Traces of hydrocarbon-bearing fluid and microbial activities and their implications for uranium mineralization in southern Ordos basin, China
暂无分享,去创建一个
Hui Rong | Yangquan Jiao | Liqun Wu | Yang Liu | Fan Zhang
[1] Hui Rong,et al. Roles of dispersed organic matters in sandstone-type uranium mineralization: A review of geological and geochemical processes , 2021, Ore Geology Reviews.
[2] M. Długosz-Lisiecka,et al. Radioactive fossils: The uranium anomaly and its paleobiological implications. , 2021, Chemosphere.
[3] Hui Rong,et al. Trapping of uranium by organic matter within sandstones during mineralization process: A case study from the Shuanglong uranium deposit, China , 2021 .
[4] J. Brugger,et al. Large S isotope and trace element fractionations in pyrite of uranium roll front systems result from internally-driven biogeochemical cycle , 2020 .
[5] Hui Rong,et al. Changes in physicochemical properties of organic matter by uranium irradiation: A case study from the Ordos Basin in China. , 2019, Journal of environmental radioactivity.
[6] Hui Rong,et al. In-situ analyses of organic matter maturation heterogeneity of uranium-bearing carbonaceous debris within sandstones: A case study from the Ordos Basin in China , 2019, Ore Geology Reviews.
[7] M. Cathelineau,et al. The Role of Organic Matter on Uranium Precipitation in Zoovch Ovoo, Mongolia , 2019, Minerals.
[8] Hui Rong,et al. Selective crystallization and precipitation of authigenic pyrite during diagenesis in uranium reservoir sandbodies in Ordos Basin , 2019, Ore Geology Reviews.
[9] Hui Rong,et al. Relations of Uranium Enrichment and Carbonaceous Debris within the Daying Uranium Deposit, Northern Ordos Basin , 2019, Journal of Earth Science.
[10] Jianguo Li,et al. Mineralogical and geochemical evidence for biogenic and petroleum-related uranium mineralization in the Qianjiadian deposit, NE China , 2018, Ore Geology Reviews.
[11] J. Brugger,et al. Characterization of uranium redox state in organic-rich Eocene sediments. , 2018, Chemosphere.
[12] S. Akhtar,et al. Sandstone type uranium deposits in the Ordos Basin, Northwest China: A case study and an overview , 2017 .
[13] T. Borch,et al. Biogenic non-crystalline U(IV) revealed as major component in uranium ore deposits , 2017, Nature Communications.
[14] Xiao-dong Liu,et al. Coupled uranium mineralisation and bacterial sulphate reduction for the genesis of the Baxingtu sandstone-hosted U deposit, SW Songliao Basin, NE China , 2017 .
[15] J. Bargar,et al. Uranium(IV) adsorption by natural organic matter in anoxic sediments , 2017, Proceedings of the National Academy of Sciences.
[16] Xiaoming Wang,et al. The Relationship between Jurassic Coal Measures and Sandstone‐type Uranium Deposits in the Northeastern Ordos Basin, China , 2016 .
[17] C. Mikutta,et al. Tetra- and Hexavalent Uranium Forms Bidentate-Mononuclear Complexes with Particulate Organic Matter in a Naturally Uranium-Enriched Peatland. , 2016, Environmental science & technology.
[18] K. Grice,et al. Uranium mobility in organic matter-rich sediments: A review of geological and geochemical processes , 2016 .
[19] Zhang Zilong,et al. The Organic Geochemical Characteristics of the Zhiluo Formation and Its Relationship with Uranium Mineralization in the Huangling Area, Ordos Basin , 2016 .
[20] Xiao-dong Liu,et al. The Multiple Roles of Sulfate-Reducing Bacteria and Fe-Ti Oxides in the Genesis of the Bayinwula Roll Front-Type Uranium Deposit, Erlian Basin, NE China , 2015 .
[21] J. Hower,et al. Enrichment of U–Se–Mo–Re–V in coals preserved within marine carbonate successions: geochemical and mineralogical data from the Late Permian Guiding Coalfield, Guizhou, China , 2015, Mineralium Deposita.
[22] S. Ortaboy,et al. Kinetics and equilibrium modeling of uranium(VI) sorption by bituminous shale from aqueous solution , 2014 .
[23] L. Kopecký,et al. A multi-instrumental geochemical study of anomalous uranium enrichment in coal. , 2014, Journal of environmental radioactivity.
[24] K. Williams,et al. Speciation and Reactivity of Uranium Products Formed during in Situ Bioremediation in a Shallow Alluvial Aquifer , 2014, Environmental science & technology.
[25] M. Janousch,et al. The product of microbial uranium reduction includes multiple species with U(IV)–phosphate coordination , 2014 .
[26] Kenneth H. Williams,et al. Geochemical and mineralogical investigation of uranium in multi-element contaminated, organic-rich subsurface sediment , 2014 .
[27] Katherine Morris,et al. The biogeochemistry and bioremediation of uranium and other priority radionuclides , 2014 .
[28] M. Taillefert,et al. The role of anaerobic respiration in the immobilization of uranium through biomineralization of phosphate minerals , 2013 .
[29] G. Bordelet,et al. Sorption Properties of Peat for U(VI) and 226Ra in U Mining Areas , 2013 .
