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Li and ?7Li in Himalayan rivers: Proxies for silicate weathering?

Li and ?7Li in Himalayan rivers: Proxies for silicate weathering?
Li and ?7Li in Himalayan rivers: Proxies for silicate weathering?
This paper presents the first systematic survey of lithium and its isotopes in the dissolved load and suspended and bed sediments of tributaries of the Ganges, both before and after the monsoon. Locations were chosen in order to cover catchments draining both silicates and carbonates, at high (2000–4000 m) and low (550–1300 m) altitudes. Modelling of the dissolved composition shows that the Li / Ca ratio of the silicate endmember in Himalayan rivers is at least an order-of-magnitude higher than that of the carbonate endmember. Most of the dissolved Li (> 90%) is derived from silicates even in carbonate-dominated catchments. While the Sr-isotope composition of the dissolved load reflects that of the bedrock, the main control on its Li-isotope composition is fractionation during weathering. Fractionation between the dissolved and suspended load in silicate-dominated catchments is greatest at high altitude and lower at low altitude where weathering is more intense. Tributaries draining silicates have lower dissolved ?7Li values (by 2.3‰ to 4.2‰) following the monsoon when weathering is more intense because of higher runoff and elevated temperatures. Our data suggest that riverine Li fluxes largely reflect silicate weathering rates, while riverine ?7Li varies with weathering intensity. As rivers presently contribute ?50% of the Li input to the oceans, seawater Li concentrations and ?7Li show potential as proxies for global silicate weathering processes.
0012-821X
387-401
Kısakűrek, Başak
973c5000-21f2-4999-82e4-c5e90a1d5698
James, Rachael H.
79aa1d5c-675d-4ba3-85be-fb20798c02f4
Harris, Nigel B.W.
68029eb8-d8ac-42c1-af75-7f1b8cbffb0c
Kısakűrek, Başak
973c5000-21f2-4999-82e4-c5e90a1d5698
James, Rachael H.
79aa1d5c-675d-4ba3-85be-fb20798c02f4
Harris, Nigel B.W.
68029eb8-d8ac-42c1-af75-7f1b8cbffb0c

Kısakűrek, Başak, James, Rachael H. and Harris, Nigel B.W. (2005) Li and ?7Li in Himalayan rivers: Proxies for silicate weathering? Earth and Planetary Science Letters, 237 (3-4), 387-401. (doi:10.1016/j.epsl.2005.07.019).

Record type: Article

Abstract

This paper presents the first systematic survey of lithium and its isotopes in the dissolved load and suspended and bed sediments of tributaries of the Ganges, both before and after the monsoon. Locations were chosen in order to cover catchments draining both silicates and carbonates, at high (2000–4000 m) and low (550–1300 m) altitudes. Modelling of the dissolved composition shows that the Li / Ca ratio of the silicate endmember in Himalayan rivers is at least an order-of-magnitude higher than that of the carbonate endmember. Most of the dissolved Li (> 90%) is derived from silicates even in carbonate-dominated catchments. While the Sr-isotope composition of the dissolved load reflects that of the bedrock, the main control on its Li-isotope composition is fractionation during weathering. Fractionation between the dissolved and suspended load in silicate-dominated catchments is greatest at high altitude and lower at low altitude where weathering is more intense. Tributaries draining silicates have lower dissolved ?7Li values (by 2.3‰ to 4.2‰) following the monsoon when weathering is more intense because of higher runoff and elevated temperatures. Our data suggest that riverine Li fluxes largely reflect silicate weathering rates, while riverine ?7Li varies with weathering intensity. As rivers presently contribute ?50% of the Li input to the oceans, seawater Li concentrations and ?7Li show potential as proxies for global silicate weathering processes.

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More information

Published date: 2005
Organisations: Marine Geoscience

Identifiers

Local EPrints ID: 210101
URI: http://eprints.soton.ac.uk/id/eprint/210101
ISSN: 0012-821X
PURE UUID: a6645cf1-e2fb-483d-a320-b75ee5728170
ORCID for Rachael H. James: ORCID iD orcid.org/0000-0001-7402-2315

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Date deposited: 06 Feb 2012 13:16
Last modified: 15 Mar 2024 03:30

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Contributors

Author: Başak Kısakűrek
Author: Nigel B.W. Harris

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