首页> 外文期刊>International Geology Review >Genesis of Early Cretaceous porphyrite-type iron deposits and related sub-volcanic rocks in the Ningwu Volcanic Basin, Middle-Lower Yangtze Metallogenic Belt, Southeast China
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Genesis of Early Cretaceous porphyrite-type iron deposits and related sub-volcanic rocks in the Ningwu Volcanic Basin, Middle-Lower Yangtze Metallogenic Belt, Southeast China

机译:宁武火山盆地早期白垩纪卟啉型铁矿床及相关亚火山岩的成因,中下长江矿床,东南部

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The Ningwu Volcanic Basin (NVB), located in the Lower Yangtze Metallogenic Belt, is characterized by the widespread occurrence of porphyritic iron-ore deposits. These deposits are clustered in three areas within the basin: the northern, central, and southern districts. Our study shows that the differences are existed in geochemistry of the rocks and the mineralization of the deposits among these three districts. Though results of Sr-Nd isotopes indicate that the parental magma of the sub-volcanic rocks in NVB were derived from EMI and EMII, however, the sub-volcanic rocks from the northern and southern districts have higher epsilon(Nd)(t) values (t=130Ma) and lower initial Sr-87/Sr-86 ratios (t=130Ma) than those from middle district. The rocks from northern and southern districts are similar to EMI in geochemistry; in contrast, rocks from the middle district are close to EMII. Meanwhile, the deposits from different districts show some differences in mineralization. The magnetites from the northern ore deposits are rich in Cu, Mo, Zn, and Mg and poor in Ca, Al, and Ti, which probably indicates that the magnetites from the northern ore deposits closer to hydrothermal genesis than to magmatic genesis, but the magnetites from the centre are closer to both magmatic and hydrothermal geneses. Based on the fact that a part of the sub-volcanic rocks is closer to EMI and another part to EMII in geochemistry, we suggested that the incorporation of the lower and upper crustal materials into the source regions of the sub-volcanic rocks has taken place by different manner and processes. Integrated with analysis of the tectonic evolution of NVB, we come to the conclusion that the sub-volcanic rocks have recorded the geochemical imprints of the subduction of Yangtze block towards North China block during Indosinian Period and the delamination of the lower crust of Yangtze block during Yanshanian Period.
机译:位于较低的长ZE成矿带中的宁武火山盆(NVB)的特征在于卟啉铁矿沉积物的广泛发生。这些存款集聚在盆地内的三个地区:北部,中央和南部地区。我们的研究表明,在岩石地球化学和这三个地区的矿床中的矿化中存在差异。尽管SR-ND同位素的结果表明,NVB中亚火山岩的父母岩浆源自EMI和EMII,但是,来自北部和南部地区的亚火山岩具有更高的ε(ND)(T)值(t = 130mA)和较低的初始SR-87 / SR-86比率(T = 130mA)比中间区的比率(T = 130mA)。来自北部和南部地区的岩石与地球化学中的EMI类似;相比之下,来自中间区的岩石靠近EMII。同时,来自不同地区的存款显示了矿化的一些差异。来自北部矿床的磁纤维富含Cu,Mo,Zn和Mg,Ca,Al和Ti差,这可能表明来自北部矿石沉积物更接近水热创世纪而不是岩浆创世纪,但是来自中心的磁磁性更接近岩浆和水热基因。基于亚火山岩的一部分更接近地球化学中的EMI和另一部分,建议将下层地壳材料纳入亚火山岩源区通过不同的方式和过程。随着分析NVB的构造演变,我们得出结论,亚火山岩岩石在印度斯岛期间录制了长江砌块俯冲的地球化学印记,以及长江街区下地壳的分层燕山时期。

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