Characteristics and uranium mineralization of ore-bearing rock series in Qianjiadian sandstone-type uranium deposits, Songliao Basin
Song Bai-Rong1, Sun Hui2, Yang Song-Lin1, Han Hong-Dou1, Li Qing-Chun3, Shi Yu-Hua1, Tang Jie-Yun1, Liu Yu-Ting1
1 Research Institute of Petroleum Exploration & Development of Liaohe Oilfield In.,PetroChina,Liaoning Panjin 124010,China; 2 Department of Geology of Northwest University,Xi’an 710069,China; 3 Tongliao Uranium Branch of Liaohe Oilfield In.,PetroChina,Liaoning Panjin 124010,China
Abstract The Qianjiadian sandstone-type uranium deposit in Songliao Basin has become an ultra-large uranium deposit since its exploration and continuous development. The geological and metallogenic characteristics of this area have been studied widely since its discovery,but the detailed petrological features of its ore-bearing construction and favorable metallogenic conditions still require much detailed research. The mineralization of urnium deposit includes various geological processes resulting in the accumulation of uranium element. The source rock with high uranium concentration and much easier for the leaching of uranium is the basis of uranium mineralization. The later oxidation-reduction,mineral alteration are the key for the uranium deposits. In this paper,the petrological characteristic of lithology sandstone-type uranium deposit is studied by using the micro experimental analysis. It is found that the host rocks are primarily composed of medium-fine grained feldspar lithic sandstone,fine grained feldspar lithic sandstone,boulder-clay-bearing sandstone and glutenin. The amount of quartz and feldspar are close to the rock debris. The debris are mainly composed of rhyolite,rhyolitic tuff,and some trochyte,ayenite-aplite,granite,granite porphyry,andesite,silicalite and mudstone etc. the epigenetic alteration includes the carbonatization and kaolinization is general and intense at the local region,followed by the secondary epigenetic alteration includes pyritization,ferrugination and little baratization. Deep oil and gas infiltrate into the oil-bearing strata causing the oil stains,spots and spillage. The symbiosis of pyrite berry globule and micritic pyrite are common. The uranium element exists in the uranium-bearing minerals(e.g.,asphalt and coffinite)as well as the adsorbed state. The multi-genesis and multi-stages of the metallogenic model is established,i.e.,sedimentary preconcentration stage-interlayer infiltration stage-the oil and gas transformation stage-the oil and gas reduction stage.
Fund:Financially supported by the Key Project of China Oil and Gas Limited Company(No.2016A-4803)
About author: Song Bai-Rong,born in 1967,graduated from Northwest University in 1989. Now,she is a senior engineer in Research Institute of Petroleum Exploration and Development of Liaohe Oilfield,PetroChina,and she is engaged in the research of reservoir and uranium deposits.E-mail: songbr@petroChina.com.cn.
Cite this article:
Song Bai-Rong,Sun Hui,Yang Song-Lin et al. Characteristics and uranium mineralization of ore-bearing rock series in Qianjiadian sandstone-type uranium deposits, Songliao Basin[J]. JOPC, 2020, 22(2): 309-320.
Song Bai-Rong,Sun Hui,Yang Song-Lin et al. Characteristics and uranium mineralization of ore-bearing rock series in Qianjiadian sandstone-type uranium deposits, Songliao Basin[J]. JOPC, 2020, 22(2): 309-320.
