Reservoir characteristics and formation model of Upper Carboniferous bauxite series in eastern Ordos Basin, NW China

IF 7 Q1 ENERGY & FUELS
Yong LI , Zhuangsen WANG , Longyi SHAO , Jiaxun GONG , Peng WU
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Abstract

Through core observation, thin section identification, X-ray diffraction analysis, scanning electron microscopy, and low-temperature nitrogen adsorption and isothermal adsorption experiments, the lithology and pore characteristics of the Upper Carboniferous bauxite series in eastern Ordos Basin were analyzed to reveal the formation and evolution process of the bauxite reservoirs. A petrological nomenclature and classification scheme for bauxitic rocks based on three units (aluminum hydroxides, iron minerals and clay minerals) is proposed. It is found that bauxitic mudstone is in the form of dense massive and clastic structures, while the (clayey) bauxite is of dense massive, pisolite, oolite, porous soil and clastic structures. Both bauxitic mudstone and bauxite reservoirs develop dissolution pores, intercrystalline pores, and microfractures as the dominant gas storage space, with the porosity less than 10% and mesopores in dominance. The bauxite series in the North China Craton, which can be divided into five sections, i.e., ferrilite (Shanxi-style iron ore, section A), bauxitic mudstone (section B), bauxite (section C), bauxite mudstone (debris-containing, section D) and dark mudstone-coal section (section E). The burrow/funnel filling, lenticular, layered/massive bauxite deposits occur separately in the karst platforms, gentle slopes and low-lying areas. The karst platforms and gentle slopes are conducive to surface water leaching, with strong karstification, well-developed pores, large reservoir thickness and good physical properties, but poor strata continuity. The low-lying areas have poor physical properties but relatively continuous and stable reservoirs. The gas enrichment in bauxites is jointly controlled by source rock, reservoir rock and fractures. This recognition provides geological basis for the exploration and development of natural gas in the Upper Carboniferous in the study area and similar bauxite systems.

中国西北部鄂尔多斯盆地东部上石炭统铝土矿系列储层特征与成藏模式
通过岩心观察、薄片鉴定、X射线衍射分析、扫描电子显微镜以及低温氮吸附和等温吸附实验,分析了鄂尔多斯盆地东部上石炭统铝土矿系列的岩性和孔隙特征,揭示了铝土矿储层的形成和演化过程。提出了基于三个单元(铝氢氧化物、铁矿物和粘土矿物)的铝土岩岩石学命名和分类方案。研究发现,铝土质泥岩为致密块状结构和碎屑结构,而(粘土质)铝土矿则为致密块状结构、辉绿岩、乌云岩、多孔土和碎屑结构。铝土质泥岩和铝土质储层都发育溶蚀孔隙、晶间孔隙和微裂隙,是主要的储气空间,孔隙度小于 10%,以介孔为主。华北克拉通的铝土矿系列,可分为五个部分,即铁矾土(山西式铁矿,A 部分)、铝土质泥岩(B 部分)、铝土矿(C 部分)、铝土质泥岩(含碎屑,D 部分)和暗色泥岩-煤层部分(E 部分)。洞穴/隧道充填、透镜状、层状/块状铝土矿沉积分别出现在岩溶平台、缓坡和低洼地区。岩溶平台和缓坡有利于地表水沥滤,岩溶化强烈,孔隙发育,储层厚度大,物理性质好,但地层连续性差。低洼地区物理性质较差,但储层相对连续稳定。铝土矿中的天然气富集受源岩、储层岩和裂缝的共同控制。这一认识为研究区上石炭统和类似铝土矿系统的天然气勘探和开发提供了地质依据。
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CiteScore
11.50
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