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首页> 外文期刊>Ore Geology Reviews: Journal for Comprehensive Studies of Ore Genesis and Ore Exploration >In-situ analyses of organic matter maturation heterogeneity of uranium-bearing carbonaceous debris within sandstones: A case study from the Ordos Basin in China
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In-situ analyses of organic matter maturation heterogeneity of uranium-bearing carbonaceous debris within sandstones: A case study from the Ordos Basin in China

机译:砂岩内铀含碳碎片有机质成熟异质性的原位分析:中国鄂尔多斯盆地的案例研究

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Carbonaceous debris (CD) within uranium reservoir sandstones of the Zhiluo Formation has been studied in the Shuanglong uranium deposit of the southern Ordos Basin, northern China. Organic matter maturation (OMM) heterogeneity of uranium-bearing CD was analyzed by means of in-situ methods with optical microscope, laser Raman microprobe and scanning electron microscopy (SEM) coupled with energy dispersive spectroscopy (EDS). The results show that the contents of vitrinite, inertinite and minerals are 70.49%, 6.54%, and 22.97%, respectively, and the content of exinite is 0, indicating that vitrinite is the major maceral. Vitrinite reflectance (VR) of uranium-bearing CD ranges from 0.65 %Ro to 2.45 %Ro with the maximum difference of 1.80 %Ro and the mean value of 1.85 VaRo, and the distributions of VR frequencies are discrete, indicating that OMM of uranium-bearing CD might be heterogeneous. Uranium minerals in uranium-bearing CD are mostly coffinite and pitchblende (2-10 mu m in diameter). For uranium-bearing vitrinite matrix in CD, VR, G peak shifts and uranium contents range from 1.14 %Ro to 1.84 %Ro, from 1586.5 cm(-1) to 1600.1 cm(-1) and from 0 to 6.0%, respectively, with the corresponding maximum difference of 0.71 %Ro, 13.6 cm(-1) and 6.0%, respectively, indicating that uranium-bearing vitrinite matrix may be of heterogeneity. Shift differences of G peak (Delta G) and full width at half maxima of G peak (G(FWHM)) are unevenly distributed in uranium-bearing vitrinite matrix, and Delta G and G(FWHM) decrease with increased VR, which shows that OMM of uranium-bearing vitrinite matrix is heterogeneous, and its variation is associated with uranium enrichment. The uneven distributions of uranium minerals cause compositional contrast variations of vitrinite matrix. And compositional contrast is divided into three hierarchies by using backscattered electron images of SEM combined with the distributions of uranium contents, i.e., I (free uranium), II (uranium content less than 2%) and M (uranium content more than 2%). With uranium content increasing, VR shows an obvious rise while Delta G displays a significant decline. Moreover, when close to the uranium-rich area, VR exponentially increases, which implies that OMM increases with the increased difference in compositional contrast. And compared with VR in I hierarchy of compositional contrast, VR in H hierarchy and III hierarchy at least increases by 0.1 %Ro and 0.2 %Ro, respectively, which demonstrates that compositional contrast variation of organic matrix is relevant to OMM heterogeneity, and the increased difference in compositional contrast corresponds to higher OMM zone. Such findings are instructive in variation prospecting of OMM, and then OMM abnormality could act as a guide for uranium deposits prospecting.
机译:Zhiluo Chillim砂岩内的碳质碎片(CD)在中国北方鄂尔多斯盆地南部的双龙铀矿床中研究。通过使用光学显微镜,激光拉曼微探针和扫描电子显微镜(SEM)与能量分散光谱(EDS)的原位方法分析含铀CD的有机物质成熟(OMM)异质性。结果表明,玻毛酸盐,惯性和矿物质的含量分别为70.49%,6.54%和22.97%,细小的含量为0,表明玻曲线是主要的丙烯酸酯。含铀的耐素反射率(VR)为0.65%RO至2.45%RO,最大差为1.80%RO和1.85 Varo的平均值,VR频率的分布是离散的,表明铀的OMM - 轴承CD可能是异质的。含铀CD中的铀矿物母主要是咖啡壶和凝结剂(直径为2-10μm)。对于CD,VR,G峰值偏移和铀含量的亚铀玻粒子基质,从1.14%RO为1.84%RO,分别为1586.5cm(-1)至1600.1cm(-1)和0〜6.0%,具有0.71%RO,13.6cm(-1)和6.0%的相应最大差异,表明含铀的vitriinate基质可能是异质性。 G峰(Delta g)的变化差异(δg)和g峰值半最大值的全宽(g(fwhm))不均匀地分布在铀玻衣石基质中,并且Δg和g(fwhm)随着VR的增加而降低,这表明了这一点含铀玻硫酸盐基质的OMM是异质的,其变异与铀浓缩有关。铀矿物质的不均匀分布导致VITRINITE基质的组成对比变化。通过使用铀含量的分布,即I(游离铀),II(铀含量小于2%)和M(铀含量超过2%),通过使用SEM的反向散射电子图像分为三个层次结构。 。随着铀含量的增加,VR显示明显的上升,而Delta G显示出显着下降。此外,当接近富含铀的地区时,VR指数增加,这意味着随着组成对比度的差异增加。与VR中的VR相比,在组成对比度的层次中,H层次和III层的VR分别至少增加0.1%RO和0.2%RO,这表明有机基质的组成对比变化与OMM异质性相关,并且增加组成对比度的差异对应于较高的OMM区。这种发现在奥姆的变异勘探方面是有效的,然后OMM异常可以作为铀矿床勘探的指南。

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