Lithium in the Subsoil of Ukraine. Part 2. Mineralogy of Lithium-Bearing Objects: Quartz

IF 0.5 Q4 MINERALOGY Mineralogical Journal-Ukraine Pub Date : 2023-01-01 DOI:10.15407/mineraljournal.45.02.032
V. Pavlyshyn, N. M. Cherniyenko, I.M. Lunova
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Abstract

The second part of the publication "Lithium in the subsoil of Ukraine" highlights the mineralogy of rock-forming quartz from lithium-bearing objects of Ukraine: chamber pegmatites of the Korosten pluton, Perzhansky ore district, rare-metal granites and pegmatites of the Azov region, rare-metal pegmatites of the Inhulsky megablock, hydrothermalites of the Nagolny Ridge (Donetsk basin). In all these objects, quartz is characterized mostly from the point of view of its typomorphic value. The conclusion was as follows: the habit of quartz crystals has a typomorphic value, but cannot be described for all genetic situations by one simple scheme of the evolution of simple forms; so the main typomorphic information is "hidden" in the middle of quartz crystals. Point defects of its crystal structure are of greatest importance, primarily Al-O– centers and hydrogen defects, which are the most common in the mineral. They are best studied in crystals of chambered pegmatites and hydrothermal veins of the Nagolny ridge. The dependence of these defects on the action of external factors has been clarified. In particular, in chambered pegmatites, in contrast to crystal-bearing veins, a paradox occurs: with a decrease in the temperature of quartz growth, which is accompanied by an increase in the concentration (activity) of Li in the environment of mineralization, the number of lithium-hydrogen defects in the late zones of quartz decreases. It is assumed that in productive pegmatites this is due to the competing action of lithium micas — the main Li absorbers, the role of which increased with a decrease in the temperature of the solutions and an increase in their pH. In the quartz of rare-metal pegmatites, a high concentration of Al-Li centers has been established, which reaches a maximum in the quartz of the central zones and is therefore a criterion for the degree of differentiation of pegmatites. The luminescent properties of quartz from the petalite pegmatites of the Inhulsky megablock, caused by superimposed metasomatic processes and metamorphism, are unusual.
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乌克兰地下的锂。第2部分。含锂物体矿物学:石英
《乌克兰地下的锂》的第二部分重点介绍了乌克兰含锂物体中形成岩石的石英矿物学:Korosten岩体的室晶岩、Perzhansky矿区、亚速地区的稀有金属花岗岩和伟晶岩、Inhulsky大岩块的稀有金属伟晶岩、Nagolny Ridge(顿涅茨克盆地)的热液岩。在所有这些对象中,石英主要是从其标型价值的角度来表征的。结论是:石英晶体的习性具有标型价值,但不能用一种简单形式演化的简单方案来描述所有的遗传情况;因此,主要的标型信息“隐藏”在石英晶体的中间。其晶体结构的点缺陷是最重要的,主要是Al-O中心和氢缺陷,这是矿物中最常见的。它们在纳戈尔尼脊的室状伟晶岩晶体和热液脉中得到了最好的研究。阐明了这些缺陷对外部因素作用的依赖性。特别是在腔室伟晶岩中,与含晶脉相反,出现了一个悖论:随着石英生长温度的降低,伴随着矿化环境中Li浓度(活度)的增加,石英晚期的锂氢缺陷数量减少。假设在生产伟晶岩这是由于锂云母的竞争行动——李的主要吸收,作用的增加而降低的温度的解决方案和增加他们的博士石英的稀有金属伟晶岩,高浓度的铝锂中心已经建立,达到最大的石英的中央区域,因此伟晶岩的分化程度的标准。英赫尔斯基巨型岩中花瓣伟晶岩中的石英,由于交代作用和变质作用的叠加作用,其发光特性是不寻常的。
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CiteScore
0.70
自引率
0.00%
发文量
18
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