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首页> 外文期刊>Precambrian Research >Conflicting zircon vs. titanite U-Pb age systematics and the deposition of the host volcanic sequence to Kiruna -type and IOCG deposits in northern Sweden, Fennoscandian shield
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Conflicting zircon vs. titanite U-Pb age systematics and the deposition of the host volcanic sequence to Kiruna -type and IOCG deposits in northern Sweden, Fennoscandian shield

机译:冲突锆石与钛铁矿U-PB年龄系统和宿主火山序列的沉积到瑞典北部的Kiruna -Type和IoCG矿床

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摘要

The Northern Norrbotten region, and in particular the Kiruna area, hosts a number of large apatite iron oxide deposits (e.g. the huge Kiirunavaara ore) of significant economic importance. Age data from rock lithologies hosting these ores, represented by metamorphosed rocks of the Porphyrite and Kiirunavaara Groups, are complex to interpret. This is illustrated by (LA-ICP-MS) data for titanite, and to some extent for rutile, which scatter considerably yielding ages within a span from ca. 2.1 Ga to 1.7 Ga. These analysed hydrothermal minerals, characterized by complex BSE images revealing darker and brighter zones, are located in ore zones and associated with e.g. strong scapolitisation, albitisation and actinolitisation. Previous (TIMS) zircon ages of host rocks, on the other hand, define a more narrower age interval between ca. 1900 and 1870 Ma, and this is supported by new U-Pb zircon results presented here. Furthermore, one coherent set of SIMS data for titanite from the Luossavaara ore favour that crystallization took place at ca 1.88 Ga, although laser ICP data from the same locality are much more complex. An implication arising from published pre-1.9 Ga laser ablation ages for titanites is that the emplacement of host rocks started already at around 2.1 Ga. As the depositional time of these rocks is crucial for the understanding of the overall crustal formation in northern Norrbotten, additional rocks were selected for age dating. New zircon age data (LA-ICP-MS and SIMS) give support to a scenario where host rocks to ores started to develop at around 1900 Ma and this calls for a re-evaluation of published LA-ICP-MS data of hydrothermal mineral phases.
机译:Northern Norrbotten地区,特别是Kiruna地区,举办了许多大型磷灰石氧化铁沉积物(例如,巨大的Kiirunavaara Oree)具有重要的经济意义。来自托管这些矿石的岩石岩性的年龄数据,由卟啉和kiirunavaara群体的变质岩石代表,是复杂的解释。这由(La-ICP-MS)数据用于钛铁矿,以及金红石的一定程度,其在跨越CA的跨度范围内散射。 2.1 Ga至1.7 Ga。这些分析的水热矿物质,其特征在于透露较深和更亮的区域,位于矿石区和例如与例如矿石区相关联。强硬胶质炎,白性化和辐射性。另一方面,以前(TIMS)ZIRCON ZIRCON ZIRCON AGES,另一方面,在CA之间定义更窄的年龄间隔。 1900和1870 MA,此处提供的新U-PB锆石结果支持。此外,来自Luossavaara矿石的二氧化钛的一个连贯的SIMS数据,其中结晶在CA 1.88 GA处发生,尽管来自同一地点的激光ICP数据更复杂。发布的钛铁矿的发布前的1.9族激光消融年龄产生的含义是宿主岩石的施加已经开始于2.1 Ga左右。由于这些岩石的沉积时间对于了解Norrbotten北部的整体地壳形成至关重要岩石被选为年龄约会。新的锆石年龄数据(La-ICP-MS和SIMS)向奥雷斯港口摇滚左右发展的情况提供支持,并且这次要求对热热矿物阶段的已发表的La-ICP-MS数据进行重新评估。

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