Citation: | SHEN Qiwu,WANG Dazhao,LENG Chengbiao,et al. Discovery of Telluride and Selenide in the Giant Pulang Porphyry Cu-Au Deposit, Yunnan Province[J]. Rock and Mineral Analysis,2023,42(3):643−646. DOI: 10.15898/j.ykcs.202303180038 |
[1] |
温汉捷,周正兵,朱传威,等. 稀散金属超常富集的主要科学问题[J]. 岩石学报,2019,35(11):3271−3291. doi: 10.18654/1000-0569/2019.11.01
Wen H J,Zhou Z B,Zhu C W. Critical scientific issues of super-enrichment of dispersed metals[J]. Acta Petrologica Sinica, 2019, 35(11):3271−3291. doi: 10.18654/1000-0569/2019.11.01
|
[2] |
何伟,吴亮,魏向成,等. 宁东煤田中侏罗统延安组稀有稀散稀土元素地球化学特征及其对沉积环境的指示意义[J]. 岩矿测试,2022,41(6):962−977.
He W,Wu L,Wei X C,et al. Geochemical characteristics of rare,dispersed,and rare earth elements in the middle Jurassic Yan’an Formation of the Ningdong coalfield and their indication for a sedimentary environment[J]. Rock and Mineral Analysis, 2022, 41(6):962−977.
|
[3] |
国显正,周涛发,汪方跃,等. 长江中下游成矿带城门山斑岩-矽卡岩型铜金矿床碲元素赋存状态及沉淀机制初步研究[J]. 岩石学报,2021,37(9):2723−2742. doi: 10.18654/1000-0569/2021.09.08
Guo X Z,Zhou T F,Wang F Y,et al. Study of occurrence states and precipitation mechanism of tellurium in Chengmenshan porphyry-skarn deposit from the middle-lower Yangtze River valley metallogenic belt[J]. Acta Petrologica Sinica, 2021, 37(9):2723−2742. doi: 10.18654/1000-0569/2021.09.08
|
[4] |
邓明华,方贵聪,赵如意,等. 广东大宝山铜多金属矿床伴生碲铋矿物特征及其指示意义[J]. 矿产与地质,2022,36(5):962−970. doi: 10.19856/j.cnki.issn.1001-5663.2022.05.007
Deng M H,Fang G C,Zhao R Y,et al. Characteristics of associated Te-Bi-minerals and its indicative significance of Dabaoshan copper polymetallic deposit in Guangdong Province[J]. Mineral Resources and Geology, 2022, 36(5):962−970. doi: 10.19856/j.cnki.issn.1001-5663.2022.05.007
|
[5] |
Leng C B,Cooke D R,Hou Z Q,et al. Quantifying exhumation at the giant Pulang Porphyry Cu-Au deposit using U-Pb-He dating[J]. Economic Geology, 2018, 113(5):1077−1092. doi: 10.5382/econgeo.2018.4582
|
[6] |
王冠,戴婕,王坤阳,等. 应用能谱-扫描电镜分析铜矿床伴生元素的赋存状态[J]. 岩矿测试,2021,40(5):659−669.
Wang G,Dai J,Wang K Y,et al. Occurrence of associated elements in a copper mine by EDX-SEM[J]. Rock and Mineral Analysis, 2021, 40(5):659−669.
|
[7] |
吴维虎,陈明勇,舒华伟,等. 云南普朗斑岩型铜矿伴生铂族铼元素调查及资源潜力分析[J]. 矿产与地质,2021,35(4):610−616.
Wu W H,Chen M Y,Shu H W,et al. Research and analysis of the potential resources of associated platinum group and rhenium elements in Pulang porphyry copper deposit,Yunnan[J]. Mineral Resources and Geology, 2021, 35(4):610−616.
|
[8] |
胡淙声. 江西德兴斑岩铜矿中的碲钯矿[J]. 矿物学报,1982(4):248−249.
Hu C S. Merenskyite in Dexing porphyry copper deposit,Jiangxi Province[J]. Acta Mineralogica Sinica, 1982(4):248−249.
|
[9] |
Hein J R,Koschinsky A,Halliday A N. Global occurrence of tellurium-rich ferromanganese crusts and a model for the enrichment of tellurium[J]. Geochimica et Cosmochimica Acta, 2003, 67(6):1117−1127. doi: 10.1016/S0016-7037(02)01279-6
|
[10] |
Harris C R,Pettke T,Heinrich C A,et al. Tethyan mantle metasomatism creates subduction geochemical signatures in non-arc Cu-Au-Te mineralizing magmas,Apuseni Mountains (Romania)[J]. Earth and Planetary Science Letters, 2013, 366(1):122−136.
|
[11] |
Jensen E P,Barton M D. Gold deposits related to alkaline magmatism[J]. Reviews in Economic Geology, 2000, 13(1):279−314.
|
[12] |
Brenan J M. Se-Te fractionation by sulfide–silicate melt partitioning:Implications for the composition of mantle-derived magmas and their melting residues[J]. Earth and Planetary Science Letters, 2015, 422(1):45−57.
|
[13] |
Holwell D A,Fiorentini M,McDonald I,et al. A metasomatized lithospheric mantle control on the metallogenic signature of post-subduction magmatism[J]. Nature Communications, 2019, 10(1):3511. doi: 10.1038/s41467-019-11065-4
|