globalchange  > 气候减缓与适应
DOI: 10.1016/j.epsl.2018.10.040
WOS记录号: WOS:000455693800019
论文题名:
Massive middle Miocene gypsic paleosols in the Atacama Desert and the formation of the Central Andean rain-shadow
作者: Rech, Jason A.1; Currie, Brian S.1; Jordan, Teresa E.2; Riquelme, Rodrigo3; Lehmann, Sophie B.1,4; Kirk-Lawlor, Naomi E.2; Li, Shanying5; Gooley, Jared T.1,6
通讯作者: Rech, Jason A.
刊名: EARTH AND PLANETARY SCIENCE LETTERS
ISSN: 0012-821X
EISSN: 1385-013X
出版年: 2019
卷: 506, 页码:184-194
语种: 英语
英文关键词: Atacama Desert ; Andes ; paleosols ; oxygen isotopes ; aridity
WOS关键词: STABLE-ISOTOPE EVIDENCE ; CLIMATE-CHANGE ; NORTHERN CHILE ; SURFACE UPLIFT ; PUNA PLATEAU ; ALTIPLANO ; SEDIMENTATION ; OROGRAPHY ; EROSION ; ORIGIN
WOS学科分类: Geochemistry & Geophysics
WOS研究方向: Geochemistry & Geophysics
英文摘要:

The Central Andes of South America are one of the highest and broadest mountain ranges on earth and have a profound influence on climate in the Southern Hemisphere. Yet, the timing of Andean uplift and its subsequent impact on atmospheric circulation is not well known. Here we use fossil soils from along an 800-km transect (19-25 degrees S) in the Atacama Desert of northern Chile to identify the initiation of extreme aridity along the west coast of South America and infer a minimum age for the development of the Central Andean rain-shadow. Paleosols record the onset of extreme aridity at the boundary between the middle and late Miocene (12-10 Ma). Lower Miocene (24-20 Ma) soils are chemically weathered and contain soil carbonate, indicative of a vegetated landscape and semi-arid climate. In contrast, gypsum dominates massive (2-5 m thick) upper middle Miocene soils that formed on a hyperarid landscape devoid of vegetation. The development of extreme hyperaridity is linked to the formation of the Central Andean rain-shadow through the divergence of oxygen isotope values. Oxygen isotope values of lower Miocene soil carbonates in the Atacama Desert (-5.0 +/- 1.1 parts per thousand VPDB) and Central Andes (-7.8 +/- 1 parts per thousand) are similar, indicating no or a limited rain-shadow. By 15 Mya, however, delta O-18 values of soil carbonate differ by similar to 8 parts per thousand, with values of soil carbonate in Altiplano paleosols getting lower due to uplift while soil carbonate values in the Atacama Desert get higher due to aridity. Therefore, by 15 Mya there is clear evidence for a rain-shadow from the Central Andes. By the latest middle Miocene (ca. 12-10 Ma), paleosols in the Altiplano decreased to -11.8 +/- 1.0 parts per thousand while soils in the Atacama Desert increase to +1.5 +/- 4.5 parts per thousand. This almost 14 parts per thousand divergence in the delta O-18 values of soil carbonate for soils only similar to 250 km apart is evidence of a strong Central Andes rain-shadow effect in place during the late middle Miocene (12-10 Ma). (C) 2018 Elsevier B.V. All rights reserved.


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资源类型: 期刊论文
标识符: http://119.78.100.158/handle/2HF3EXSE/127968
Appears in Collections:气候减缓与适应

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作者单位: 1.Miami Univ, Dept Geol & Environm Earth Sci, Oxford, OH 45056 USA
2.Cornell Univ, Dept Earth & Atmospher Sci, Snee Hall, Ithaca, NY 14853 USA
3.Univ Catolica Norte, Dept Ciencias Geol, Ave Angamos 0610, Antofagasta, Chile
4.Univ Pittsburgh, Dept Geol & Environm Sci, Pittsburgh, PA 15260 USA
5.China Univ Petr, Sch Geosci, Qingdao 266580, Peoples R China
6.Stanford Univ, Dept Geol Sci, Stanford, CA 94305 USA

Recommended Citation:
Rech, Jason A.,Currie, Brian S.,Jordan, Teresa E.,et al. Massive middle Miocene gypsic paleosols in the Atacama Desert and the formation of the Central Andean rain-shadow[J]. EARTH AND PLANETARY SCIENCE LETTERS,2019-01-01,506:184-194
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