500-km-long Olympic Cu-Au-(U) province. In addition to the Olympic Dam Cu-U-Au and Promine'/> Timing of Iron Oxide Cu-Au-(U) Hydrothermal Activity and Nd Isotope Constraints on Metal Sources in the Gawler Craton, South Australia
首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Timing of Iron Oxide Cu-Au-(U) Hydrothermal Activity and Nd Isotope Constraints on Metal Sources in the Gawler Craton, South Australia
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Timing of Iron Oxide Cu-Au-(U) Hydrothermal Activity and Nd Isotope Constraints on Metal Sources in the Gawler Craton, South Australia

机译:南澳大利亚Gawler Craton上氧化铁Cu-Au-(U)水热活动的时间和Nd同位素对金属源的约束

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摘要

The eastern Gawler craton hosts Australia's premier uranium-bearing iron oxide copper-gold (IOCG) belt, the >500-km-long Olympic Cu-Au-(U) province. In addition to the Olympic Dam Cu-U-Au and Prominent Hill Cu-Au deposits, numerous barren and weakly mineralized IOCG prospects are present in the province. New geochronological data for hydrothermal minerals combined with constraints from host-rock ages demonstrate that alteration and associated IOCG mineralization formed between approx 1570 and approx 1600 Ma in three districts of the province. This IOCG hydrothermal activity temporally overlaps with magmatism of the Hiltaba Suite and Gawler Range Volcanics. Titanites in paragenetically early magnetite-bearing alteration in the Olympic Dam and Prominent Hill districts yield U-Pb ion probe ages of 1576 +- 5 and 1567 +- 10 Ma, respectively. Molybdenite in veins crosscutting magnetite-biotite and albitic alteration in the Moonta-Wallaroo district have Re-Os ages of 1574 +- 6 and 1599 +- 6 Ma, respectively. These represent minimum ages of the IOCG alteration assemblages in this district. A muscovite ~(40)Ar/~(39)Ar age of 1575 ±11 Ma provides a minimum age of paragenetically later hematitic alteration in the Olympic Dam district. Neodymium isotope compositions were determined for 44 whole-rock samples from barren and weakly mineralized Cu-Au prospects and host rocks in the Olympic Dam and Prominent Hill districts. The new geochronological framework enables comparison of the Nd isotope data across two IOCG districts at the time of formation of the Olympic Dam deposit (ca. 1590 Ma). Magnetite-rich weakly Cu-mineralized alteration from five prospects yields a relatively narrow range of epsilon_(Nd(1590)) values of approx 5.8 to -4.1. Both hematite- and magnetite-rich alteration yield generally similar epsilon_(Nd(1590)) values that match values from fresh and weakly altered Pa-leoproterozoic metasedimentary and metagranitic rocks (-6.6 to -3.5) as well as from most felsic Hiltaba Suite intrusions and Gawler Range Volcanics in the eastern Gawler craton (ca. -6 to -4). These data are consistent with crustal sources for REE and, by implication, for associated copper in the barren and weakly mineralized prospects. Mineralization and alteration in these minor IOCG systems can be geochemically discriminated from the giant Olympic Dam deposit, where greater inputs of mantle-derived REE and other ore components are evident.
机译:东部的Gawler克拉通拥有澳大利亚首屈一指的含铀氧化铁铜金(IOCG)带,该带长超过500公里,位于奥林匹克Cu-Au-(U)省。除了奥林匹克大坝Cu-U-Au和突出的Hill Cu-Au矿床外,该省还拥有许多贫瘠且矿化程度较弱的IOCG矿床。新的热液矿物年代学数据加上宿主岩年龄的限制条件表明,该省三个地区的蚀变和相关的IOCG矿化作用形成于大约1570至1600 Ma之间。这种IOCG热液活动在时间上与Hiltaba Suite和Gawler Range火山岩的岩浆作用重叠。奥林匹克大坝和Prominent Hill地区中发生过准磁石早期磁铁矿蚀变的钛矿产生的U-Pb离子探针年龄分别为1576±5和1567±10 Ma。 Moonta-Wallaroo地区横穿磁铁矿-黑云母的脉中辉钼矿的Re-Os年龄分别为1574±6和1599±6 Ma。这些代表该地区IOCG变更组合的最低年龄。 1575±11 Ma的白云母〜(40)Ar /〜(39)Ar年龄在奥林匹克大坝区提供了最小的偏磁作用后期变质作用年龄。确定了来自奥林匹克大坝和Prominent Hill地区贫瘠和弱矿化的Cu-Au矿床和宿主岩中44个整岩样品的钕同位素组成。新的年代学框架使得能够在形成奥林匹克大坝沉积物(约1590 Ma)时比较两个IOCG地区的Nd同位素数据。五个磁铁矿中富磁铁矿的弱铜矿化蚀变产生的epsilon_(Nd(1590))值范围相对较窄,约为5.8至-4.1。富含赤铁矿和磁铁矿的蚀变通常产生相似的epsilon_(Nd(1590))值,该值与新鲜和弱蚀变的Pa-古生代变质沉积岩和后生粒岩(-6.6至-3.5)以及大多数长英质Hiltaba Suite侵入岩的值相匹配高勒克拉通东部的高勒山脉火山(约-6至-4)。这些数据与稀土的地壳来源一致,并暗示与在贫瘠和弱矿藏中伴生的铜有关。这些较小的IOCG系统中的矿化和蚀变可以通过地球化学方法与巨大的奥林匹克大坝矿床区分开,在那里明显有大量来自地幔的REE和其他矿石成分的输入。

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