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Geological difference and its significance of marine shale gases in South China

机译:中国南方海相页岩气的地质差异及其意义

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Organic-rich marine shales are developed in both the Cambrian Qiongzhusi Formation and the Ordovician Wufeng Formation–Silurian Longmaxi Formation in South China, but are different in the drilling results of shale gas exploration. Comparing the differences in shale gas formation conditions between Qiongzhusi and Wufeng-Longmaxi has practical and theoretical significance. This study reveals: (1) in the Sichuan Basin, the Wufeng-Longmaxi Formation has slightly higher TOC than the Qiongzhusi Formation, whereas Qiongzhusi Formation has some local high TOC areas outside of the Sichuan Basin; (2) the Qiongzhusi Formation has much higher thermal evolution degree than the Wufeng-Longmaxi Formation; (3) with undeveloped organic pores, the Qiongzhusi Formation has a 1/3 to 1/2 porosity of the Wufeng-Longmaxi Formation; (4) Qiongzhusi shale has a lower gas content, only 1/2 of that in Wufeng-Longmaxi shale; (5) the Qiongzhusi Formation is mainly composed of siliceous shale and the silica is hot water origin, whereas the Wufeng-Longmaxi Formation consists mainly of calcareous siliceous shale and the silica is biogenic origin; (6) the Wufeng-Longmaxi Formation has overpressure, while the Qiongzhusi Formation is normal in pressure. The reasons for the differences are: (1) different sedimentary environments affect TOC and shale thickness; (2) the Qiongzhusi Formation is over-mature, which caused depletion of hydrocarbon generation, organic carbonization, porosity reduction, and gas content drop; (3) the bad roof and floor conditions of the Qiongzhusi Formation are not good for shale gas preservation; (4) Wufeng-Longmaxi Formation is located in the slope and syncline accompanied with overpressure, and is in favor of preservation and high production of shale gas; (5) the uranium content in the Qiongzhusi Formation is twice that of the Wufeng-Longmaxi Formation, which is the main reason of its higher thermal evolution degree. It is concluded that shale gas enrichment in the marine shale in South China requires favorable geological conditions: organic-rich intervals, moderate thermal evolution, rich organic pores, high gas content, good roof and floor preservation conditions, and moderate burial depth. The Wufeng-Longmaxi Formation has better shale gas enrichment conditions and higher resource potential, whereas the Qiongzhusi Formation has poorer shale gas accumulation conditions and limited favorable areas.
机译:华南寒武系Qi竹寺组和奥陶系五峰组-Si龙隆马溪组均发育有机质含量较高的海相页岩,但页岩气勘探的钻探结果有所不同。比较Qi竹寺和五峰-龙马溪组页岩气形成条件的差异具有实际和理论意义。研究表明:(1)在四川盆地,五峰-龙马溪组的TOC略高于琼竹寺组,而琼竹寺组在四川盆地以外具有局部高TOC区域; (2)the竹寺组的热演化程度远高于五峰-龙马溪组。 (3)琼竹寺组有机孔隙不发育,孔隙度为五峰-龙马溪组的1/3〜1/2。 (4)琼竹寺页岩含气量较低,仅为五峰—龙马溪组页岩含气量的1/2; (5)zhu竹寺组主要由硅质页岩组成,而二氧化硅是热水源,而五峰—龙马溪组则主要由钙质硅质页岩组成,而二氧化硅是生物成因。 (6)五峰—龙马溪组超压,琼竹寺组压力正常。造成这种差异的原因有:(1)不同的沉积环境影响着总有机碳和页岩厚度; (2)Qi竹寺组过熟,致使烃类开采,有机碳化,孔隙度降低,含气量减少; (3)Qi竹寺组顶,底条件差,不利于页岩气的保存; (4)五峰—龙马溪组位于斜坡和向斜,伴有超压,有利于页岩气的保存和高产。 (5)Qi竹寺组铀含量是五峰-龙马溪组的两倍,这是其热演化程度较高的主要原因。结论是,中国南方海相页岩中的页岩气富集需要良好的地质条件:富含有机物的层段,适度的热演化,丰富的有机孔隙,高瓦斯含量,良好的顶板和底板保存条件以及适度的埋藏深度。五峰—龙马溪组页岩气富集条件较好,资源潜力较大;琼竹寺组页岩气成藏条件较差,有利区域有限。

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