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Bulk geochemistry, sulfur isotope characteristics of the Yuhuang-1 hydrothermal field on the ultraslow-spreading Southwest Indian Ridge
Shili Liao;  Chunhui Tao;  Huaiming Li;  Fernando J.A.S. Barriga;  Jin Liang;  Weifang Yang;  Junyu Yu;  Chuanwei Zhu
2018
Source PublicationOre Geology Reviews
Volume96Pages:13-27
Abstract

The Yuhuang-1 hydrothermal field (HF) was discovered recently on the ultraslow-spreading Southwest Indian Ridge (segment 29). This field comprises two main sulfide deposition areas, including the southwest sulfide area (SWS) and the northeast sulfide area (NES), all of which are about 500 m in diameter. Sulfide-rich samples collected on the seafloor consist of zinc-rich, iron-rich, and silicified samples. The Zn-rich samples contain up to 60% sphalerite and 5% chalcopyrite, while iron-rich samples primarily contain pyrite and marcasite, and silicified sulfide rich samples primarily consist of amorphous silicon (70%), pyrite (15%-20%), and minor sphalerite. Sulfide rich samples generally show mound features with similar mineral assemblages, except that the NES contains pyrrhotite, indicating precipitation under relatively reduced conditions. Bulk geochemistry of the SWS and NES massive sulfide samples display similar Au, Co, Ni, and Si contents and Ni/Co ratios, similar to mafic related HFs, while the Sn content and the Cd/Zn ratio are comparable to ultramafic-related HFs, which probably indicates a multi-stage origin. Sulfides rich samples from the SWS have delta S-34 values ranging from -1.37 parts per thousand to 6.02 parts per thousand with a median value of 0.83 parts per thousand. Currently, the delta S-34 value of -1.37 parts per thousand is the lowest sulfur isotope composition observed in HFs on ultraslow-spreading ridges. Bacteria-derived sulfur, which is calculated to be 10%-25% of the total sulfur component, is likely the cause of the negative sulfur isotope composition. Conversely, the delta S-34 values of the seafloor sulfides rich samples in the NES ranges from 3.75 parts per thousand to 8.73 parts per thousand with a median value of 4.74 parts per thousand, which is distinctly heavier than that of the SWS. This study suggests that the SWS and NES of the Yuhuang-1 HF probably formed during different mineralization stages.

KeywordBulk Geochemistry s Isotopes yuhuang-1 Hydrothermal Field southwest Indian Ridge
Indexed BySCI
Language英语
Document Type期刊论文
Identifierhttp://ir.gyig.ac.cn/handle/42920512-1/8787
Collection矿床地球化学国家重点实验室
Affiliation1.Second Institute of Oceanography, State Oceanic Administration, Hangzhou 310012, Zhejiang, China
2.Key Laboratory of Submarine Geosciences, State Oceanic Administration, Hangzhou 310012, Zhejiang, China
3.Departamento de Geologia, Faculdade de Ciências, Universidade de Lisboa, Lisboa, Portugal
4.Ocean College, Zhejiang University, Zhoushan 316021, Zhejiang, China
5.State Key Laboratory of Ore Deposit Geochemistry, Institute of Geochemistry, Chinese Academy of Sciences, Guiyang 550002, Guizhou, China
Recommended Citation
GB/T 7714
Shili Liao;Chunhui Tao;Huaiming Li;Fernando J.A.S. Barriga;Jin Liang;Weifang Yang;Junyu Yu;Chuanwei Zhu. Bulk geochemistry, sulfur isotope characteristics of the Yuhuang-1 hydrothermal field on the ultraslow-spreading Southwest Indian Ridge[J]. Ore Geology Reviews,2018,96:13-27.
APA Shili Liao;Chunhui Tao;Huaiming Li;Fernando J.A.S. Barriga;Jin Liang;Weifang Yang;Junyu Yu;Chuanwei Zhu.(2018).Bulk geochemistry, sulfur isotope characteristics of the Yuhuang-1 hydrothermal field on the ultraslow-spreading Southwest Indian Ridge.Ore Geology Reviews,96,13-27.
MLA Shili Liao;Chunhui Tao;Huaiming Li;Fernando J.A.S. Barriga;Jin Liang;Weifang Yang;Junyu Yu;Chuanwei Zhu."Bulk geochemistry, sulfur isotope characteristics of the Yuhuang-1 hydrothermal field on the ultraslow-spreading Southwest Indian Ridge".Ore Geology Reviews 96(2018):13-27.
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