Characters of participation of microorganisms in the formation of nodular monazite (kularite), Sakha (Yakutia) Republic, Russia
- 作者: Zhmodik S.M.1, Rozanov A.Y.1,2, Lazareva E.V.1, Ivanov P.O.3, Belyanin D.K.1, Karmanov N.S.1, Ponomarchuk V.A.1, Saryg-ool B.Y.1, Zhegallo E.A.2, Samylina O.S.2, Moroz T.N.1
-
隶属关系:
- Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
- N.K. Koltsov Institute of Developmental Biology, Russian Academy of Sciences
- Arctic Capital LLC
- 期: 卷 516, 编号 2 (2024)
- 页面: 582-592
- 栏目: MINERALOGY
- ##submission.dateSubmitted##: 31.01.2025
- ##submission.datePublished##: 12.12.2024
- URL: https://rjpbr.com/2686-7397/article/view/650046
- DOI: https://doi.org/10.31857/S2686739724060109
- ID: 650046
如何引用文章
详细
The presented data showed the important role of microorganisms in the formation of nodular monazites (NM) (kularites) of the Kular Range (Republic of Sakha (Yakutia)). In the NM, microorganisms lithified by REE phosphate (monazite) were identified, represented by cyanobacteria, in the form of peculiar stromatolite-like microstructures, as well as framboidal iron sulfides in monazites. The isotopic composition of organic carbon in koularites corresponds to the biogenic one – δ13С from –22.2 ‰ to –22.3 ‰.
全文:

作者简介
S. Zhmodik
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
编辑信件的主要联系方式.
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
A. Rozanov
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences; N.K. Koltsov Institute of Developmental Biology, Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
Academician of the RAS
俄罗斯联邦, Novosibirsk; MoscowE. Lazareva
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
P. Ivanov
Arctic Capital LLC
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Yakutsk, Sakha (Yakutia) Republic
D. Belyanin
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
N. Karmanov
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
V. Ponomarchuk
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
B. Saryg-ool
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
E. Zhegallo
N.K. Koltsov Institute of Developmental Biology, Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Moscow
O. Samylina
N.K. Koltsov Institute of Developmental Biology, Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Moscow
T. Moroz
Institute of Geology and Mineralogy named after. V.S. Sobolev Siberian Branch of the Russian Academy of Sciences
Email: zhmodik@igm.nsc.ru
俄罗斯联邦, Novosibirsk
参考
- Земель В. К. Анализ монацитов из золотоносных россыпей Алдана и Ю. Енисея // Журнал прикладной химии. 1936. Т. IX. № 11. С. 1969–1971.
- Rosenblum S., Mosier S. E. Mineralogy and Occurrence of Eu-Rich Dark Monazite // Geol. Survey Prof. Paper. 1983. № 1181. 67 p.
- Zi J.-W., Muhling J. R., Rasmussen B. Geochemistry of low-temperature (<350◦C) metamorphic and hydrothermal monazite // Earth-Science Reviews. 2024. V. 249. № 104668.
- Lazareva E. V., Zhmodik S. M., Prokopiev A. V., Karmanov N. S., Sergeenko A. I. Nodular monazite from placers in the Kular Ridge (Arctic Siberia, Russia): composition and age // Russian Geology and Geophysics. 2018. V. 59 P. 1330–1347. https://doi.org/10.1016/j.rgg.2018.09.010
- Некрасов И. Я., Некрасова Р. А. Куларит – аутигенная разновидность монацита // Докл. АН СССР. 1983. Т. 283. № 3. С. 688–693.
- Осовецкий Б. М., Меньшикова И. А. Куларит Вятско-Камской впадины // Вестник Пермского университета. Геология. 2011. № 4. С. 8–19.
- Федянин А. Н., Соловьев М. Н. Гос Геол Карта России 1:200 000. Яно-Индигирская серия. Лист R-53-IX, X. М.: Московский ф-л ФГБУ «ВСЕГЕИ», 2016. 106 с.
