4.7 Article

Sediment provenance in contractional orogens: The detrital zircon record from modern rivers in the Andean fold-thrust belt and foreland basin of western Argentina

期刊

EARTH AND PLANETARY SCIENCE LETTERS
卷 479, 期 -, 页码 83-97

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ELSEVIER
DOI: 10.1016/j.epsl.2017.09.001

关键词

foreland basins; U-Pb geochronology; provenance; rivers; Argentina; Andes

资金

  1. Geological Society of America
  2. American Association of Petroleum Geologists
  3. Jackson School of Geosciences at the University of Texas at Austin
  4. U.S. National Science Foundation [EAR 1348031]
  5. Directorate For Geosciences
  6. Division Of Earth Sciences [1348031] Funding Source: National Science Foundation

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This study analyzes detrital zircon U-Pb age populations from Andean rivers to assess whether active synorogenic sedimentation accurately records proportional contributions from varied bedrock source units across different drainage areas. Samples of modern river sand were collected from west-central Argentina (28-33 degrees S), where the Andes are characterized by active uplift and deposition in diverse contractional provinces, including (1) hinterland, (2) wedge-top, (3) proximal foreland, and (4) distal broken foreland basin settings. Potential controls on sediment provenance were evaluated by comparing river U-Pb age distributions with predicted age spectra generated by a sediment mixing model weighted by relative catchment exposure (outcrop) areas for different source units. Several statistical measures (similarity, likeness, and cross-correlation) are employed to compare how well the area-weighted model predicts modern river age populations. (1) Hinterland basin provenance is influenced by local relief generated along thrust-bounded ranges and high zircon fertility of exposed crystalline basement. (2) Wedge-top (piggyback) basin provenance is controlled by variable lithologic durability among thrust belt bedrock sources and recycled basin sediments. (3) Proximal foreland (foredeep) basin provenance of rivers and fluvial megafans accurately reflect regional bedrock distributions, with limited effects of zircon fertility and lithologic durability in large (>20,000 km(2)) second-order drainage systems. (4) In distal broken segments of the foreland basin, regional provenance signatures from thrust-belt and hinterland areas are diluted by local contributions from foreland basement-cored uplifts. (C) 2017 Elsevier B.V. All rights reserved.

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