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Super-Enrichment of Dispersed Elements and Associated Ore Deposits

机译:分散元素和相关矿床的超富集

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Dispersed elements do not always occur as associated elements in the ore deposits of other elements. Instead, they can constitute independent ore deposits. The focus of this paper is placed on the mechanism of super-enrichment of the four dispersed elements TI, Ge, Se, and Te under favorable geological conditions, where their enrichment coefficients are so high that their abundances can reach n×103-n×104, sometimes even up to n×106 times (e. g. Te) those of the crust. As a result, they can form their independent ore deposits. Studies have shown that such independent ore deposits are mostly distributed in the southwestern part of China, most of which belong to low-temperature ore deposits, ranging in age from Yanshanian to Himalayan(Cretaceous to Cenozoic), with a significant time gap with the host strata. Moreover, this paper also deals with the existing forms (as independent minerals, occurring isomorphously and being adsorbed) of the dispersed elements in those independent ore deposits. The discovery of independent ore deposits of dispersed elements is a great breakthrough in the study of dispersed element metallogenesis.
机译:分散元素并不总是作为关联元素出现在其他元素的矿床中。相反,它们可以构成独立的矿床。本文的重点放在在有利的地质条件下四种分散元素TI,Ge,Se和Te的超富集机理,这些元素的富集系数非常高,其丰度可以达到n×103-n× 104,有时甚至高达地壳的n×106倍(例如Te)。结果,他们可以形成自己的独立矿床。研究表明,这种独立的矿床大多分布在中国西南部,大部分属于低温矿床,年龄范围从燕山期到喜马拉雅期(白垩纪到新生代),与宿主之间存在明显的时间间隔。地层。而且,本文还讨论了那些独立矿床中分散元素的现有形式(作为独立的矿物,同形地发生并被吸附)。分散元素独立矿床的发现是分散元素成矿研究的重大突破。

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