首页> 外文期刊>Journal of Asian earth sciences >Chemical and boron isotopic compositions of tourmaline from the Paleoproterozoic Houxianyu borate deposit, NE China: Implications for the origin of borate deposit
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Chemical and boron isotopic compositions of tourmaline from the Paleoproterozoic Houxianyu borate deposit, NE China: Implications for the origin of borate deposit

机译:中国东北元古生界后仙屿硼酸盐矿床中电气石的化学和硼同位素组成:对硼酸盐矿床成因的启示

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The Houxianyu borate deposit in northeastern China is one of the largest boron sources of China, hosted mainly in the Paleoproterozoic meta-volcanic and sedimentary rocks (known as the Liaohe Group) that are characterized by high boron concentrations. The borate ore-body has intimate spatial relationship with the Mg-rich carbonates/silicates of the Group, with fine-grained gneisses (meta-felsic volcanic rocks) as main country rocks. The presence of abundant tourmalinites and tourmaline-rich quartz veins in the borate orebody provides an opportunity to study the origin of boron, the nature of ore-forming fluids, and possible mineralization mechanism. We report the chemical and boron isotopic compositions of tourmalines from the tourmaline-rich rocks in the borate deposit and from the tourmaline-bearing finegrained gneisses. Tourmalines from the fine-grained gneisses are chemically homogeneous, showing relatively high Fe and Na and low Mg, with δ~(11)B values in a narrow range from +1.22‰ to +2.63‰. Tourmalines from the tourmaline-rich rocks, however, commonly show compositional zoning, with an irregular detrital core and a euhedral overgrowth, and have significantly higher Mg, REE (and more pronounced positive Eu anomalies), V (229-1852 ppm) and Sr (208-1191 ppm) than those from the fine-grained gneisses. They show varied B isotope values ranging from +4.51‰ to +12.43‰, which plot intermediate between those of the terrigenous sediments and arc rocks with low boron isotope values (as represented by the δ~(11)B = +1.22‰ to +2.63‰ of the fine-grained gneisses of this study) and those of marine carbonates and evaporates with high boron isotope values. In addition, the rim of the zoned tourmaline shows notably higher Mg, Ti, V, Sn, and Pb, and REE (particularly LREEs), but lower Fe, Co, Cr, Ni, Zn, Mn, and lower δ~(11)B values than the core. These data suggest that (1) the sources of boron of the borate ore-body are mainly the Paleoproterozoic meta-volcanic and sedimentary rocks, and (2) the ore-forming fluids should be the high temperature metamorphic fluids related to the amphibolite-facies metamorphism of the Paleoproterozoic foldbelt, which leach boron from the boron-rich meta-volcanic and sedimentary rocks of the Liaohe Group, and the boron-rich metamorphic fluids subsequently interacted with the marine Mg-rich carbonates and evaporates, forming borate deposit, the tourmaline overgrowth in the rim and the tourmaline-rich rocks.
机译:中国东北地区的后仙yu硼酸盐矿床是中国最大的硼矿床之一,主要储藏在以高硼含量为特征的古元古代中期火山岩和沉积岩(称为辽河群)中。硼酸盐矿体与该组富含Mg的碳酸盐/硅酸盐有密切的空间关系,其中细粒片麻岩(元-长石质火山岩)为主要的乡村岩石。硼酸盐矿体中存在大量的电气石和富含电气石的石英脉,为研究硼的起源,成矿流体的性质以及可能的矿化机理提供了机会。我们从硼酸盐矿床中富含电气石的岩石和含电气石的细粒片麻岩中报告了电气石的化学和硼同位素组成。细粒片麻岩中的电气石在化学上是均质的,显示出较高的Fe和Na和低的Mg,δ〜(11)B值在+ 1.22‰至+ 2.63‰的窄范围内。然而,富含电气石的岩石中的电气石通常表现出成分分区带,碎屑核不规则和正面体过度生长,并且具有较高的Mg,REE(和更明显的正Eu异常),V(229-1852 ppm)和Sr (208-1191 ppm)比来自细颗粒片麻岩的那些。它们显示出的B同位素值在+ 4.51‰至+ 12.43‰之间变化,介于介于中等沉积物和低硼同位素值的弧岩之间(如δ〜(11)B = + 1.22‰至+本研究的细粒片麻岩的2.63‰,以及具有高硼同位素值的海洋碳酸盐和蒸发的片麻片。此外,电气石带的边缘显示出较高的Mg,Ti,V,Sn和Pb以及REE(特别是LREEs),但是较低的Fe,Co,Cr,Ni,Zn,Mn和δ〜(11 )B值比核心值高。这些数据表明(1)硼酸盐矿体中硼的来源主要是古元古代中期火山岩和沉积岩,(2)成矿流体应为与闪石相相关的高温变质流体。古元古代褶皱带的变质作用,从辽河群的富硼变质火山岩和沉积岩中浸出硼,富硼变质液随后与海洋富镁碳酸盐相互作用并蒸发,形成硼酸盐矿床,电气石边缘和电气石丰富的岩石上的植物过度生长。

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