- Saryg-ool B. Yu., Bukreeva L. N., Myagkaya I. N., Tolstov A. V., Lazareva E. V., Zhmodik S. M. Influence of sample digestion on the determination of high contents of rare-earth and high field strength elements in geological samples by ICP-AES and ICP-MS (case study of the Tomtor deposit) // JSFU. Chemistry. 2020. № 4. P. 593–605. https://doi.org/10.175.16/1998-2836-0208
- Скублов С. Г., Красоткина А. О., Макеев А. Б., Томсен Т. Б., Серре С. Х., Абдрахманов И. А. Геохимия редких элементов (LA-ICP-MS) в монаците из рудопроявления Ичетъю, Средний Тиман // Труды Ферсмановской научной сессии ГИ КНЦ РАН. 2018. Т. 15. С. 338–341. https://doi.org/10.31241/FNS.2018.15.084
- Gromet L. P., Dymck R. F., Haskin L. A., Korotev R. L. The “North American Shale Composite”: its compilation, major and trace element characteristics // Geochim. Cosmochim Acta. 1984. V. 48. P. 2469–2482.
- Haskin L. A., Haskin M. A., Frey F. A. Wildman T. R. Relative and absolute terrestrial adundances of the rare earths / In Ahrens L.H. (ed.). Origin and distribution of the elements. 1968. V. I. Pergamon, Oxford. P. 889–911.
- Lazareva E. V., Zhmodik S. M., Dobretsov N. L., Tolstov A. V., Shcherbov B. L., Karmanov N. S., Gerasimov E. Yu., Bryanskaya A. V. Main minerals of abnormally high-grade ores of the Tomtor deposit (Arctic Siberia) // Russian Geology and Geophysics. 2015. V. 56. № 6. P. 844–873. https://doi.org/10.1016/j.rgg.2015.05.003.
- Bauld J. Microbial mats: stromatolites. N.Y., 1981. P. 38–59.
- Жмур С. И., Кравченко С. М., Розанов А. Ю., Жегалло Е. А. О генезисе редкоземельно-ниобиевых руд Томтора (север Сибирской платформы) // ДАН. 1994. Т. 336. № 3. С. 372–375.
- Dobretsov N. L., Zhmodik S. M., Lazareva E. V., Bryanskaya A. V., Ponomarchuk V. A., Saryg-ool B. Yu., Kirichenko I. S., Tolstov A. V., Karmanov N. S. Structural and Morphological Features of the Participation of Microorganisms in the Formation of Nb–REE–Rich Ores of the Tomtor Field (Russia) // Doklady Earth Sciences. 2021. V. 496. Part 2. P. 135–138.
- Ershova V. B., Khudoley A. K., Prokopiev A. V., Tuchkova M. I., Fedorov P. V., Kazakova G. G., Shishlov S. B., O’Sullivan P. Trans-Siberian Permian rivers: A key to understanding Arctic sedimentary provenance // Tectonophysics. 2016. V. 691. P. 220–233.
- Schieber J. Iron Sulfide Formation // Encyclopedia of Geobiology. Springer Dordrecht. 2012. P. 486–502 https://doi.org/10.1007/978-1-4020-9212-1
- Paper M., Koch M., Jung P., Lakatos M., Nilges T., Brück T. B. Rare earths stick to rare cyanobacteria: Future potential for bioremediation and recovery of rare earth elements // Front. Bioeng. Biotechnol. 2023. V. 11:1130939. https:// doi.org/10.3389/fbioe.2023.1130939
- Ohnuki T., Jiang M., Sakamoto F., Kozai N., Yamasaki S., Yu Q., Tanaka K., Utsunomiya S., Xia X., Yang K., He J. Sorption of trivalent cerium by a mixture of microbial cells and manganese oxides: Effect of microbial cells on the oxidation of trivalent cerium// Geochim. Cosmochim. Acta. 2015. V. 163. P. 1–13. https://doi.org/10.1016/j.gca.2015.04.043
- Tsuruta T. Selective accumulation of light or heavy rare earth elements using gram-positive bacteria // Colloids Surfaces B: Biointerfaces. 2006. V. 52. P. 117–122. https://doi.org/10.1016/j.colsurfb.2006.04.014
补充文件
