G'/> LA-ICP-MS titanite U-Pb dating and mineral chemistry of the Luohe magnetite-apatite (MA)-type deposit in the Lu-Zong volcanic basin, Eastern China
首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >LA-ICP-MS titanite U-Pb dating and mineral chemistry of the Luohe magnetite-apatite (MA)-type deposit in the Lu-Zong volcanic basin, Eastern China
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LA-ICP-MS titanite U-Pb dating and mineral chemistry of the Luohe magnetite-apatite (MA)-type deposit in the Lu-Zong volcanic basin, Eastern China

机译:La-ICP-MS Titanite U-PB型号U-PB型号和矿物化学的罗氏磁铁矿 - 磷灰石(MA) - 在中国东部陆宗火山盆地矿床矿床

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Graphical abstractDisplay OmittedAbstractThe Luohe Fe deposit is the largest magnetite-apatite (MA)-type deposit in the Middle-Lower Yangtze River Valley Metallogenic Belt (MLYB) (around 1?Gt Fe ore resource). The main orebody is hosted by volcanic rocks, and widespread titanite mineralization is developed in the footwall of the shallow ore bodies, and in the hanging wall of the deep ore bodies. Trace element chemistry of the well-crystallized hydrothermal titanite from both deep and shallow ore bodies indicates coupled substitution of (Al, Fe)3+?+?(F, OH)?for Ti4+?+?O2?, and the addition of elements such as Zr, Nb and REEs. Titanite Zr-thermometry yielded a mineralization temperature of ca. 700?°C, suggesting that the Luohe magnetite-apatite deposit was formed at a higher temperature than typical Fe skarn deposits in the metallogenic belt. The high ore-forming temperature may have been a key factor in Ti migration. The distinct LREE enrichment, the relatively high total REE concentrations, and the marked negative Eu anomalies all suggest that the Luohe titanite may have crystallized before apatite and epidote in a high-temperature hydrothermal environment. Variation in the negative Eu anomalies suggests the ore fluid oxygen fugacity increased from deep to shallow levels. Our study suggests that the Th/U ratio is not an efficient igneous vs. hydrothermal titanite discriminator for high-temperature titanite. LA-ICP-MS titanite U-Pb dating of the shallow and deep orebodies yielded ages of 130.0?±?0.9?Ma and 129.1?±?0.8?Ma to 129.7?±?0.8?Ma, consistent with the age of the deep-seated diorite in the area. We propose that the shallow- and deep-level orebodies at Luohe were deposited from the same mineralizing system and mineralization was closely related to the deep-seated diorite.]]>
机译:<![cdata [ 图形摘要 显示省略 抽象 漯河Fe矿床是中下长江谷成矿皮带(Mlyb)中最大的磁铁矿(MA)型矿床(大约1?GT Fe Ore资源)。主矿体由火山岩枢经托管,并且广泛的矿石矿化是在浅矿石的脚壁上开发的,并且在深矿体的悬挂墙壁中开发。来自深层和浅矿体的孔结晶水热二岩的痕量元素化学表明(Al,Fe) 3 + ?+?(f,哦) for ti 4 + ?+?o 2?,以及添加元素,如Zr,Nb和Rees。 Titanite Zr-Thermetry产生了CA的矿化温度。 700°C,表明漯河磁铁矿 - 磷灰石沉积物在较高的温度下比成矿带中的典型Fe Skarn沉积物形成。高矿石形成温度可能是Ti迁移的关键因素。不同的嗜好富集,相对较高的总重量浓度,标记的阴性欧盟异常均表明漯河钛矿可能在高温水热环境中在磷灰石和肝脏之前结晶。负面欧盟异常的变异表明矿石流体氧气逃逸性从深度增加到浅水平。我们的研究表明,Th / U比不是高温二钛矿的高效导液与水热二氧化钛鉴别器。 La-ICP-MS Titanite U-PB浅层和深矿体的约会,产生130.0°(±0.9Ω0.9°,129.1?±0.8?ma至129.7?0.8?0.8?ma,与深度的年龄一致 - 在该地区的潜水机构。我们提出漯河的浅层和深层矿体沉积在相同的矿化系统中,矿化与深层的Diorite密切相关。 ]]>

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