Citation: | LIU Wusheng, ZHAO Xingqi, SHI Qingping, ZHANG Zinan. 2017. Research on relationship of oil-gas and sandstone-type uranium mineralization of northern China[J]. Geology in China, 44(2): 279-287. doi: 10.12029/gc20170205 |
Interaction between oil-gas and sandstone type uranium has aroused much interest among geologists, especially uranium geologists. In spite of rapid development of mineralization theory for single energy mines, the study of interaction is very insufficient. Therefore, this problem should be regarded as the key frontier scientific issue which deserves investigation. Based on an analysis of distribution characteristics of uranium and oil-gas, microscope testing, geochemical calculation, it can be inferred that uranium enrichment can be improved by adsorption, reduction, uranium-supply and preservation of oil-gas, in which asphalt and organic acid, cracked by oil-gas, can adsorb uranium strongly. For reduction of oil-gas, high valence and activated uranium ion can be reduced to +4 valence and form stable uranium minerals by more reducing gas, such as H2, CH4, CO, and H2S. By means of acid dissolving, extraction and metallic-organic complexation, organic acid, produced by the interaction of oil-gas and SO42-, can accumulate partial uranium nearby surrounding rocks. And then this uranium can be released in mineralization location, which can reform mineralization and increase the source of uranium. Besides, more reducing H2, CO, escaping from oil-gas, can cause acidification and kaolinization of the formation, which leads to the feature that the oxidation zone is slightly alkaline and the metallogenic belt is slightly acidic. Therefore, the interaction between oil-gas and uranium can be very important for the determination of uranium-bearing beds, locating of uranium deposits, developing of mineralization theory, and oil-gas exploration guided by 'chimney effect'.
Chen Hongbin, Xu Gaozhong. 2007. Direct evidences for reduction of pitchblende by pitch in the Sawapuqi uranium deposit, Xinjiang[J]. Bulletin of Mineralogy, Petrology and Geochemistry, 26(3):245-248 (in Chinese with English abstract). |
Chen Zuyi, Guo Qingying. 2007. Mechanism of U-reduction and concentration by sulphides at sandstone type uranium deposits[J]. Uranium Geology, 23(6):321-334 (in Chinese with English abstract). |
Jin Ruoshi, Zhang Chengjiang, Feng Xiaoxi, Tang Chao, Zhu Qiang, Li Guangyao. 2014. The influence of fluid mixing on the mineralization of sandstone type uranium deposits[J]. Geological Bulletin of China, 33(2/3):354-358 (in Chinese with English abstract). |
Li Shengfu, Wang Cheng. 2008. Metallogenic mechanism and its prospecting guides of Bashibulake uranium deposite[J]. World Nulear Geoscience, 25(3):143-150 (in Chinese with English abstract). |
Li Ziying, Fang Xiheng, Chen Aaping, Ou Guangxi, Xiao Xinjian, Sun Ye, Liu chiyang, Wang Yi. 2007. Oringin of gray-green sandstone in ore bed of sandstone type Uranium deposit in north Ordos Basin[J]. Science in China (Series D):Earth Sciencse, 50(Supp.2):165-173. |
Liu Chiyang, Mao Guangzhou, Qiu Xinwei, Wu Bolin, Zhao Hongge, Wang Jianqiang. 2013. Organic-inorganic energy minerals interactions and the accumulation and mineralization in the same sedimentary basins[J]. Chinese Journal of Nature Progress, 35(1):47-55 (in Chinese with English abstract). |
Liu Chiyang, Zhao Hongge, Tan Chengqian, Wang Jianqiang. 2006.Occurrences of multiple energy mineral deposits and mineralization reservoiring system in the basin[J]. Oil & Gas Geology, 27(2):131-141 (in Chinese with English abstract). |
Liu Jianjun, Li Huanyuan, Chen Guosheng. 2006. To prospect for ISLamenable sandstone-type uranium deposit by using the association of uranium with oil[J]. Uranium Geology, 22(1):29-37 (in Chinese with English abstract). |
Liu Wusheng, Jia Licheng, Liu Hongxu. 2012. The potential evaluation of sandstone type uranium resources in China[J]. Uranium Geology, 28(6):349-354 (in Chinese with English abstract). |
