Major and trace element composition of surface sediments from the Southwest Indian Ridge: evidence for the incorporation of a hydrothermal component
Author:
Publisher
Springer Science and Business Media LLC
Subject
Aquatic Science,Oceanography
Link
http://link.springer.com/content/pdf/10.1007/s13131-015-0678-8.pdf
Reference55 articles.
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3. Bach W, Roberts S, Vanko D A, et al. 2003. Controls of fluid chemistry and complexation on rare-earth element contents of anhydrite from the Pacmanus subseafloor hydrothermal system, Manus Basin, Papua New Guinea. Mineralium Deposita, 38(8): 916–935
4. Baker E T, Chen Y J, Morgan J P. 1996. The relationship between near-axis hydrothermal cooling and the spreading rate of midocean ridges. Earth and Planetary Science Letters, 142(1–2): 137–145
5. Baker E T, Urabe T. 1996. Extensive distribution of hydrothermal plumes along the superfast spreading East Pacific Rise, 13°30′–18°40′S. Journal of Geophysical Research, 101(B4): 8685–8695
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1. Sediment geochemistry reveals abundant off-axis hydrothermal fields on the ultraslow-spreading Southwest Indian Ridge;Earth and Planetary Science Letters;2024-10
2. Unmixing the hydrothermal and detrital components from a metalliferous sediment core from the eastern Southwest Indian Ridge – Insights from mineral magnetism;Deep Sea Research Part I: Oceanographic Research Papers;2023-11
3. Clay mineralogy and geochemistry of surface sediments in the equatorial western Indian Ocean and implications for sediment sources and the Antarctic bottom water inputs;Journal of Asian Earth Sciences;2023-09
4. Geochemical Characteristics of Iron in a Sediment Core at 63°40′ E, Eastern Southwest Indian Ridge: Implications on Regional Hydrothermal Activities and Source Origin;Minerals;2023-01-31
5. Characteristics of rare earth elements in the surface sediments of Southwest Indian Ridge: implication of grain size for the identification of hydrothermal activity;Geo-Marine Letters;2022-02-21
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