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首页> 外文期刊>Mineralium deposita >Colloidal origin of colloform-banded textures in the Paleogene low-sulfidation Khan Krum gold deposit, SE Bulgaria
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Colloidal origin of colloform-banded textures in the Paleogene low-sulfidation Khan Krum gold deposit, SE Bulgaria

机译:保加利亚东南部古近系低硫化作用的Khan Krum金矿床中带状带状纹理的胶体起源

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摘要

We studied both colloform-banded macro- and micro-textures as well as the composition of electrum from the epithermal Khan Krum (or Ada Tepe) gold deposit, Bulgaria (5 Mt at 5.1 g/t Au+2.7 g/t Ag) using optical and electron scanning microscopy, vibration spectroscopy, electron micro-probe analysis, and LA-ICP-MS. The individual textural bands differ in grain size, porosity, quartz-to-adularia ratio, and abundance of electrum, pyrite, and scattered dusty opaque micro-inclusions. The individual macro-bands have formed successively via intermittent fault dilation from episodic hydrothermal pulses, as a result of regional extension and most likely originated from colloidal solutions formed by vigorous boiling during rapid pressure drop and supersaturation with respect to amorphous silica in a closed or quasi-closed hydrothermal system. Electrum is highly concentrated in the finest quartz-adularia colloform micro-bands, which fill joints with widths up to 1-2 mm. We presume that the joints have filled in with more concentrated colloidal solutions than those in the macro-bands, most likely due to extreme boiling of fluids in open or quasi-open hydrothermal system. Electrum in the micro-bands forms transverse dendrite- and chain-like aggregates as well as oval clots along the banding, all of globular morphology.
机译:我们使用以下方法研究了带状带的宏观和微观纹理,以及保加利亚超热Khan Krum(或Ada Tepe)金矿(5 Mt,5.1 g / t Au + 2.7 g / t Ag)的电子成分。光学和电子扫描显微镜,振动光谱,电子显微探针分析以及LA-ICP-MS。各个纹理带在晶粒尺寸,孔隙率,石英与金刚砂之比以及大量的电子,黄铁矿和分散的尘土不透明微夹杂物方面有所不同。由于区域扩展,个别的宏带是通过间歇性断层扩张从间歇性热液脉冲中连续形成的,这是区域扩展的结果,并且最有可能是由于在快速压降和相对于无定形二氧化硅在封闭或准饱和状态下过饱和而剧烈沸腾而形成的胶体溶液。密闭水热系统。 Electrum高度集中在最细的石英-adularia colloform微带中,该微带填充了宽度最大为1-2 mm的接头。我们认为,接头处的胶体溶液比宏观带中的胶体溶液更浓,这很可能是由于开放式或准开放式热液系统中流体的极度沸腾所致。微带中的电子形成横向的枝状和链状聚集体,以及沿着带状的椭圆形血凝块,呈球形。

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