FEATURES OF THE DISTRIBUTION OF GLAUKONITE IN THE DNIEPER-DONETS DEPRESSION. ARTICLE 1. PALEOZOIC-MESOZOIC SEDIMENTS

A. Baran
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Abstract

content of microelements, such as zinc, manganese, molybdenum, copper, cobalt, boron, which stimulate growth and ensure the healthy functioning of plants. Therefore, the most widespread and promising may be the use of glauconite in agriculture, primarily as potash fertilizer and ameliorant. It is one of the most common minerals of the pre- Cenozoic sedimentary stratum of the Dnieper- Donets depression. There are no significant concentrations of glauconite in the Paleozoic sediments. In Mesozoic sediments, the mineral is present in the formations of all three systems. Among sediments of the Jurassic system, high concentrations of the mineral are observed in the Kimmeridgian layer. Among the sediments of the Cretaceous system, significant concentrations of glauconite are present in the formations of the Albian and Cenomanian layers. On the Erathem scale, an increase in the content and mass of glauconite from the Paleozoic to the Mesozoic is observed. On the scale of the systems, an increase in the bulk mass of glauconite is observed in the direction of the Perm → Triassic → Jurassic → Cretaceous. At the lithological level, the most promising types of rocks of all layers are sands, less commonly silts, clays, and sandstones. At the stratigraphic level, the Cenomanian sediments are the most promising. In the horizontal plane, the most promising are the pit edge parts of the depression. In general, the wide distribution of promising layers of the Mesozoic indicates the unlimited mineralogenic potential of the depression on the glauconite raw materials. But the extraction from these sediments in the near future makes it difficult to deeply occur, insufficient capacity for such depths, location mainly under arable land or settlements. With the improvement of depth mining technologies, the use of this resource in the more distant future cannot be ruled out. This primarily concerns the joint manifestations of phosphorites and glauconite in the Mesozoic sediments.
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第聂伯-顿涅茨凹陷海绿石的分布特征。第一条。PALEOZOIC-MESOZOIC沉积物
微量元素的含量,如锌、锰、钼、铜、钴、硼,这些元素刺激植物生长,确保植物的健康功能。因此,最广泛和最有前途的可能是海绿石在农业上的应用,主要是作为钾肥和改良剂。它是第聂伯河-顿涅茨凹陷前新生代沉积层中最常见的矿物之一。古生代沉积物中没有明显的海绿石。在中生代沉积物中,这种矿物存在于这三个体系的地层中。在侏罗纪体系的沉积物中,在基默里纪地层中观察到高浓度的矿物。在白垩纪体系的沉积物中,海绿石在阿尔比尼亚和塞诺曼尼亚地层中含量显著。在Erathem尺度上,从古生代到中生代海绿石的含量和质量均有所增加。在体系尺度上,海绿石的总体质量呈二叠系→三叠系→侏罗纪→白垩纪的增加趋势。在岩性水平上,所有地层中最有希望的岩石类型是砂,较不常见的是粉砂、粘土和砂岩。在地层水平上,塞诺曼尼亚沉积物是最有希望的。在水平面上,最有希望的是凹陷的坑边部分。总的来说,中生代远景层的广泛分布表明坳陷对海绿石原料具有无限的成矿潜力。但这些沉积物的提取在不久的将来使其难以深入发生,这种深度的能力不足,地点主要在可耕地或定居点之下。随着深部开采技术的提高,不排除在更遥远的将来利用这种资源。这主要涉及到中生代沉积物中磷矿石和海绿石的联合表现。
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