. Thus, to expand the potential scope of application of this proxy, we report δ11B data for seven?different species of planktonic foraminifera from sediment core tops. We utilize a method for the measurement of small samples of foraminifera and calculate the δ11B-calcite sensitivity to pH for Globigerinoides ruber, Trilobus sacculifer (sacc or without sacc), Orbulina universa, Pulleniatina obliquiloculata, Neogloboquadrina dutertrei, Globorotalia menardii, and Globorotalia tumida, including for unstudied core tops and species. These taxa have diverse ecological preferences and are from sites that span a range of oceanographic regimes, including some that are in regions of air–sea equilibrium and others that are out of equilibrium with the atmosphere. The sensitivity of δ11Bcarbonate to δ11Bborate (e.g., Δδ11Bcarbonate∕Δδ11Bborate) in core tops is consistent with previous studies for T. sacculifer and G. ruber and close to unity for N. dutertrei, O. universa, and combined deep-dwelling species. Deep-dwelling species closely follow the core-top calibration for O. universa, which is attributed to respiration-driven microenvironments likely caused by light limitation and/or symbiont–host interactions. Our data support the premise that utilizing boron isotope measurements of multiple species within a sediment core can be utilized to constrain vertical profiles of pH and pCO2 at sites spanning different oceanic regimes, thereby constraining changes in vertical pH gradients and yielding insights into the past behavior of the oceanic carbon pumps.
机译:研究了来自核心顶部沉积物和培养实验的浮游动物的浮游动物的硼系统性,研究了方解石测试δ11b对海水pH的敏感性。然而,我们对许多分类群的Δ11b和pH之间的关系的了解仍然不完整。因此,为了扩展该代理的潜在应用范围,我们向沉积物核心顶部报告七个?不同种类的浮游动物的浮游动物的Δ11b数据。我们利用一种测量Foraminifera的小样本的方法,并计算Globigerinoides ruber,Trilobus Saculifer(Sacc或没有Sacc)的δ11b-助剂敏感性,Trilobus anculifer,Pulleniatina Obliquilaculata,Neogloboquadrina dutertrei,Globorotalia menardii和Globorotalia tumida,包括不含不含核心顶部和物种。这些分类群具有不同的生态偏好,并来自跨越一系列海洋地区的地点,包括一些在海上均衡区域和其他与大气均衡的地区。芯顶中δ11b碳酸酯(例如,Δδ11bcarbantals/Δδ11bborate)的敏感性与先前的T.Sacculifer和G.Ruber的研究一致,并且靠近N.Tutertrei,O. Universa和合并深层住宅的统一。深入的物种密切关注O. Universa的核心校准,其归因于呼吸驱动的微环境可能由光限制和/或Symbiont-Host相互作用引起。我们的数据支持,利用沉积物内利用多种物种的硼同位素测量的前提可用于在跨越不同海洋制度的地点限制pH和PCO2的垂直曲线,从而限制垂直pH梯度的变化并屈服于过去行为的洞察力海洋碳泵。

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