|
|
Shale gas adsorption characteristics and influencing factors of Taiyuan Formation in Eastern Ordos Basin |
XIONG Quan1, PENG Yuan2, TANG Youjun1, CHEN Tianyu2, MAO Yahui2 |
1. Key Laboratory of Oil and Gas Resources and Exploration Technology, Ministry of Education, College of Resources and Environment, Yangtze University, Wuhan 430100, China; 2. Key Laboratory of Salt Lake Resources and Environment, Ministry of Natural Resources; Institute of Mineral Resources, Chinese Academy of Geological Sciences, Beijing 100037, China |
|
|
Abstract Taiyuan Formation in Eastern Ordos Basin develops a set of potential hydrocarbon source rocks in Suide area of the study area. Its total organic carbon content is between 0.75% and 5.71%, with an average content of 2.75%, and its organic maturity (Ro) is mainly between 1.43% and 2.12%, with an average of 1.80%. It is in the stage of high maturity to over maturity and has a good gas potential. In order to study the adsorption characteristics of shale from Taiyuan Formation in Eastern Ordos Basin, 10 shale samples from well SSD1 in the study area were selected for isothermal adsorption, total organic carbon content, vitrinite reflectance, X-ray diffraction and specific surface area test. On this basis, the adsorption capacity and the influencing factors of organic-rich shale from Taiyuan Formation in Eastern Ordos Basin were discussed. The results show that the Langmuir volume of 10 shale samples from Taiyuan Formation of well SSD1 in the study area is 1.11-2.41 m3/t. With the increase of pressure, the adsorption capacity increases rapidly and reaches saturation at a certain pressure. The adsorption capacity of shale is positively correlated with the total organic carbon content and clay mineral content, while the specific surface area of shale is not significantly correlated with Langmuir volume. It is possible that the pore size and morphology of the sample have some influence on gas diffusion and adsorption. The comprehensive evaluation shows that the total organic carbon content and clay mineral content are important factors affecting the adsorption capacity of shale in Taiyuan Formation, which can provide some reference for shale gas exploration in the eastern part of the basin.
|
Received: 01 May 2019
|
|
|
|
|
[1] 王香增. 陆相页岩气[M].北京:石油工业出版社,2014:1-3. [2] Curtis J B.Fractured shale-gas systems[J].AAPG Bull,2002,86(11):1921-1938. [3] 张金川,金之钧,袁明生.页岩气成藏机理和分布[J].天然气工业,2004,24(7):15-18. [4] 刘雄辉. 页岩岩石学特征及其对吸附气量的影响——以四川盆地焦石坝地区为例[D].成都:西南石油大学,2015. [5] 李艳丽. 页岩气储量计算方法探讨[J].天然气地球科学,2009,20(3):466-470. [6] 李新景,吕宗刚,董大忠,等.北美页岩气资源形成的地质条件[J].天然气工业,2009,29(5):27-32. [7] Sondergeld C H,Ambrose R J,Rai C S,et al.Micro-structural studies of gas shales[R].USA:SPE,2010:131-771. [8] 武景淑,于炳松,李玉喜.