Rare disperse elements in epithermal deposit: Insights from LA-ICP-MS study of sphalerite at Dalingkou, South China

被引:15
作者
Fan, Ming-Sen [1 ]
Ni, Pei [1 ]
Pan, Jun-Yi [1 ]
Wang, Guo-Guang [1 ]
Ding, Jun-Ying [1 ]
Chu, Shu-Wu [2 ]
Li, Wen-Sheng [1 ]
Huang, Wen-Qing [1 ]
Zhu, Ren-Zhi [1 ]
Chi, Zhe [1 ]
机构
[1] Nanjing Univ, Inst Geo Fluids, Sch Earth Sci & Engn, State Key Lab Mineral Deposits Res, Nanjing 210093, Peoples R China
[2] Nonferrous Met Geol Explorat Bur Zhejiang Prov, Shaoxing 312099, Peoples R China
关键词
LA-ICP-MS analysis; Rare disperse elements; Sphalerite; Epithermal; Dalingkou deposit; INDIUM-BEARING SPHALERITE; PB-AG DEPOSITS; FLUID INCLUSION; MINOR ELEMENTS; TRACE-ELEMENTS; GOLD DEPOSIT; ORE GENESIS; POLYMETALLIC DEPOSIT; TUMURTIJN-OVOO; BROOKS RANGE;
D O I
10.1016/j.gexplo.2022.107124
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
Rare disperse elements (RDEs) have received substantial attention due to their intense application in industry. Sphalerite from some Pb-Zn deposits of MVT, skarn, VMS, SEDEX and epithermal type, containing considerable RDEs contents that could be used as by-product. Here, the concentrations of RDEs in sphalerite from the Dalingkou deposit is examined by in situ laser-ablation inductively coupled mass spectroscopy (LA-ICP-MS), to discuss their substitution mechanism in sphalerite, controlling factors, and genesis model in epithermal system. The Dalingkou deposit is the largest epithermal Ag-Zn-Pb deposit in Zhejiang, South China, with proven reserves of 702 t Ag, 0.10 Mt Pb, 0.15 Mt Zn, and potential resources for RDEs. Orebodies are predominately hosted by intermediate-acid Yanshanian volcanics and subvolcanics and controlled by N-S and NW-SE trending faults. The ores are dominated by abundant base metal sulfides with gangue minerals mainly composed of quartz and rhodochrosite. The hydrothermal activities occurred in four stages: pre-ore stage (stage 1), Pb-Zn mineralization stage (stage 2), Ag-Pb-Zn mineralization stage (stage 3) and post-ore stage (stage 4). Two types of sphalerite were observed (i.e. Sp2 from the stage 2, and Sp3 from the stage 3), according to crosscutting and overprinting relationships of ores. LA-ICP-MS analysis shows that, relative to the Sp3, the Sp2 has higher contents of Fe, Mn, Cd, and In, but slightly lower contents of Ga and Ge. Correlation analyses reveal the incorporation of RDE into sphalerite via both simple substitution, such as Zn2+ <-> (Cd2+), and coupled substitution, such as 3Zn2+ <-> In3+ + Sn3+ + (vacancy), 3Zn2+ <-> Ge4+ + 2Cu+, and 2Zn2+<-> (Ag, Cu)+ + Ga3+. Geothermometry of impurity el-ements (Ga, Ge, In, Mn, and Fe) in sphalerite suggests that the sulfides precipitated from an intermediate-to low -temperature hydrothermal system. It further reveals temperature decrease from stage 2 to stage 3, suggesting fluid mixing between magmatic fluids and meteoric water was involved. Deep parental magma may have contributed In and Cd during the mineralization stage, whereas Ga and Ge were released from surrounding rocks due to hydrothermal alteration, despite that they are not enriched in orebodies. The LA-ICP-MS analysis also reveals that the In, Ga and Ge contents in both Sp2 and Sp3 are too low to be economic. However, compared with sphalerite Cd concentrations from different deposit types worldwide, the Sp2 and Sp3 in Dalingkou have enough high Cd grade as an economic by-product, suggesting that the Dalingkou deposit is also a Cd deposit.
