Xeno-autolithic nodules from kimberlites of the “Nadiia” pipe (Eastern Azov region, Ukraine)

H.H. Pavlov, O. Vyshnevskyi, Y. Lytvynenko, T. Kalinichenko
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Abstract

Xeno-autolithic nodules from kimberlites of the Nadiia pipe (the Eastern Azov region, Ukraine) have been investigated. Based on petrographic and petrochemical criteria it was concluded that the analyzed nodules were formed according to the principle of the “snowballs” formation in the apical parts of the penetrating magma column at various pressures and temperatures. Nodules originated around xenocrysts, xenoliths and viscous magmatic clots by overgrowing them with orbicular shells under conditions of a mobile medium and flotation gas-liquid differentiation. The nodule shells are represented by porphyric kimberlite, composed of porphyric pseudomorphs of diaphtoritic minerals after olivine, clinopyroxene, phlogopite, biotite and ilmenite, and a groundmass consisted of micron-sized crystallites of calcite, barite, serpentine, perovskite, phlogopite, amphibole, chlorite, formed by crystallization of kimberlite glass of heterogeneous composition. The groundmass also contains newly formed feldspar and quartz. Accessory minerals include zircon, apatite, and rutile. Ore minerals are represented by magnetite, titanomagnetite, ilmenite, nickel and copper sulfides. Due to the assimilation of carbonate rocks by the melt, the composition of the shells, in the direction from the center to the edge of the nodules, changes from serpentine, through chlorite-serpentine to silicate-carbonate. The initial portions of the melt with olivine and phlogopite megacrysts were successively transformed into a homogeneous one. The estimated depth of kimberlite magma generation did not exceed 150 km at the initial crystallization temperatures of the silicate component of 1300-900 °C. Vitrification of the nodules groundmass in the crater zone of diatreme, estimated using monomineral phlogopite geothermometer, occurred at temperatures of 650-550 °C. The absence of diamond paragenesis minerals in nodules, in combination with other mineralogical, petrological and petrochemical criteria indicates that kimberlites of the «Nadiia» pipe are diamond barren.
乌克兰东亚速地区“Nadiia”管金伯利岩中的异种自长石结核
研究了Nadiia管道(乌克兰东亚速地区)金伯利岩中的异种自长石结核。根据岩石学和石油化学标准,认为所分析的结核是在不同压力和温度下,在侵彻岩浆柱的顶端部分按“雪球”形成的原理形成的。结核是在流动介质和浮选气液分异条件下,在异晶、捕虏体和黏性岩浆块周围过度生长而形成的。结核壳以斑状金伯利岩为代表,由橄榄石、斜辉石、云母、黑云母和钛铁矿后的透长石矿物的斑状伪晶组成;以非均质金伯利岩玻璃结晶形成的微米级方解石、重晶石、蛇纹石、钙钛矿、云母、角闪石、绿泥石组成的地质体。地层中还含有新形成的长石和石英。辅助矿物包括锆石、磷灰石和金红石。矿石矿物以磁铁矿、钛磁铁矿、钛铁矿、硫化镍和硫化铜为代表。由于溶体对碳酸盐岩的同化作用,结核壳的组成在结核中心向结核边缘方向由蛇纹石变为绿泥石-蛇纹石,再变为硅酸盐-碳酸盐。熔体中含有橄榄石和绿云母巨晶的初始部分依次转变为均质熔融体。在硅酸盐组分的初始结晶温度为1300 ~ 900℃时,金伯利岩岩浆生成的估计深度不超过150 km。利用单矿物绿云母地温计估计,在650-550°C的温度下,硅藻土陨石坑区结核基底的玻璃化作用发生。结合其他矿物学、岩石学和石油化学标准,结核中没有钻石共生矿物,表明“Nadiia”管的金伯利岩是无钻石的。
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