渝东南渝页1井页岩气吸附能力及其主控因素[J].西南石油大学学报:自然科学版,2012,34(4):40-48. [9] 董大忠,程克明,王玉满,等.中国上扬子区下古生界页岩气形成条件及特征[J].石油与天然气地质,2010,31(3):288-299,308. [10] 李伟,王涛,王秀玲,等.陆相页岩气水平井固井技术——以延长石油延安国家级陆相页岩气示范区为例[J].天然气工业,2014,34(12):106-112. [11] 耳闯,赵靖舟,王芮,等.鄂尔多斯盆地三叠系延长组富有机质页岩孔隙特征及发育机制[J].天然气地球科学,2016,27(7):1202-1214. [12] 唐玄,张金川,丁文龙,等.鄂尔多斯盆地东南部上古生界海陆过渡相页岩储集性与含气性[J].地学前缘,2016,23(2):147-157. [13] 高和群,曹海虹,丁安徐,等.海相页岩和陆相页岩等温吸附特性及控制因素[J].天然气地球科学,2013,24(6):1290-1297. [14] 任建华,蔺景德,张亮,等.页岩气藏吸附特征及其对产能的影响[J].新疆石油地质,2013,34(4):441-444. [15] 刘池洋,赵红格,桂小军,等.鄂尔多斯盆地演化-改造的时空坐标及其成藏(矿)响应[J].地质学报,2006,80(5):617-638. [16] 王双明. 鄂尔多斯盆地叠合演化及构造对成煤作用的控制[J].地学前缘,2017,24(2):54-63. [17] 任战利,张盛,高胜利,等.鄂尔多斯盆地构造热演化史及其成藏成矿意义[J].中国科学(D辑):地球科学,2007,37(增刊1):23-32. [18] 谢英刚,秦勇,叶建平,等.临兴地区上古生界煤系致密砂岩气成藏条件分析[J].煤炭学报,2016,41(1):181-191. [19] 吴鹏,高计县,郭俊超,等.鄂尔多斯盆地东缘临兴地区太原组桥头砂岩层序地层及沉积特征[J].石油与天然气地质,2018,39(1):66-76. [20] 李剑,罗霞,单秀琴,等.鄂尔多斯盆地上古生界天然气成藏特征[J].石油勘探与开发,2005,32(4):54-59. [21] 任泽樱,刘洛夫,高小跃,等.库车坳陷东北部侏罗系泥页岩吸附能力及影响因素分析[J].天然气地球科学,2014,25(4):632-640. [22] 韩伟,艾宁,李玉宏,等.六盘山盆地页岩吸附气赋存条件及其影响因素[J].石油实验地质,2019,41(1):127-133. [23] 于强,任战利,王宝江,等.鄂尔多斯盆地延长探区上古生界热演化史[J].地质论评,2012,58(2):303-308. [24] 任战利,于强,崔军平,等.鄂尔多斯盆地热演化史及其对油气的控制作用[J].地学前缘,2017,24(3):137-148. [25] 张洁. 鄂尔多斯盆地东部上古生界烃源岩评价[D].西安:西安石油大学,2012. [26] Ross D J K,Bustin R M.Shale gas potential of the Lower Jurassic Gordondale member,northeastern British Columbia,Canada[J].Bull Can Petrol Geol,2007,55(1):51-75. [27] 戴方尧. 川东—湘西地区龙马溪组与牛蹄塘组页岩孔隙与页岩气赋存机理研究[D].武汉:中国地质大学(武汉),2018. |
[1] |
CHEN Yi, DU Zhili, KANG Zhihong, TIAN Ya. Analysis on geological conditions of shale gas accumulation in Lower-Middle Jurassic strata of Southern Altyn Tagh[J]. , 2019, 6(4): 40-50. |
[2] |
LIU Lihong, ZHOU Xingui, ZHAO Shengmin, DU Zhili, TIAN Ya, HAN Miao. Source rock evaluation and gas genesis of well Yican 1 in Southeastern Ordos Basin[J]. , 2019, 6(4): 95-103. |
[3] |
LI Bin, CUI Chunlan, ZHANG Yueheng, HU Bowen, LUO Qun. Analysis of shale gas accumulation conditions in Niutitang Formation of Lower Cambrian in Baojing area of Hunan Province[J]. , 2019, 6(3): 22-28. |
[4] |
BAO Shujing, LI Shizhen, XU Xingyou, ZHANG Liqin, DU Zhili, LIN Tuo, TANG Yue, ZHANG Baomin, WEI Dongtao, YANG Jianguo. Progresses and achievements of the National Oil and Gas Resource Strategic Constituency Survey Project[J]. , 2019, 6(2): 1-17. |
[5] |
SONG Teng, CHEN Ke, LIN Tuo, LI Haohan, MENG Fanyang. Study on geological conditions of Upper Permian shale oil and gas in Lower Yangtze area of southern Jiangsu-Anhui Province[J]. , 2019, 6(2): 18-25. |
[6] |
LI Bin, ZHANG Yueheng, CUI Chunlan, LUO Qun, HU Bowen, ZHANG Lei. Shale gas geological characteristics and accumulation model of Longmaxi Formation in Baojing area of Hunan Province[J]. , 2019, 6(1): 17-25. |
|
|
|
|