引用
收藏
页数:16
相关论文
共 50 条
[31]   Metals pre-enrichment during the syn-sedimentary period of Mengxing Pb-Zn Deposit, western Yunnan, SW China: Evidence on LA-ICP-MS trace elements and S isotopes of lamellar sphalerite [J].
Minhas, Muhammad ;
Deng, Mingguo ;
Zhang, Quan ;
Li, Wenchang ;
Jia, Zhen ;
Yang, Jiafei .
ORE GEOLOGY REVIEWS, 2024, 167
[32]   Comparison of fluid processes in coexisting wolframite and quartz from a giant vein-type tungsten deposit, South China: Insights from detailed petrography and LA-ICP-MS analysis of fluid inclusions [J].
Pan, Jun-Yi ;
Ni, Pei ;
Wang, Ru-Cheng .
AMERICAN MINERALOGIST, 2019, 104 (08) :1092-1116
[33]   LA-ICP-MS trace element analysis of arsenopyrite from the Samgwang gold deposit, South Korea, and its genetic implications [J].
Lee, Moontaek ;
Shin, Dongbok ;
Yoo, Bongchul ;
Im, Heonkyung ;
Pak, Sangjoon ;
Choi, Sunki .
ORE GEOLOGY REVIEWS, 2019, 114
[34]   Trace elements in magnetite from Kiruna, northern Sweden, as determined by LA-ICP-MS [J].
Müller, B ;
Axelsson, MD ;
Öhlander, B .
GFF, 2003, 125 :1-5
[35]   LA-ICP-MS in situ analyses of the pyrites in Dongyang gold deposit, Southeast China: Implications to the gold mineralization [J].
Xu, Nan ;
Wu, Cai-lai ;
Li, Sheng-rong ;
Xue, Bo-qiang ;
He, Xiang ;
Yu, Yan-long ;
Liu, Jun-zhuang .
CHINA GEOLOGY, 2020, 3 (02) :230-246
[36]   In-situ LA-ICP-MS trace elemental analyses of magnetite: The Mesozoic Tengtie skarn Fe deposit in the Nanling Range, South China [J].
Zhao, Wen Winston ;
Zhou, Mei-Fu .
ORE GEOLOGY REVIEWS, 2015, 65 :872-883
[37]   Zircon LA-ICP-MS U-Pb ages of granites at Dabaoshan polymetallic deposit and its geological significance, Guangdong, South China [J].
Mao Wei ;
Li XiaoFeng ;
Yang FuChu .
ACTA PETROLOGICA SINICA, 2013, 29 (12) :4104-4120
[38]   A comparative study of fluid characteristics of W and Cu mineralization in the Shiweidong deposit, giant Dahutang ore field, South China: Evidence from LA-ICP-MS analysis of fluid inclusion [J].
Zhang, Kai -Han ;
Ni, Pei ;
Li, Wen-Sheng ;
Wang, Guo-Guang ;
Pan, Jun-Yi ;
Cui, Jian-Ming ;
Fan, Ming-Sen ;
Han, Liang ;
Gao, Yan ;
He, Gen-Wen ;
Ding, Jun-Ying .
ORE GEOLOGY REVIEWS, 2023, 158
[39]   Direct Quantitative Determination of Rare Earth Elements in REE-rich Mineral Powders by LA-ICP-MS [J].
Ke Yuqiu ;
Guo Wei ;
Jin Lanlan ;
Qiao Lei ;
Yang Huan ;
Hu Shenghong .
CHEMICAL RESEARCH IN CHINESE UNIVERSITIES, 2017, 33 (03) :360-364
[40]   Origins and chemical evolution of hydrothermal fluids in the Shazhou volcanic-related type U deposit at the Xiangshan district, South China: New insights from LA-ICP-MS analysis of fluid inclusions [J].
Yu, Zhiqiang ;
Ling, Hongfei ;
Chen, Peirong ;
Chen, Weifeng ;
Liu, Lei .
ORE GEOLOGY REVIEWS, 2023, 158