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Magnesium isotope geochemistry in the Han River, South Korea

Sin-Woo Lee, Jong-Sik Ryu

2014enmagnesiumisotopesgeochemistryHan Riverweathering

Abstract

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Magnesium (Mg) isotopes can be a proxy for directly constraining the sources of riverine Mg, but the dominant controls on riverine Mg isotope ratios are still uncertain. Here, we report Mg isotope ratios for river waters, experimental leachates and digestions, bulk rocks, and fertilizers in the Han River (HR), South Korea. The HR is composed of two lithologically distinct tributaries: the North Han River (NHR) that flows over only silicate rocks, and the South Han River (SHR) that flows over silicate and carbonate rocks. The lithological differences between the NHR and SHR are reflected in major ion, 87Sr/86Sr, and δ26Mg geochemistry. In particular, the NHR has lower major ion concentrations but higher 87Sr/86Sr ratios and δ26Mg values than the SHR. Simple mass balances and mixing equations indicate that if the riverine δ26Mg values in the HR system are mainly controlled by conservative mixing between silicate and carbonate weathering, the average carbonate end-member δ26Mg value should be unlikely lower than what are measured in this study. Although multiple process-related fractionations occur in the HR system, the enrichment of 24Mg in river waters relative to silicate rocks they drain could be mostly controlled by either fractionation or mixing between isotopically distinct reservoirs, such as minerals or fractions (labile and structural Mg), during dissolution.

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Cite This Work

@article{a4b4c97a-eebf-49b4-86ac-e93e7563d6d6,
  title={Magnesium isotope geochemistry in the Han River, South Korea},
  author={Sin-Woo Lee and Jong-Sik Ryu},
  year={2014},
  language={en}
}
TY  - JOUR
TI  - Magnesium isotope geochemistry in the Han River, South Korea
AU  - Sin-Woo Lee
AU  - Jong-Sik Ryu
PY  - 2014
LA  - en
ER  -

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