Liu Zhangyue, Qin Mingkuan, Cai Genqing, Liu Hongxu Geng Yingying. 2015. Organic geochemical characteristics and its control on uranium mineralization of Bashibulake area in xinjiang[J]. Earth Science Frontiers, 22(4):212-222 (in Chinese with English abstract). |
Luo Yi, Ma Hanfeng, Xia Yuliang, Zhang Zegui. 2007. Geologic characteristics and metallogenic model of Qianjiandian uranium deposite in Songliao basin[J]. Uranium Geology, 23(4):193-199(in Chinese with English abstract). |
Ou Guangxi, Guo Qingying, Zhang Jianfeng. 2009. The Relationship of Hydrocarbon-bearing Fluid and Juvenile Fluid and Sandstonetype Uranium Mineralization in the North Ordos Basin[C]. Chinese Geophysical, 761-762 (in Chinese with English abstract). |
Qi Fucheng, Qin Mingkuan, Liu Wusheng, Xiao Shuqing, Wang Zhiming, Zou Shungen, Huang Jingbai. 2007. Time space configuration of uranium mineralization, sedimengtary facies and oil & gas induced alteration zone in Zhiluo formation, Ordos basin[J]. Uranium Geology, 23(2):66-70 (in Chinese with English abstract). |
Tan Chengqian, Liu Chiyang, Zhao Junlong, Zhang Rongrong. Feature of high natural gamma anomaly and its geological implication of the typical area in Ordos basin[J]. Science in China(Series D:Earth Science), 2007, 37 (S1):147-156(in Chinese). |
Zhang Jindai, Xu Gaozhong, Lin Jinrong, Peng Yunbiao, Wang Guo. 2010. The implication of six kinds of new sandstone-type uranium deposits to uranium resources potential in North China[J]. Geology in China, 37(5):1434-1449 (in Chinese with English abstract). |
Zhang Jinglian. On the Inorganic Cause of Oil[M]. Beijing:Petroleum Industry Press, 2001. |
Zhang Zhenqiang, Dong Wenming, She Xinmin, Jing Jianan. 2008.Primary studies on the role of oil gas in sandstone type uranium mineralization of Yaojia Formation in south Songliao basin[J]. Uranium Geology, 24(1):43-47 (in Chinese with English abstract). |
Zhang Zuhuan, Zhao Yiying, Zhang Xintong.1984. Uranium Geochemistry[M]. Beijing:Atomic Energy Press (in Chinese with English abstract). |
Zhou Yuqi, Yi Ronglong, Shu Wenpei. 2004. Oil and Gas Resources in China[M]. China University of Geosciences Press(in Chinese with English abstract). |
陈宏斌, 徐高中. 2007.新疆萨瓦莆齐铀矿床沥青还原沥青铀矿的直接证据[J].矿物岩石地球化学通报, 26(3):245-248. |
陈祖伊, 郭庆银. 2007.砂岩型铀矿床硫化物还原富集铀的机制[J].铀矿地质, 23(6):321-334. |
金若时, 张成江, 冯晓曦, 汤超, 朱强, 李光耀. 2014.流体混合对砂岩型铀矿成矿作用的影响[J].地质通报, 33(2/3):354-358. |
李盛富, 王成. 2008.巴什布拉克铀矿床形成机理及其找矿标志[J].世界核地质科学, 25(3):143-150. |
刘池洋, 赵红格, 谭成仟, 王建强.2006.多种能源矿产赋存与盆地成藏(矿)系统[J].石油与天然气地质, 27(2):131-141. doi: 10.11743/ogg20060201 |
刘池洋, 毛光周, 邱欣卫, 吴柏林, 赵红格, 王建强. 2013.有机-无机能源矿产相互作用及其共存成藏(矿)[J].自然杂志, 35(1):47-55. |
刘建军, 李怀渊, 陈国胜. 2006.利用铀油关系寻找可地浸砂岩型铀矿[J].铀矿地质, 22(1):29-37. |
刘武生, 贾立城, 刘红旭. 2012.全国砂岩型铀矿资源潜力评价[J].铀矿地质, 28(6):349-354. |
刘章月, 秦明宽, 蔡根庆, 刘红旭, 耿英英. 2015.新疆巴什布拉克地区有机地球化学特征及其对铀成矿的控制[J].地学前缘, 22(4):212-222. |
罗毅, 马汉峰, 夏毓亮, 张泽贵. 2007.松辽盆地钱家店铀矿床成矿作用特征及成矿模式[J].铀矿地质, 23(4):193-199. |
欧光习, 张敏, 张建锋. 2009. 鄂尔多斯盆地北部含烃流体-深源流体与砂岩型铀矿化关系[C]. 中国地球物理, 761-762. |
漆富成, 秦明宽, 刘武生, 肖树青, 王志明, 邹顺根, 黄净白. 2007.鄂尔多斯盆地直罗组赋铀沉积相与油气蚀变带的时空配置[J].铀矿地质, 23(2):65-70. |
谭成仟, 刘池洋, 赵军龙, 张蓉蓉.鄂尔多斯盆地典型地区放射性异常特征及其地质意义[J].中国科学D辑:地球科学, 2007, 37(增刊):147-156. |
张金带, 徐高中, 林锦荣, 彭云彪, 王果. 2010.中国北方6种新的砂岩型铀矿对铀资源潜力的提示[J].中国地质, 37(5):1434-1449. |
张景廉. 2001.论石油的无机成因[M].北京:石油工业出版社. |
张振强, 董文明, 佘新民, 景建安. 2008.浅析油气对松辽盆地南部姚家组砂岩型铀矿成矿的作用[J].铀矿地质, 24(1):43-47. |
张祖还, 赵懿英, 章新桐. 1984.铀地球化学[M].北京:原子能出版社. |
周玉琦, 易荣龙, 舒文培. 2004.中国石油与天然气资源[M].武汉:中国地质大学出版社. |
Typical sandstone type uranium deposits metallogenic model of related to the oil-gas
The spatial configuration diagram of typical sandstone type uranium mineralization and oil-gas
Uranium mineral associated with asphalt in the uranium deposit
Secondary alteration effect characteristics of oil-gas in the uranium deposit
Effect of evidence from uranium minerals and oil-gas in the uranium deposit
The integrated model of radioactive anomalies above oil and gas accumulation (modified from Liu et al. 2006)