Testing the Steady State Assumption for the Earth's Surface Denudation Using Li Isotopes in the Amazon Basin
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[1] J. Bouchez,et al. Riverine Li isotope fractionation in the Amazon River basin controlled by the weathering regimes , 2015 .
[2] A. Meixner,et al. Lithium and boron isotopic composition of sedimentary rocks — The role of source history and depositional environment: A 250Ma record from the Cadomian orogeny to the Variscan orogeny , 2014 .
[3] R. Hilton,et al. Lithium isotopes in large rivers reveal the cannibalistic nature of modern continental weathering and erosion , 2014 .
[4] F. Blanckenburg,et al. Element Cycling in the Critical Zone as Viewed by New Isotope Tools , 2014 .
[5] J. Bouchez,et al. Modeling novel stable isotope ratios in the weathering zone , 2013, American Journal of Science.
[6] R. Rudnick,et al. Constraints on continental crustal mass loss via chemical weathering using lithium and its isotopes , 2011, Proceedings of the National Academy of Sciences.
[7] J. Bouchez,et al. How important is it to integrate riverine suspended sediment chemical composition with depth? Clues from Amazon River depth-profiles , 2011 .
[8] P. Kubik,et al. Sediment production and delivery in the Amazon River basin quantified by in situ–produced cosmogenic nuclides and recent river loads , 2011 .
[9] S. Gíslason,et al. Glacial effects on weathering processes: New insights from the elemental and lithium isotopic composition of West Greenland rivers , 2010 .
[10] J. Guyot,et al. Seasonal and provenance controls on Nd–Sr isotopic compositions of Amazon rivers suspended sediments and implications for Nd and Sr fluxes exported to the Atlantic Ocean , 2008 .
[11] B. Bourdon,et al. Weathering and transport of sediments in the Bolivian Andes: Time constraints from uranium-series isotopes , 2006 .
[12] N. Filizola. Transfert sédimentaire actuel par les fleuves amazoniens , 2003 .
[13] B. Dupré,et al. Chemical and physical denudation in the Amazon River Basin , 1997 .