成土碳酸盐岩δ13c与环境降水条件

IF 0.5 Q4 ENVIRONMENTAL SCIENCES
Catoni Marcella, H. Monger, Bonifacio Eleonora
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引用次数: 1

摘要

碳同位素分析是研究古环境的有效工具,因为成土碳酸盐的δ 13c与δ 13c SOM和c3 / c4植物的比例有关。本文对不同气候条件和不同地质时代形成的土壤中碳酸盐沉淀时的古环境条件进行了解释。样品取自一个Bk层(全新世PR1)和两个Bkm层(更新世PR2和PR3)。当使用平均δ 13c植物值和最合理的古温度进行评价时,PR1显示c4植物的百分比(48%)低于更新世土壤(~53%),与古气候变化一致。当将现有植物的δ 13c值用于PR1时,c4植物的δ 13c值范围在59(12°C)至66%(18°C)之间,这提出了两种可能的解释:要么是植物物种在全新世发生了变化,要么是文献中通常使用的植物平均值不适合更新世重建
本文章由计算机程序翻译,如有差异,请以英文原文为准。
PEDOGENIC CARBONATE δ13C AND ENVIRONMENTAL PRECIPITATION CONDITIONS
Carbon isotopic analysis is a useful tool for investigating paleoenvironments, as the pedogenic carbonate δ 13 C is related to δ 13 C SOM and to the proportions of C 3 /C 4 plants. In this work we interpreted the paleoenvironmental conditions at the time of carbonate precipitation in soils formed under different climates and during different geological ages. Samples were taken from a Bk (PR1, Holocene) and from two Bkm horizons (PR2 and PR3, Pleistocene). When the mean δ 13 C plant values and the most plausible paleotemperatures were used in the evaluation, PR1 showed a lower percentage of C 4 plants (48%) than Pleistocene soils (~53%), in agreement with paleoclimate changes. When instead the δ 13 C values of current plants were used for PR1, C 4 plants ranged from 59 (12°C) to 66% (18°C), suggesting two possible interpretations: either plant species changed during the Holocene, or the plant mean values normally used in the literature are not suitable for Pleistocene reconstructions
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CiteScore
1.20
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