Specific Features of Hydrothermal and Hypergene Alterations of Micaceous Kimberlites

N. N. Zinchuk
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Abstract

Basing on complex research of accessory and rock-forming minerals of kimberlite rocks of pipes Udachnaya, Nyurbinskaya and Botuobinskaya, the processes of secondary mineral formation have been determined in details. The products of kimberlite rocks alteration have been studied, the scheme of initial minerals transformation has been constructed, typomorphic features of final weathering products have been revealed, the profile of kimberlite rocks’ weathering crust of Nakyn field has been established. It was shown that saponite in Yakutian kimberlite pipes has a hydrothermal origin that make it possible to use it during prospecting of kimberlite bodies under certain conditions. Complex comparative investigation of ancient weathering crusts of rocks of various chemical and mineralogical composition allowed tracing specific features of their hypergene alteration and typomorphic indications of eluvial products that is very important for solving a number of applied tasks. It is possible to differentiate at the structural level the same varieties of primary minerals in redeposited weathering products of various rocks, as well as identify secondary stratified silicates, differing in the last case either by character of octahedral positions’ occupation in their structure, either by the way of mutual superposition of individual silicate layers or by their polytypic character. That is why redeposited in ancient sedimentary thick layers products of various types of weathering crusts preserve structural and chrystallochemical features in relation to the minerals of eluvial strata, allowing tracing the ways of terrigenous material transport into sedimentation basins (including diamondiferous material
云母质金伯利岩的热液及深生蚀变特征
通过对乌达奇纳亚管、纽尔宾斯卡亚管和博图宾斯卡亚管金伯利岩副矿物和造岩矿物的复杂研究,详细确定了次生矿物的形成过程。研究了金伯利岩蚀变产物,构建了初始矿物转化方案,揭示了最终风化产物的标型特征,建立了纳金矿区金伯利岩风化壳剖面。结果表明,雅库特金伯利岩管中的皂石具有热液成因,在一定条件下可用于金伯利岩体找矿。对不同化学和矿物组成的岩石的古风化壳进行复杂的对比研究,可以追踪其超生蚀变的特定特征和残积产物的标型指示,这对解决许多应用任务非常重要。在构造水平上,可以区分不同岩石再沉积风化产物中相同种类的原生矿物,也可以识别次生层状硅酸盐,在最后一种情况下,不同的是它们在结构中的八面体位置占据的特征,不同的是单个硅酸盐层的相互叠加,不同的是它们的多型特征。这就是为什么在古沉积厚层中重新沉积的各种类型的风化壳产物保留了与淋积层矿物相关的结构和结晶化学特征,从而可以追踪陆源物质(包括金刚石物质)进入沉积盆地的途径
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