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JIAO Yang-quan, CHEN An-ping, WANG Min-fang, WU Li-qun, YUAN Hai-tao, YANG Qin, ZHANG Cheng-ze, XU Zhi-cheng. Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit[J]. Acta Sedimentologica Sinica, 2005, 23(3): 371-379.
Citation: JIAO Yang-quan, CHEN An-ping, WANG Min-fang, WU Li-qun, YUAN Hai-tao, YANG Qin, ZHANG Cheng-ze, XU Zhi-cheng. Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit[J]. Acta Sedimentologica Sinica, 2005, 23(3): 371-379.

Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit

  • Received Date: 2004-09-23
  • Rev Recd Date: 2004-11-29
  • Publish Date: 2005-09-10
  • The sandstone structure and scale vary with different depositional systems, and have different contribution to uranium mineralization. According to outcrop research, drilling core analysis, and sand distributed system drawing,we analyzed the lowermember of Zhiluo Formation, northeastern Ordos basin. The results show that the lowermember of Zhiluo Formation is not formed by braided stream in traditional recognition. In fact, it can be divided into the upper and lower sub-members. Although the upper and lower sub-members have well inheritance in provenance and sand distributed direction-which is NW-SE, they have different genesis. The lower sub-member of Zhiluo Formation com-prise braided stream system and braided delta regime, and braided stream delta plain is the main body; the upper sub-member of Zhiluo Formation comp rise meandering river system and meandering river delta regime, and meandering river delta plain is the main body, meandering river delta front take up some space also, which is the result of lake extension to northwest. So, the low sub-member has larger scale and better connectivity, while up sub-member has smaller scale and higher heterogeneity. The practices of sandstone-type uranium exploration also p rove that the ore mainly occurred in low sub-member of Zhiluo Formation. Therefore, the genetic recognition is favorable for the rule summary and space orientation of uranium mineralization.
  • [1] 1 焦养泉,陈安平,杨琴. 砂体非均质性是铀成矿的关键因素之一--鄂尔多斯盆地东北部铀成矿规律探讨[J].铀矿地质,2005,(1):8-15.

    2 张抗. 鄂尔多斯断块构造和资源[M].西安:陕西科学技术出版社,1989.

    3 李思田. 含能源盆地沉积体系[M].武汉:中国地质大学出版社,1996.32-45.

    4 王双明. 鄂尔多斯盆地聚煤规律及煤炭资源评价[M].北京:煤炭工业出版社,1996.333.

    5 程守田,黄焱球,付雪洪. 早中侏罗世大鄂尔多斯古地理重建与内陆坳陷的发育演化[J].沉积学报,1997,(04):43-49.

    6 张泓,李恒堂,熊存卫. 中国西北侏罗纪含煤地层与聚煤规律[M].北京:地质出版社,1998. 91-93.

    7 王仁农,李桂春. 中国含煤盆地演化和聚煤规律[M].北京:煤炭工业出版社,1998.49.

    8 杨俊杰. 鄂尔多斯盆地构造演化与油气分布规律[M].北京:石油工业出版社,2002.46.

    9 吴仁贵,陈安平,余达淦. 沉积体系分析与河道砂岩型铀矿成矿条件讨论--以鄂尔多斯中新生代盆地东胜地区为例[J].铀矿地质,2003,(2):94-99.

    10 李思田,程守田,杨士恭. 鄂尔多斯盆地东北部层序地层学及沉积体系分析[M].北京:地质出版社,1992.22-137,163-174.

    11 程守田,黄焱球. 加强含煤岩系伴生矿产资源的综合研究-煤田地质工作拓宽领域之一[J].中国煤田地质,1994,(02):35-39.

    12 黄焱球,程守田. 东胜煤系砂岩型高岭土的富集机理[J].煤田地质与勘探,1999,(03):13-16.

    13 黄焱球,程守田,付雪洪. 东胜煤系高岭土矿床地质特征及开发利用前景[J].煤田地质与勘探,1997,(06):10-13.

    14 陈戴生,李胜祥,蔡煜琦. 我国中新生代盆地砂岩型铀矿研究现状及发展方向的探讨[J].沉积学报,2003,(01):113-117.
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  • Received:  2004-09-23
  • Revised:  2004-11-29
  • Published:  2005-09-10

Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit

Abstract: The sandstone structure and scale vary with different depositional systems, and have different contribution to uranium mineralization. According to outcrop research, drilling core analysis, and sand distributed system drawing,we analyzed the lowermember of Zhiluo Formation, northeastern Ordos basin. The results show that the lowermember of Zhiluo Formation is not formed by braided stream in traditional recognition. In fact, it can be divided into the upper and lower sub-members. Although the upper and lower sub-members have well inheritance in provenance and sand distributed direction-which is NW-SE, they have different genesis. The lower sub-member of Zhiluo Formation com-prise braided stream system and braided delta regime, and braided stream delta plain is the main body; the upper sub-member of Zhiluo Formation comp rise meandering river system and meandering river delta regime, and meandering river delta plain is the main body, meandering river delta front take up some space also, which is the result of lake extension to northwest. So, the low sub-member has larger scale and better connectivity, while up sub-member has smaller scale and higher heterogeneity. The practices of sandstone-type uranium exploration also p rove that the ore mainly occurred in low sub-member of Zhiluo Formation. Therefore, the genetic recognition is favorable for the rule summary and space orientation of uranium mineralization.

JIAO Yang-quan, CHEN An-ping, WANG Min-fang, WU Li-qun, YUAN Hai-tao, YANG Qin, ZHANG Cheng-ze, XU Zhi-cheng. Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit[J]. Acta Sedimentologica Sinica, 2005, 23(3): 371-379.
Citation: JIAO Yang-quan, CHEN An-ping, WANG Min-fang, WU Li-qun, YUAN Hai-tao, YANG Qin, ZHANG Cheng-ze, XU Zhi-cheng. Genetic Analysis of the Bottom Sandstone of Zhiluo Formation,Northeastern Ordos Basin: Predictive base of spatial orientation of sandstone-type uranium deposit[J]. Acta Sedimentologica Sinica, 2005, 23(3): 371-379.
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