Lenard, Sebastien Jean Paul; Lavé, Jérôme; France-Lanord, Christian; Aumaître, Georges; Bourlès, Didier L; Keddadouche, Karim (2020): Table S6. Past Himalayan erosion from Bengal Fan: Sr-Nd and 10Be data from river sediment used for the fG and K(t) computation [dataset]. PANGAEA, https://doi.org/10.1594/PANGAEA.912109
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Published: 2020-02-14 • DOI registered: 2020-09-09
Abstract:
Bulk silicate Sr-Nd data, extracted from bank and bedload, are from Galy and France-Lanord (2001) (URI:https://doi.org/10.1130/0091-7613(2001)029<0023:HERITH>2.0.CO;2), Singh and France-Lanord (2002) (URI:https://doi.org/10.1016/S0012-821X(02)00822-1), Singh et al. (2008) (URI:https://doi.org/10.1029/2007JF000909). 10Be data are averaged from Lupker et al. (2012, 2017) (URI:https://doi.org/10.1016/j.epsl.2012.04.020) (URI:https://doi.org/10.5194/esurf-5-429-2017). The production rates were computed using Basinga (Charreau et al., 2019) (URI:https://doi.org/10.1002/esp.4649) with the Lal-Stone / ERA40 atmosphere configuration using a sea-level high latitude production rate of 4.18 atom/g/y (Martin et al., 2017) (URI:https://doi.org/10.1016/j.quageo.2016.11.006), factors for different particle production rates of 0.9886 for spallation, 0.0027 for slow muons, 0.0087 for fast muons and attenuation lengths of 260 g/cm2 for slow muons and 510 g/cm2 for fast muons (Braucher et al., 2011) (URI:https://doi.org/10.1016/j.epsl.2011.06.036), and the basins defined in the Methods of the article associated to the dataset.
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Supplement to:
Lenard, Sebastien Jean Paul; Lavé, Jérôme; France-Lanord, Christian; Aumaître, Georges; Bourlès, Didier L; Keddadouche, Karim (2020): Steady erosion rates in the Himalayas through late Cenozoic climatic changes. Nature Geoscience, 13(6), 448-452, https://doi.org/10.1038/s41561-020-0585-2
Project(s):
Coverage:
Latitude: 24.052900 * Longitude: 89.024650
Parameter(s):
| # | Name | Short Name | Unit | Principal Investigator | Method/Device | Comment |
|---|---|---|---|---|---|---|
| 1 | Event label | Event | Lenard, Sebastien Jean Paul | |||
| 2 | River | River | Lenard, Sebastien Jean Paul | |||
| 3 | Location | Location | Lenard, Sebastien Jean Paul | |||
| 4 | ε-Neodymium | ε-Nd | Lenard, Sebastien Jean Paul | |||
| 5 | ε-Neodymium, uncertainty | ε-Nd unc | ± | Lenard, Sebastien Jean Paul | 1σ | |
| 6 | Neodymium | Nd | mg/kg | Lenard, Sebastien Jean Paul | ||
| 7 | Neodymium, uncertainty | Nd unc | ± | Lenard, Sebastien Jean Paul | 1σ | |
| 8 | Strontium-87/Strontium-86 ratio | 87Sr/86Sr | Lenard, Sebastien Jean Paul | |||
| 9 | Strontium-87/Strontium-86 ratio, uncertainty | 87Sr/86Sr unc | ± | Lenard, Sebastien Jean Paul | 1σ | |
| 10 | Strontium | Sr | mg/kg | Lenard, Sebastien Jean Paul | ||
| 11 | Strontium, uncertainty | Sr unc | ± | Lenard, Sebastien Jean Paul | 1σ | |
| 12 | Area | Area | km2 | Lenard, Sebastien Jean Paul | Full basin | |
| 13 | Area | Area | km2 | Lenard, Sebastien Jean Paul | Plains | |
| 14 | Area | Area | km2 | Lenard, Sebastien Jean Paul | Basalts | |
| 15 | Area | Area | km2 | Lenard, Sebastien Jean Paul | Himalayan | |
| 16 | Area | Area | km2 | Lenard, Sebastien Jean Paul | Glacial cover | |
| 17 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Neutron production rate (including Craton, Shillong Plateau, Indo-Burman Range) | |
| 18 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Slow muon production rate (including Craton, Shillong Plateau, Indo-Burman Range) | |
| 19 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Fast muon production rate (including Craton, Shillong Plateau, Indo-Burman Range) | |
| 20 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Himalayan neutron production rate (restricted to the Himalayan part of the drainage basin, including the Tibetan part) | |
| 21 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Himalayan slow muon production rate (restricted to the Himalayan part of the drainage basin, including the Tibetan part) | |
| 22 | Beryllium-10, production rate per year | 10Be prod | atoms/g/a | Lenard, Sebastien Jean Paul | Himalayan fast muon production rate (restricted to the Himalayan part of the drainage basin, including the Tibetan part) | |
| 23 | Beryllium-10 | 10Be | atoms/g | Lenard, Sebastien Jean Paul | Himalayan, mean | |
| 24 | Beryllium-10, uncertainty | 10Be unc | ± | Lenard, Sebastien Jean Paul | Himalayan (1σ) | |
| 25 | Erosion rate | Erosion rate | mm/a | Lenard, Sebastien Jean Paul | Himalayan erosion rate mean | |
| 26 | Erosion rate, uncertainty | Erosion rate unc | ± | Lenard, Sebastien Jean Paul | Himalayan erosion rate (1σ) |
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