Geochemical characteristics and genesis of natural gas in the Upper Triassic Xujiahe Formation in the Sichuan Basin

Author:

Tan Kaijun1,Chen Juan1,Yao Jun1,Wu Qingpeng1,Shi Jianglong1

Affiliation:

1. Research Institute of Petroleum Exploration and Development Northwest Branch , Lanzhou , 730020 , China

Abstract

Abstract In recent years, the geochemical characteristics, genesis and sources of natural gas in the Upper Triassic Xujiahe Formation in the Sichuan Basin have received extensive attention, but their genesis and sources are still controversial. In this study, taking the natural gas from the Xujiahe Formation in the Sichuan Basin as an example, the source and genesis of the natural gas have been systematically analyzed. The results show that the natural gas of the Xujiahe Formation in the Sichuan Basin is dominated by methane, followed by a small amount of CO2 and N2; only the southern Sichuan area contains a small amount of H2S, which comes from the supply of the underlying carbonate source rocks. Except for the western Sichuan Basin, the drying coefficient of the natural gas is generally less than 0.95 (wet gas). Furthermore, the composition of the natural gas is mainly controlled by the maturity of source rocks. The carbon isotope of ethane in natural gas ranges from −33.9 to −21.5‰, and the hydrogen isotope of methane ranges from −188‰ to −151‰. The carbon and hydrogen isotope values are higher in the western Sichuan Basin than in the central, northeastern and southern Sichuan Basin. The identification of the origin of natural gas and the comparison of gas sources show that the natural gas in the Xujiahe Formation is mainly coal-derived gas from its own coal-measure source rocks; the natural gas in the northern part of the southern Sichuan Basin is oil-derived gas originating from the Changxing Formation and the Silurian marine source rocks; however, the natural gas in the northeastern Sichuan Basin is a mixture of coal-derived and oil-derived gases. In addition, the carbon and hydrogen isotopes in some natural gas samples from the Xujiahe Formation have inversions of δ13C1 > δ13C2, δ13C2 > δ13C3, δ13C3 > δ13C4, and δD2 > δD3, and the magnitude of the inversions is small. It is considered to be caused by the mixing of gases from the same source, as well as the mixing of coal-derived and oil-derived gases.

Publisher

Walter de Gruyter GmbH

Subject

General Earth and Planetary Sciences,Environmental Science (miscellaneous)

Reference50 articles.

1. Liang Y, Li Y, Fu X, Yuan X, Yang J, Zheng J. Origin and wholehydrocarbon geochemical characteristics of oil and gas from Xujiahe group of Chuanzhong Chuannan Transitional Belt. Nat Gas Geosci. 2006;17(4):593–6.

2. Hu G, Wang W, Liao F. Geochemical characteristics and its influencing factors of light hydrocarbon in coal-derived gas: A case study of Sichuan Basin. Acta Petrol Sin. 2012;28(3):905–16.

3. Wan M, Xie B, Chen S, Zou C, Zhang Q, Ran Y. Hydrocarbon source correlation of the upper Triassic reservoirs in the Sichuan Basin. Nat Gas Ind. 2012;32(3):22–4.

4. Liu Y, Chen L, Tang Y, Zhang X, Qiu Z. Synthesis and characterization of nano-SiO2@octadecylbisimidazoline quaternary ammonium salt used as acidizing corrosion inhibitor. Rev Adv Mater Sci. 2022;61(1):186–94.

5. Wu X, Wang P, Liu Q. The source of natural gas reservoir in the 5th member of the Upper Triassic Xujiahe Formation in Xinchang Gas Field, the Western Sichuan Depression and its implication. Nat Gas Geosci. 2016;27(8):1409–18.

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