Organic matter heterogeneity and shale oil significance in Triassic Zhangjiatan shale, Ordos Basin, China

Author:

Li Xiaoyan123ORCID,Tuo Jincai12,Wu Chenjun4ORCID,Xin Honggang56,Zhang Mingfeng12,Zheng Junwei1,Ma Xiaofeng12

Affiliation:

1. Northwest Institute of Eco-Environment and Resources, Chinese Academy of Sciences, Lanzhou, China

2. Key Laboratory of Petroleum Resources, Gansu Province, Lanzhou, China

3. University of Chinese Academy of Sciences, Beijing, China

4. College of Resources and Environment, Yangtze University, Wuhan, China

5. National Engineering Laboratory for Exploration and Development of Low-Permeability Oil & Gas Fields, Xi'an, China

6. Exploration and Development Research Institute of PetroChina Changqing Oilfield Company, Xi'an, China

Abstract

Organic matter heterogeneity exerts an important impact on the generation, evaluation, and exploitation of shale oil resources. In the past, only a limited number of analytical samples that represented the contribution or influence of high or low organic matter abundance intervals were used to represent an entire set of thick source rocks, and based on this limitation, occasionally researchers have reached incorrect conclusions. Here, the heterogeneity of organic matter and its significance to shale oil in the Triassic Zhangjiatan shale of the Ordos Basin were discussed based on sedimentary and geochemical analyses. Our results indicate that (1) the Chang 73 shale within the study area is characterized by high abundance, good quality, strong heterogeneity, and segmented enrichment in the vertical profile. The primary organic matter type was type II1, and this was followed by types I, II2, and III that exhibited three changing trends in the vertical profile. Organic matter maturity is primarily at the immature stage. (2) Additionally, we observed that the organic matter heterogeneity of Chang 73 shale was related to changes in lithology, sedimentary environment, paleoproductivity, terrigenous influence, and event action (such as volcanism and hydrothermal processes). The abundance of organic matter is the result of the coupling control of these processes. In the process of organic matter deposition, if volcano or hydrothermal activities occurred, the organic matter was abnormally enriched, and the total organic carbon content exceeded 20% and could even be as high as 40%. (3) Finally, we observed at least nine enrichment layers that were controlled by the coupling of different geological factors, and there were four potential target resource layers corresponding to the hydrothermal sedimentary area.

Funder

the National Natural Science Foundation for Young Scholar of China

the National Natural Science Foundation of China

Publisher

SAGE Publications

Subject

Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment

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