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Asian summer monsoon influence on chemical weathering and sediment provenance determined by clay mineral analysis from the Indus Submarine Canyon

Datos Bibliográficos

ID24086784
AutoresYuting Li (0000-0001-6047-6201, Purdue University West Lafayette, autor de correspondencia), Peter D Clift (0000-0001-6660-6388, Louisiana State University), Richard W Murray (0000-0002-7688-4098, Woods Hole Oceanographic Institution), Elise Exnicios (Louisiana State University), Thomas Ireland, Philipp Böning (0009-0003-7375-4567, Carl von Ossietzky Universität Oldenburg)
Año2020
Volumen93
Páginas23-39
Fecha de publicación2020-01-01
Peer ReviewedSí
Open AccessSí
TipoARTICLE
RevistaQuaternary Research (JOURNAL)
Identificadores de la revistaISSN: 0033-5894 • E-ISSN: 1096-0287
EditorialCambridge University Press (CUP) (PUBLISHER)
DOI10.1017/qua.2019.44
OpenAlexW2979116384
IdiomaEN
Referencias citadas66

Clay minerals from the Indus Canyon and eastern clinoform since ~12 ka are uniformly rich in smectite and illite, similar to those from the Holocene Indus flood plains. A systematic enrichment of smectite in the proximal delta compared to the canyon and eastern clinoform argues for preferential capture of smectite close to the river mouth since ~12 ka. There is a rapid shift to a more smectite-rich assemblage in the canyon and eastern clinoform after ~5 ka. This change is probably caused by a change in sediment source, with less direct flux from the Himalaya and more erosion of older, weathered, smectite-rich sediment from the Indus River flood plains, driven by incision of the Indus and its tributaries into the floodplain as summer monsoon rains weakened. This influx of smectite is consistent with lower kaolinite/smectite values since ~5 ka. The onset of large-scale agricultural activities since ~5 ka, especially starting with the Harappan Civilization, may also have enhanced incision and erosion of floodplain sediments over the same time period. This study reports for the first time how monsoon strength variations since ~12 ka affected the clay mineral assemblages and sediment provenance in a major submarine canyon.

Canyon · Clay minerals · Erosion · Floodplain · Geochemistry · Geomorphology · Illite · Indus · Monsoon · Provenance · Sediment · Structural basin · Submarine canyon · Tributary · Weathering · earthquake and tectonic studies · Geological formations and processes · Geology · Geology and Paleoclimatology Research · Oceanography

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