首页> 外文期刊>Mineralogical Magazine >Cu-Fe-U phosphate mineralization of the Hagendorf-Pleystein pegmatite province, Germany: with special reference to laser-ablation inductively-coupled plasma mass spectrometry (LA-ICP-MS) of limonite-cored torbernite
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Cu-Fe-U phosphate mineralization of the Hagendorf-Pleystein pegmatite province, Germany: with special reference to laser-ablation inductively-coupled plasma mass spectrometry (LA-ICP-MS) of limonite-cored torbernite

机译:德国Hagendorf-Pleystein Pegmatite省的Cu-Fe-U磷酸盐矿化:特别参考激光烧蚀电感耦合等离子体质谱(La-ICP-MS)的褐铁矿 - 芯片Torbernite

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Iron played a decisive part when uranyl phosphates ('yellow U ores') formed during supergene alteration of the aplitic and pegmatitic rocks of the Hagendorf Pegmatite Province. Three different supergene U mineral successions, referred to in the current study as pathways I to III, were identified. Pathway I began with the release of PO_4~(2-) by the dissolution of rockbridgeite and ended after short-distance transport under alkaline reducing or slightly acidic oxidizing conditions in the precipitation of bassetite. Pathway II is an advanced form of pathway I that did not stop with the precipitation of bassetite, but progressed by acidic Cu-bearing meteoric waters under oxidizing conditions up to the torbernite precipitation stage. Minor amounts of Mn or Ca may have led to a deviation from the normal pathway into the stability fields of lehnerite or autunite, respectively, both of which may occur either as solid solution series or in a layered intergrowth with torbernite. Limonite-cored torbernite has been described for the first time and only exists in pathway III. Unlike its counterpart pathways I and II, which appeared at the end of a complex polystage element recycling process of secondary Fe phosphates under fluctuating redox and pH conditions, limonite-cored torbernite resulted from a monostage transformation of primary 'black Fe-U ore minerals' under strongly oxidizing conditions and short-distance element transport. These restricted physicochemical conditions caused the immediate stabilization of the Fe-U-P system and by doing so the U-Pb ratios of the black ore progenitor were well preserved in the limonitic core. Torbernite was analysed for U, Th and Pb isotopes by laser ablation inductively coupled plasma mass spectrometry techniques. For one domain the data yielded a formation age of 4.55 + - 0.02 Ma, which corresponds to Miocene-Pliocene weathering and geomorpho-logical processes in the study area. A second domain gave a discordia with an upper intercept age of 549 + - 12 Ma, interpreted to represent a thermal event at the Precambrian-Cambrian boundary. Ferrocolumbite is found exclusively in the mineralization of pathway III. Due to the proximity of ferrocolumbite to torbernite, limonite-cored torbernite probably inherited the 549 Ma age from ferrocolumbite during supergene alteration.
机译:当磷酸甲苯甲板普麦粉岛省甲岩和蓬粉岩的叠冠改变期间形成的亚烷基酯('黄色U ORES')时,铁在磷酸酯('黄色u矿石')上发挥了决定性的部分。鉴定了三种不同的超级U矿物演替,称为途径I至III的途径。途径我开始通过摇滚桥岩溶解释放Po_4〜(2-),并在碱性还原下的短距离输送后结束,或在嗜血钛沉淀下微酸性氧化条件。途径II是一种先进的途径形式,其达到麻醉骨沉淀,但在氧化条件下通过氧化条件的酸性Cu - 含气水进行进展至多伯氏沉淀阶段。少量的Mn或Ca可以使偏离正常途径进入Lehnerite或Autunite的稳定性场,这两者都可以作为固体溶液系列或用多莓的层状晶体形成。已经首次描述了褐铁矿 - 核心托贝特,并且只存在于途径III中。与其对应途径I和II不同,该途径I和II出现在波动氧化还原和pH条件下的二次Fe磷酸盐的复杂多孔元素再循环过程的结束时,褐铁矿芯片由初级'黑Fe-U矿石矿物的单静态转化引发在强氧化条件下和短距离元件运输下。这些受限制的物理化学病症导致Fe-U-P系统的立即稳定,通过这样做,因此在褐核核心中保存了黑矿祖的U-Pb比率。通过激光烧蚀电感耦合等离子体质谱技术对U,TH和Pb同位素进行分析Torbernite。对于一个域,数据产生了4.55±0.02 mA的形成年龄,其对应于研究区域中的中烯 - 全茂瓦尔明和地质逻辑过程。第二个域名给出了一个具有549 + - 12 mA的上截止时代的声明,解释为在Predambrian-Cambrian边界处表示热事件。 Ferrocolumbite专门发现在途径III的矿化中。由于Ferrocumbite对Torbernite,Limonite-Cored Torbernite可能继承了在叠加期间的Ferroctumbite的549 mA龄。

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