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The origin of carbon isotope vital effects in coccolith calcite

机译:Coccolith方解石中碳同位素生命效应的起源

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Calcite microfossils are widely used to study climate and oceanography in Earth’s geological past. Coccoliths, readily preserved calcite plates produced by a group of single-celled surface-ocean dwelling algae called coccolithophores, have formed a significant fraction of marine sediments since the Late Triassic. However, unlike the shells of foraminifera, their zooplankton counterparts, coccoliths remain underused in palaeo-reconstructions. Precipitated in an intracellular chemical and isotopic microenvironment, coccolith calcite exhibits large and enigmatic departures from the isotopic composition of abiogenic calcite, known as vital effects. Here we show that the calcification to carbon fixation ratio determines whether coccolith calcite is isotopically heavier or lighter than abiogenic calcite, and that the size of the deviation is determined by the degree of carbon utilization. We discuss the theoretical potential for, and current limitations of, coccolith-based CO2 paleobarometry, that may eventually facilitate use of the ubiquitous and geologically extensive sedimentary archive.
机译:方解石微基肟被广泛用于研究地球地质过去的气候和海洋学。 Coccoliths,由一组称为Coccolithophores的一组单细胞表面海洋住宅藻类生产的易保存的方解石板,由于后期三叠系,因此形成了大部分海洋沉积物。然而,与Foraminifera的壳不同,他们的浮游动物对应物,Coccoliths在古古代重建中仍未用。在细胞内化学和同位素微环境中沉淀,Coccolith Calcite展示了来自辐射方解石的同位素组成的大而神秘的偏离,称为重要影响。在这里,我们表明对碳固定率的钙化决定了COCCOLITH方解石是否比副辅助方解石同位素更重或较轻,并且偏差的尺寸由碳利用程度决定。我们讨论了基于COCColith的CO 2 古柱状测定法的理论潜力和当前限制,最终可以促进普遍存在和地质广泛的沉积档案。

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