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Problems of ontogeny and phylogeny of ores

机译:矿石的个体发育和系统发育问题

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The ontogeny and phylogeny of ore-bearing elements and minerals are closely related to sedimentation, magmatism, and metamorphism. Previously, this problem was considered in works by D.P. Grigor'ev, D.V. Rundkvist, and other geologists. By ontogeny, we mean the "fate" of elements and minerals, and by phylogeny, the development of mineral associations and deposits. This article considers the history of ore ontogeny and phylogeny studies by the example of ore deposits. The example of gold and silver demonstrates the diversity of ontogeny and phylogeny forms most illustratively because accumulations of these minerals, different in terms of scale, were registered in all ore "families"aEuro"jaspillitic, sulfidic, and polymetallic. It is rather difficult to determine the boundaries of the above families because they form in different physicochemical conditions. Ore formational analysis is a necessary initial operation to study regularities in the distribution of ore matter, as well as to understand the ontogeny and phylogeny of elements and minerals in the earth's crust. The elaboration of the theory of ontogeny and phylogeny, as well as the identification of regularities of the intensity and extensity of ore formation, will make it possible to create new multidimensional classifications of ore deposits for the purposes of theoretical and practical analysis.
机译:含矿元素和矿物的发育和系统发育与沉积,岩浆作用和变质作用密切相关。以前,D.P。的作品曾考虑过此问题。格里戈列夫(D.V.) Rundkvist和其他地质学家。通过本体论,我们指的是元素和矿物质的“命运”,而通过系统发育论,我们指的是矿物缔合和矿床的发展。本文以矿床为例,探讨了矿石发生史和系统发育研究的历史。金和银的例子最能说明个体发育和系统发育形式的多样性,因为这些矿物的堆积,在规模上各不相同,已记录在欧亚的所有铁矿石,硫化物和多金属矿石中。确定上述族群的边界,因为它们是在不同的理化条件下形成的,矿石形成分析是研究矿石物质分布规律以及了解地壳中元素和矿物的发生和系统发育的必要的初始操作。对个体发育和系统发育理论的阐述,以及对矿石形成强度和延伸规律的确定,将有可能为理论和实践分析的目的创建新的矿床多维分类。

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