首页> 外文期刊>Journal of South American earth sciences >Petrography and geochemistry of sands from the Chachalacas and Veracruz beach areas, western Gulf of Mexico, Mexico: Constraints on provenance and tectonic setting
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Petrography and geochemistry of sands from the Chachalacas and Veracruz beach areas, western Gulf of Mexico, Mexico: Constraints on provenance and tectonic setting

机译:墨西哥西部墨西哥湾Chachalacas和Veracruz海滩地区的沙子的岩石学和地球化学:物源和构造环境的限制

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Compositional and geochemical analyses of sands collected from the Chachalacas (CHA) and Veracruz (VER) beach areas along the western Gulf of Mexico were studied to determine the provenance and tectonic setting of the source region. The modal composition showed that the proportion of quartz (Q) is lower in CHA than in VER sands. The average quartz-feldspar-lithic fragment (QFL) ratios for the CHA and VER sands are Q(75)F(8)L(17) and Q(86)F(4)L(10), respectively. The X-ray diffractometer (XRD) and Scanning Electron Microscope equipped with EDAX spectrometer (SEM-EDS) data revealed that the CHA sands were abundant in heavy minerals like magnetite, ilmenite, and zircon. The rare earth element concentration (REE) is higher in CHA than in VER sands, which is due to the concentration of heavy minerals in CHA sands. The weathering indices such as chemical index of alteration (CIA), plagioclase index of alteration, and A-CN-K (A = Al2O3, CN = CaO* + Na2O, K = K2O) plot suggested that the intensity of weathering in the source area was low to moderate. The index of chemical variability (ICV) for the CHA (similar to 1.9-3.0) and VER (similar to 0.82-133) sands indicated that the compositional maturity was higher for the VER sands. The concentrations of Co, Cr, Ni, and V are lower in VER sands than in CHA sands, indicating that the CHA sands were derived from the intermediate source rocks. Provenance modelling revealed that the CHA sands were associated with the mixture of basalt, andesite, dacite, and trachyandesite in the ratio of 5:20:25:50. The VER sands were best matched with a mixture having 75-90% dacite and 25-10% andesite compositions. The provenance difference between the two beach areas suggested that long-shore current play a less significant role in mixing and homogenization of sands. The multidimensional tectonic discrimination diagrams revealed rift and collision settings for the VER and CHA beach areas, respectively, which is consistent with the general geology of the study areas. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了从墨西哥西部墨西哥湾Chachalacas(CHA)和Veracruz(VER)海滩地区收集的砂的成分和地球化学分析,以确定源区的物源和构造环境。模态组成表明,CHA中的石英(Q)比例比VER砂中的低。 CHA和VER砂的平均石英-长石-碎屑(QFL)比分别为Q(75)F(8)L(17)和Q(86)F(4)L(10)。 X射线衍射仪(XRD)和配备EDAX光谱仪(SEM-EDS)的扫描电子显微镜数据表明,CHA砂富含磁铁矿,钛铁矿和锆石等重矿物。 CHA中的稀土元素浓度(REE)高于VER砂土,这是由于CHA砂土中重矿物的浓度所致。风化指数,如化学变化指数(CIA),斜长石蚀变指数和A-CN-K(A = Al2O3,CN = CaO * + Na2O,K = K2O)图表明源中的风化强度区域低至中等。 CHA(类似于1.9-3.0)和VER(类似于0.82-133)砂的化学变异性指数(ICV)表明,VER砂的成分成熟度更高。 VER砂中Co,Cr,Ni和V的浓度低于CHA砂,表明CHA砂是从中间烃源岩中提取的。物源模型显示,CHA砂与玄武岩,安山岩,钠铁矿和砂铁矿的混合比例为5:20:25:50。 VER砂最适合与75-90%的辉晶和25-10%的安山岩组成的混合物。两个海滩地区之间的物源差异表明,近岸海流在沙子的混合和均质化中的作用较小。多维构造判别图分别显示了VER和CHA海滩地区的裂谷和碰撞环境,这与研究区域的总体地质情况是一致的。 (C)2015 Elsevier Ltd.保留所有权利。

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