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Reconciling single-chamber Mg / Ca with whole-shell δ18O in surface to deep-dwelling planktonic foraminifera from the Mozambique Channel

机译:从莫桑比克频道中将整个壳δ18o与整个壳δ18o重新调整单壳δ18o,从莫桑比克通道到深居住的浮游动物

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摘要

Most planktonic foraminifera migrate vertically through the water column during life, meeting a range of depth-related conditions as they grow and calcify. For reconstructing past ocean conditions from geochemical signals recorded in their shells, it is therefore necessary to know vertical habitat preferences. Species with a shallow habitat and limited vertical migration will reflect conditions of the surface mixed layer and short-term and mesoscale (i.e. seasonal) perturbations therein. Species spanning a wider range of depth habitats, however, will contain a more heterogeneous, intra-specimen variability (e.g. Mg / Ca and δ18O), which is less for species calcifying below the thermocline. Obtained single-chamber Mg / Ca ratios are combined with single-specimen δ18O and δ13C of the surface-water inhabitant Globigerinoides ruber, the thermocline-dwelling Neogloboquadrina dutertrei and Pulleniatina obliquiloculata, and the deep dweller Globorotalia scitula from the Mozambique Channel. Species-specific Mg / Ca, δ13C and δ18O data combined with a depth-resolved mass balance model confirm distinctive migration and calcification patterns for each species as a function of hydrography. Whereas single-specimen δ18O rarely reflects changes in depth habitat related to hydrography (e.g. temperature), measured Mg / Ca of the last chambers can only be explained by active migration in response to changes in temperature stratification. Foraminiferal geochemistry and modelled depth habitats shows that the single-chamber Mg / Ca and single shell δ18O are in agreement with each other and in line with the changes in hydrography induced by eddies.
机译:大多数浮游动物的Foraminifera在寿命期间垂直迁移到水柱上,在它们生长和钙化时达到一系列与水平相关的条件。为了重建从壳体中记录的地球化学信号重建过去的海洋状况,因此有必要了解垂直栖息地偏好。具有浅栖息地和有限的垂直迁移的物种将反映出表面混合层和短期和中尺度(即季节性)扰动的条件。然而,跨越更广泛的深度栖息地的物种将含有更异的,试样内变异性(例如mg / ca和δ18o),其物种少于热水下部的物种。获得的单腔Mg / Ca比与单样本δ18o和表面水居民球状体曲霉素ruber,Thermocline Neogloboquadrina dutertrei和Pulleniatina Obliquulata的单样本δ18o和δ13c以及来自莫桑比克渠道的深居民Globorotalial scitula。特定于特定的Mg / Ca,δ13c和Δ18o数据与深度分辨的质量平衡模型结合了每个物种作为水文的功能确认了每个物种的独特迁移和钙化模式。而单样本Δ18O很少反映与水文相关的深度栖息地的变化(例如温度),最后腔室的测量Mg / Ca只能通过主动迁移来响应温度分层的变化来解释。传染率的地球化学和建模深度栖息地表明,单室Mg / ca和单壳δ18o彼此一致,并符合漩涡诱导的水力学的变化。

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