复杂铬铁矿矿体形态及赋存条件预测(以极地乌拉尔Labogeyskoe-2矿区为例)

T. P. Morozova , E. V. Karelina, V. E. Markov
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引用次数: 0

摘要

背景。铬矿石局限于基性和超基性组成的层状块体。沃伊卡罗-辛因斯基地块是乌拉尔主要超基岩带的一部分。在该地块的超基性变质岩内部,特别是在构造薄片的边界发育超基性变质岩,构成了厚度急剧变化的带。在测量路线中,发现了矿石碎片散射的机械晕。在矿库研究中,挖沟打开了labogeysko -2铬铁矿矿体,该矿体属于Voikaro-Sinyinsky地块的Pogureysky地块。在赋存区,以黑土岩为主,发育体积小的薄条状粒状白云岩集合体和厚度小的单个白云岩体。铬矿石浸渍较密,粒度中至粗。矿石组成中铬尖晶石的含量占90-95%,间质中有不规则的蛇纹石、橄榄石和翠绿乌云母颗粒遗迹,以及单粒磁黄铁矿和磁铁矿(2-5%)。矿石是巨大的,经常是灾难性的。研究此矿床的经验可作为更有效地研究类似矿床的类比。的目标。对Labogeyskoye-2矿体的赋存状态进行评价,将所获得的信息和研究方法应用于类似的Levopayersk矿体的研究,有助于节省设计时间和资金,提高勘探效率。材料和方法。在拍摄过程中,发现了矿石碎片散射的机械光晕。在1966年塌方研究中,通过了KM22-KM25沟,KM24沟发现了Labogeyskoye-2铬铁矿矿体。2013年,在Labogeyskoye-2地质勘查过程中,通过了3个沟(K50-K52),并进行了2011-2012年稀土矿物、地球化学和晶体化学研究所的详细地磁研究。Levopayerskoe矿体可能是24个矿体中与Labogeyskoye-2矿体最相似的矿体,并根据采矿和钻井作业的结果编制了地质规划和计算剖面。与Labogeyskoye-2矿床最相似的可能是Levopayerskoye矿体。因此,在labogeysko -2矿区开展进一步的地质和勘探工作时,应考虑到类似的Levopayerskoe矿体的赋存条件。
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Forecast of the morphology and occurrence conditions of complex chromite ore bodies (on example of Labogeyskoe-2 site, Polar Urals)
Background. Chromium ores are confined to stratified massifs of basic and ultra-basic composition. The Voikaro-Sinyinsky massif is part of the main hyperbasite belt of the Urals. Inside the hyperbasites of this massif, at the boundaries of tectonic flakes in particular, ultra-basic metamorphites are developed, constituting the zones of sharply variable thickness. During survey routes, a mechanical halo of scattering of ore fragments was found. When studying the ore stockpile, ditches opened the Labogeyskoe-2 chromite ore body, which belongs to the Pogureysky block of the Voikaro-Sinyinsky massif. In the ore occurrence area, harzburgites are predominantly developed with thin striped dunite aggregates in a small volume and individual dunite bodies of low thickness. Chromium ores are densely impregnated, medium- to coarse-grained. The amount of chromospinelides in the composition of ores сonstitutes 90—95%, the serpentine of irregular shape as well as the relics of olivine and emerald-green uvorovite grains, along with the single grains of pyrrhotite and magnetite are found in the interstitia (2—5%). Ores are massive, often cataclazed. The experience of studying this ore occurrence can serve as an analogue for a more effective study of similar ore occurrences. Aim. Evaluation of the Labogeyskoye-2 ore occurrence for the application of the information obtained and methods of its study in the study of a similar Levopayersk ore body, which will help save time and finances in the design and more efficient exploration.Materials and methods. During the filming routes, a mechanical halo of scattering of ore fragments was detected. During the study of the ore collapse in 1966, the KM22—KM25 ditches were passed and the Labogeyskoye-2 chromite ore body was uncovered by the KM24 ditch. In 2013, during geological exploration at Labogeyskoye-2, 3 ditches (K50—K52) were passed and detailed gravimagnetic studies of Institute of Mineralogy, Geochemistry and Crystal Chemistry of Rare Elements in 2011—2012 were performed.Results. The Levopayerskoe ore body is probably the closest analogue of the Labogeyskoye-2 ore occurrence among the 24 ore occurrences, for which geological plans and calculation sections were compiled based on the results of mining and drilling operations.Conclusions. The closest analogue of the Labogeyskoye-2 ore occurrence is probably the Levopayerskoye ore body. Therefore, further geological and exploration work at the Labogeyskoe-2 site should be carried out taking into account the conditions of occurrence of the similar Levopayerskoe ore body.
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