[1] 陈晓林,方锡珩,郭庆银,夏毓亮,庞雅庆,孙晔. 2008. 对松辽盆地钱家店凹陷铀成矿作用的重新认识. 地质学报, 82(4): 553-561. [Chen X L,Fang X H,Guo Q Y,Xia Y L,Pang Y Q,Sun Y.2008. Re-disscussion on Uranium metallogenesis in Qianjiadian sag,Songliao Basin. Acta Geologica Sinica, 82(4): 553-561] [2] 蔡煜琦,李胜祥. 2008. 钱家店铀矿床含矿地层—姚家组沉积环境分析. 铀矿地质, 24(2): 66-72. [Cai Y Q,Li S X.2008. Sedimentary environment analysis of Yaojia formation-the ore-hosting stratum of Qianjiadian uranium deposit. Uranium Geology, 24(2): 66-72] [3] 李林强. 2014. 钱家店铀矿床红色泥砾砂岩岩石学特征及矿化成因分析. 铀矿地质, 30(5): 271-275. [Li L Q.2014. Petrological characteristic and mineralization analysis of red muddy gravelled sandstone in Qianjiadian Uranium deposit. Uranium Geology, 30(5): 271-275] [4] 李子颖,方锡珩,陈安平,欧光习,孙晔,张珂,夏毓亮,周文斌,陈法正,李满根,刘忠厚,焦养泉. 2009. 鄂尔多斯盆地东北部砂岩型铀矿叠合成矿模式. 铀矿地质, 25(2): 66-84. [Li Z Y,Fang X H,Chen A P,Ou G X,Sun Y,Zhang K,Xia Y L,Zhou W B,Chen F Z,Li M G,Liu Z H,Jiao Y Q.2009. Superposition metallogenic model of sandstone-type uranium deposit in the northeastern Ordos Basin. Uranium Geology, 25(2): 66-84] [5] 李巨初. 2009. 试论砂岩型铀矿成矿机制和成矿作用动力学问题. 铀矿地质, 25(3): 129-136. [Li J C.2009. Primary discussion on metallogenic mechanism and dynamics of sandstone-hosted uranium deposits in China. Uranium Geology, 25(3): 129-136] [6] 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及成矿模式. 铀矿地质, 23(4): 193-200. [Luo Y,Ma H F,Xia Y L,Zhang Z G.2007. Geologic characteristics and metallogenic model of Qianjiadian uranium deposit in Songliao Basin. Uranium Geology, 23(4): 193-200] [7] 罗毅,何中波,马汉峰,孙祥. 2012. 松辽盆地钱家店砂岩型铀矿成矿地质特征. 矿床地质, 31(2): 391-400. [Luo Y,He Z B,Ma H F,Sun X.2012. Metallogenic characteristics of Qianjiadian sandstone uranium deposit in Songliao Basin. Mineral Deposits, 31(2): 391-400] [8] 刘武生,赵兴齐,史清平,张梓楠. 2017. 中国北方砂岩型铀矿成矿作用与油气关系研究. 中国地质, 44(2): 279-287. [Liu W S,Zhao X Q,Shi Q P,Zhang Z N.2017. Research on relationship of oil-gas and sandstone-type uranium mineralization of northern China. Geology in China, 44(2): 279-287] [9] 闵茂中,彭新建,王果,殷建华. 2006. 中国西北地区层间氧化带砂岩型铀矿床中铀的赋存形式. 铀矿地质, 22(4): 193-201. [Min M Z,Peng X J,Wang G,Yin J H.2006. Existing state of uranium in ore from interlayer oxidation zone sandstone-hosted uranium deposits,NW China. Uranium Geology, 22(4): 193-201] [10] 汤其韬. 2000. 浙江铀矿床主要地质特征及成矿模式. 铀矿地质, 16(2): 91-98. [Tang Q T.2000. Main geologic characteristics and metallogenic models of uranium deposits in Zhejiang. Uranium Geology, 16(2): 91-98] [11] 向卫东,方锡珩,李天港,陈晓林,庞雅庆,程华汉. 2006. 鄂尔多斯盆地东胜铀矿床成矿特征与成矿模式. 铀矿地质, 22(5): 257-266. [Xiang W D,Fang X H,Li T G,Chen X L,Pang Y Q,Cheng H H.2006. Metallogenic characteristics and model of Dongsheng uranium deposit in Ordos Basin,North China. Uranium Geology, 22(5): 257-266] [12] 殷敬红,张辉,昝国军,李晓晨. 2000. 内蒙古东部开鲁盆地钱家店凹陷铀矿成藏沉积因素分析. 古地理学报, 2(4): 76-83. [Yin J H,Zhang H,Zan G J,Li X C.2000. Sedimentation factors analysis of uranium mineralization of Qianjiadian Depression,Kailu Basin,East Inner Mongolia autonomous region. Journal of Palaeogeography(Chinese Edition), 2(4): 76-83] [13] 张良. 2013. 基性岩与铀成矿的关系. 国土资源导刊,(7): 92-94. [Zhang L.2013. The relationship between basic rocks and uranium mineralization. Land & Resources Herald,(7): 92-94] [14] 张莉娟,安树清,徐铁民,张楠,魏双,方蓬达. 2018. 鄂尔多斯砂岩型铀矿床中灰绿色砂岩还原能力影响因素研究. 岩矿测试, 37(4): 396-403. [Zhang L J,An S Q,Xu T M,Zhang N,Wei S,Fang P D.2018. Study on influcing factors for reduction capacity of gray-green sandstone in Ordos sandstone-type uranium deposits. Rock and Mineral Analysis, 37(4): 396-403] [15] 张建军,何中波,何明友. 2013. 油气对砂岩型铀矿成矿作用研究. 西南科技大学学报, 28(4): 39-43. [Zhang J J,He Z B. He Z Y.2013. Research on oil and gas participate in sandstone type uranium mineralization. Journal of Southwest Uninersity of Science and Technology, 28(4): 39-43] [16] 闫枫,任帅锋,刘腾. 2018. 松辽盆地西南部钱家店砂岩型铀矿床姚家组岩石学特征. 科学创新与生产力,(总289): 43-46. [Yan F,Ren S F,Liu T.2018. Study on petrological characteristics of Yaojia Formation in Qianjiadian sandstone-type uranium deposit. Sci-tech Innovation and Productivity,(Total 289): 43-46]