Журналы →  Gornyi Zhurnal →  2015 →  №12 →  Назад

RAW MATERIAL BASE
Название Assessment of quality and lithological characteristics of kimberlite ore based on microdiamonds
DOI 10.17580/gzh.2015.12.04
Автор Kolganov V. F., Zyryanov I. V.
Информация об авторе

Yakutniproalmaz Institute, Yakutsk, Russia:

V. F. Kolganov, Head of a Laboratory, Candidate of Geological–Mineralogical Sciences
I. V. Zyryanov, Deputy Head for Science, Doctor of Engineering Sciences, ZyryanovIV@alrosa.ru

Реферат

The article presents studies on feasibility of indirect appraisal of kimberlite deposit productivity based on the data on nonrecoverable microdiamonds (under 0.5 mm in size), which will enable a more than an order-of-magnitude decrease in amount of work connected with core sampling and will shorten the period of diamond-containing ore study at the stage of exploration and appraisal. In terms of ALROSA kimberlite pipes, it is shown that distribution of microdiamonds is identical with general diamond distribution in appraised reserves. Block models of lithological varieties of diamond-containing rocks and distributions of microdiamond in kimberlite pipes are described. The conversion factor determination procedure meant for overall evaluation of diamond ore (kimberlite) quality based on microdiamonds is set forth. The diamond contents determined based on radiation detection and based on microdiamonds are compared. The calculation and modeling prove feasibility of indirect appraisal of overall diamond content for a deposit or a separate geological block based on microdiamonds. At the same time, to make the method legal and to introduce it in practice of geological examination of kimberlite deposits, it isrequired to continue the research with a view to improving reliability and accuracy of approximation of data based on microdiamonds.

Ключевые слова Diamond-containing ore, kimberlite pipes, quality diamonds, microdiamonds, content distribution identity, block models, lithological varieties, microdiamonds-based quality evaluation, conversion factor
Библиографический список

1. Grakhanov S. A., Mityukhin S. I., Koptil V. I., Yanygin Yu. T., Maslennikova E. A. Novye podkhody pri poiskakh korennykh mestorozhdeniy almazov (New approaches during the exploration of primary diamond deposits). Geologicheskie aspekty mineralno-syrevoy bazy aktsionernoy kompanii «ALROSA»: sovremennoe sostoyanie, perspektivy, resheniya (Geological aspects of mineral-resource base of JSC «ALROSA»: modern state, prospects, solutions). Mirnyy, 2003. pp. 250–260.
2. Kriulina G. Yu., Garanin V. K., Rotman A. Ya., Kovalchuk O. E. Osobennosti almaza iz promyshlennykh mestorozhdeniy Rossii (Peculiarities of Russian industrial deposit diamond). Vestnik Moskovskogo Gosudarstvennogo Universiteta. Seriya 4. = Bulletin of Moscow State University. Series 4. 2011. No. 3. pp. 23–33.
3. Zinchenko V. N. Almazy kimberlitovoy trubki «Katoka» (Diamonds of kimberlite pipe «Katoka»). Regionalnaya geologiya i metallogeniya = Regianal geology and metallogeny. 2007. No. 30–31. pp. 153–161.
4. Kvasnitsa V. N. Melkie almazy (Fine diamonds). Kiev : Naukova dumka, 1985. 216 p.
5. Minorin V. E., Bezborodov S. M. Analiticheskaya otsenka soderzhaniya krupnykh kristallov po ustanovlennoy zavisimosti mezhdu soderzhaniem i razmerom almazov v mestorozhdenii (Analytical assessment of the content of large crystals according to the set dependence between the content and size of diamonds in deposit). Geologiya, zakonomernosti razmeshcheniya, metody prognozirovaniya i poiskov mestorozhdeniy almazov (Geology, distribution regularities, methods of forecasting and exploration of diamond deposits). Mirnyy, 1998. pp. 371–372.
6. Kolganov A. I., Bondarenko I. F. Osobennosti zonalnogo raspredeleniya soderzhaniy almazov v kimberlitovykh trubkakh (Peculiarities of area distribution of diamond content in kimberlite pipes). Gornaya geomekhanika i marksheyderskoe delo : sbornik nauchnykh trudov (Mining geomechanics and mine surveying : collection of scientific proceedings). Saint Petersburg : Scientific-Research institute of mining geomechanics and mine surveying (VNIMI), 2009. pp. 246-248.
7. Stephen M., Kell R. J., Scott S. B. H., Curtis B. R. Olivine crystal size distributions in kimberlite. American Minerflogist. 2010. Vol. 95. pp. 527–536.
8. Bruce L. F., Kopylova M. G., Longo M., Ryder J. Dobrzhinetskaya L. F. Luminescence of diamonds from metamorphic rocks. American Mineralogist. 2011. Vol. 96, No. 1. pp. 14–22.
9. Helmstaedt H.t H., Gurney J. J., Richardson S. H. Ages of cratonic diamond and lithosphere evolution: constraints on Precambrian tectonics and diamond exploration. Canadian Mineralogist. 2010. Vol. 48, No. 6. pp. 1385–1408.
10. Rondeau B., Fritsch E. Some open Questions on diamond morphology. Gems and Gemology. 2006. Vol. 42, No. 3. pp. 109–110.
11. Preris A. M. Opredelenie i uchet uragannykh prob (Definition and accounting of outlier grades). Moscow : Nedra, 1974. 104 p.
12. Minorin V. E., Makovskaya N. S. Ispolzovanie vyborochnykh raspredeleniy dlya otsenki almazonosnosti korennykh mestorozhdeniy i rascheta velichiny prob (Application of sampling distributions for assessment of diamond-bearing capacity of primary deposits and calculation of sample size). Statisticheskie metody v geologii (Statistical methods in geology). Novosibirsk, 1974.

Language of full-text русский
Полный текст статьи Получить
Назад