[30] R. J. Martinez,et al. The effect of pH and natural microbial phosphatase activity on the speciation of uranium in subsurface soils , 2011 .
[31] G. Chi,et al. Effects of hydrocarbon generation on fluid flow in the Ordos Basin and its relationship to uranium mineralization , 2011 .
[32] G. Douglas,et al. Geology, geochemistry and mineralogy of the lignite-hosted Ambassador palaeochannel uranium and multi-element deposit, Gunbarrel Basin, Western Australia , 2011 .
[33] M. Cuney. Evolution of Uranium Fractionation Processes through Time: Driving the Secular Variation of Uranium Deposit Types , 2010 .
[34] Liu Hong-xu. Research development of the experiment on uranium microbial metallogenesis , 2010 .
[35] Wei-dong Sun,et al. The genesis of sandstone‐type uranium deposits in the Ordos Basin, NW China: constraints provided by fluid inclusions and stable isotopes , 2009 .
[36] C. Key. Metallogenic model of the Dongsheng in-situ leaching sandstone-type uranium deposit in the Ordos Basin , 2009 .
[37] K. Yan. Geochemical Characteristics and Oil-Source Analysis of Crude Oils in the Yanchang Formation of Upper Triassic from Ordos Basin , 2009 .
[38] G Southam,et al. A high‐resolution chemical and structural study of framboidal pyrite formed within a low‐temperature bacterial biofilm , 2008, Geobiology.
[39] R. Maas,et al. Lake Boga Granite, northwestern Victoria: mineralogy, geochemistry and geochronology , 2008 .
[40] Xing Xiu-juan. Sandstone Diagenesis and Uranium Mineralization of the Zhiluo Formation in the Diantou Area,Southern Ordos Basin , 2008 .
[41] C. Cai,et al. Biogenic and petroleum-related ore-forming processes in Dongsheng uranium deposit, NW China , 2007 .
[42] Zuozhen Han,et al. Research on diagenesis of the sandstone-type uranium deposits in Dongsheng area, Ordos Basin , 2007 .
[43] Peng Yun-biao. Relationship between hydrocarbon-containing fluid and metallogenesis in Dongsheng sandstone-type uranium deposit , 2007 .
[44] J. Jerden,et al. Geochemical coupling of uranium and phosphorous in soils overlying an unmined uranium deposit: Coles Hill, Virginia , 2006 .
[45] Fang Ai-ping. Genesis of sandstone-type uranium deposits:A case study in the Diantou area of the Ordos basin , 2006 .
[46] Huifang Xu,et al. Evidence of uranium biomineralization in sandstone-hosted roll-front uranium deposits, northwestern China , 2005 .
[47] J. Banfield,et al. Direct Microbial Reduction and Subsequent Preservation of Uranium in Natural Near-Surface Sediment , 2005, Applied and Environmental Microbiology.
[48] B. Peyton,et al. Reduction of Uranium(VI) under Sulfate-reducing Conditions in the Presence of Fe(III)-(hydr)oxides , 2004 .
[49] Yongchun Tang,et al. Insights into oil cracking based on laboratory experiments , 2003 .
[50] H. Thomas. Organic matter as a transport agent in ore-forming systems , 2000 .
[51] L. Figueroa,et al. Modeling the Removal of Uranium U(VI) from Aqueous Solutions in the Presence of Sulfate Reducing Bacteria , 1999 .
[52] W. Lutze,et al. Reduction of U(VI) to U(IV) by indigenous bacteria in contaminated ground water , 1998 .
[53] C. Spirakis. The roles of organic matter in the formation of uranium deposits in sedimentary rocks , 1996 .
[54] P. Landais. Organic geochemistry of sedimentary uranium ore deposits , 1996 .
[55] E. Buck,et al. Contaminant Uranium Phases and Leaching at the Fernald Site in Ohio , 1996 .
[56] P. Holliger,et al. Role of organic matter in the Proterozoic Oklo natural fission reactors, Gabon, Africa , 1993 .
[57] Z. Sawłowicz,et al. Pyrite framboids and their development: a new conceptual mechanism , 1993 .
[58] D. Lovley,et al. Reduction of uranium by Desulfovibrio desulfuricans , 1992, Applied and environmental microbiology.
[59] Edward R. Landa,et al. Microbial reduction of uranium , 1991, Nature.
[60] P. Hooker,et al. Uranium-mineralized micro-organisms associated with uraniferous hydrocarbons in southwest Scotland , 1990, Nature.
[61] R. I. Grauch,et al. Unusual organic matter associated with uranium from the Claude Deposit, Cluff Lake, Canada , 1987 .
[62] R. Berner,et al. Pyrite formation in euxinic and semi-euxinic sediments , 1985 .
[63] R. Berner. Sedimentary pyrite formation: An update , 1984 .
[64] Robert Raiswell,et al. Burial of organic carbon and pyrite sulfur in sediments over phanerozoic time: a new theory , 1983 .
[65] V. Ittekkot,et al. In situ metal-staining of biological membranes in sediments , 1982, Nature.
[66] P. F. Kerr,et al. Uranium-Organic Matter Association at La Bajada, New Mexico , 1972 .