Deep weathering in the semi-arid Coastal Cordillera, Chile

被引:19
|
作者
Krone, Laura, V [1 ]
Hampl, Ferdinand J. [2 ]
Schwerdhelm, Christopher [3 ]
Bryce, Casey [3 ,4 ]
Ganzert, Lars [1 ]
Kitte, Axel [1 ]
Uebernickel, Kirstin [3 ]
Dielforder, Armin [1 ,9 ]
Aldaz, Santiago [1 ]
Oses-Pedraza, Romulo [5 ]
Perez, Jeffrey Paulo H. [1 ]
Sanchez-Alfaro, Pablo [6 ]
Wagner, Dirk [1 ,7 ]
Weckmann, Ute [1 ]
von Blanckenburg, Friedhelm [1 ,8 ]
机构
[1] GFZ German Res Ctr Geosci, Potsdam, Germany
[2] Tech Univ Berlin, Dept Appl Geochem, Berlin, Germany
[3] Eberhard Karls Univ Tubingen, Dept Geosci, Tubingen, Germany
[4] Univ Bristol, Dept Earth Sci, Bristol, Avon, England
[5] Univ Atacama, CRIDESAT, Copiapo, Chile
[6] Univ Austral Chile, Inst Ciencias Tierra, Valdivia, Chile
[7] Univ Potsdam, Inst Geosci, Potsdam, Germany
[8] Free Univ Berlin, Inst Geol Sci, Berlin, Germany
[9] Leibniz Univ Hannover, Inst Geol, Hannover, Germany
关键词
REGOLITH PRODUCTION; ATACAMA-DESERT; NORTHERN CHILE; CRITICAL ZONE; FAULT ZONE; EROSION; OXIDATION; RATES; STATE; POROSITY;
D O I
10.1038/s41598-021-90267-7
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
The weathering front is the boundary beneath Earth's surface where pristine rock is converted into weathered rock. It is the base of the "critical zone", in which the lithosphere, biosphere, and atmosphere interact. Typically, this front is located no more than 20 m deep in granitoid rock in humid climate zones. Its depth and the degree of rock weathering are commonly linked to oxygen transport and fluid flow. By drilling into fractured igneous rock in the semi-arid climate zone of the Coastal Cordillera in Chile we found multiple weathering fronts of which the deepest is 76 m beneath the surface. Rock is weathered to varying degrees, contains core stones, and strongly altered zones featuring intensive iron oxidation and high porosity. Geophysical borehole measurements and chemical weathering indicators reveal more intense weathering where fracturing is extensive, and porosity is higher than in bedrock. Only the top 10 m feature a continuous weathering gradient towards the surface. We suggest that tectonic preconditioning by fracturing provided transport pathways for oxygen to greater depths, inducing porosity by oxidation. Porosity was preserved throughout the weathering process, as secondary minerals were barely formed due to the low fluid flow.
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页数:15
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