Bibliografia:
| 1. LI, M.; PANG, X.; XIONG, L.; HU, T.; CHEN, D.; ZHAO, Z.; HUI, S. Application of mathematical statistics to shale gas-bearing property evaluation and main controlling factor analysis. Scientific Reports, v. 12, n. 1, 2022. ATWAH, I.; MOLDOWAN, J. M.; KOSKELLA, D.; DAHL, J. Application of higher diamondoids in hydrocarbon mudrock systems. Fuel, v. 284, 2021. CHEN, Z.; CHEN, L.; WANG, G.; ZOU, C.; JIANG, S.; SI, Z.; GAO, W. Applying isotopic geochemical proxy for gas content prediction of Longmaxi shale in the Sichuan Basin, China. Marine and Petroleum Geology, v. 116, n. July 2019, 2020. DAHL, J. E.; MOLDOWAN, J. M.; PETERS, K. E.; CLAYPOOL, G. E.; ROONEY, M. A.; MICHAEL, G. E.; MELLO, M. R.; KOHNEN, M. L. Diamondoid hydrocarbons as indicators of natural oil cracking. Nature, v. 399, n. 6731, p. 5457, 6 maio 1999. DE SOUSA, A. A. C.; SOUSA, E. S.; ROCHA, M. S.; SOUSA JUNIOR, G. R.; DE SOUZA, I. V. A. F.; BRITO, A. S.; SOUZA, A. A.; LOPES, J. A. D.; NOGUEIRA, A. C. R.; DE LIMA, S. G. Aliphatic and aromatic biomarkers of the Devonian source rocks from the Western Parnaíba Basin Brazil: Pimenteiras Formation. Journal of South American Earth Sciences, v. 99, 2020. LI, M.; PANG, X.; XIONG, L.; HU, T.; CHEN, D.; ZHAO, Z.; HUI, S. Application of mathematical statistics to shale gas-bearing property evaluation and main controlling factor analysis. Scientific Reports, v. 12, n. 9859, p. 115, 2022. LUO, P.; ZHONG, N.; KHAN, I.; WANG, X.; WANG, H.; LUO, Q.; GUO, Z. Effects of pore structure and wettability on methane adsorption capacity of mud rock: Insights from mixture of organic matter and clay minerals. 2019. MA, Y.; PAN, J.; FU, D.; WANG, Y.; WANG, Y.; CHANG, D.; CHENG, L.; FU, W. The organic geochemistry, pore structure and methane adsorption/storage capacity of lacustrine shales from the Cretaceous Madongshan Formation. Journal of Natural Gas Science and Engineering, v. 96, p. 18755100, 2021. MEMON, A.; LI, A.; MEMON, B. S.; MUTHER, T.; HAN, W.; KASHIF, M.; TAHIR, M. U.; AKBAR, I. Gas Adsorption and Controlling Factors of Shale: Review, Application, Comparison and ChallengesNatural Resources Research, 2021. Disponível em: <https://doi.org/10.1007/s11053-020-09738-9>. Acesso em: 8 set. 2022 SOUSA, E. DA S.; SOUSA JÚNIOR, G. R.; SILVA, A. F.; REIS, F. DE A. M.; SOUSA, A. A. C.; CIOCCARI, G. M.; CAPILLA, R.; DE SOUZA, I. V. A. F.; IMAMURA, P. M.; RODRIGUES, R.; LOPES, J. A. D.; DE LIMA, S. G. Biomarkers in Cretaceous sedimentary rocks from the Codó Formation - Parnaíba Basin: Paleoenvironmental assessment. Journal of South American Earth Sciences, v. 92, p. 265281, 2019. PETERS, K. E.; WALTERS, C. C.; MOLDOWAN, J. M. The Biomarker Guide 2: Biomarkers and Isotopes in the Petroleum Exploration and Earth History. 2. ed. Cambridge: Cambridge University Press, 2005a. PETERS, K. E.; WALTERS, C. C.; MOLDOWAN, J. M. The Biomarker Guide 1: Biomarkers and Isotopes in the Environment and human History. 2. ed. Cambridge: Cambridge University Press, 2005b. TANG, L.; SONG, Y.; LI, Q.; PANG, X.; JIANG, Z.; LI, Z.; TANG, X.; YU, H.; SUN, Y.; FAN, S.; ZHU, L. A Quantitative Evaluation of Shale Gas Content in Different Occurrence States of the Longmaxi Formation: A New Insight from Well JY-A in the Fuling Shale Gas Field, Sichuan Basin. 2019. ZHAN, H.; FANG, F.; LI, X.; HU, Z.; ZHANG, J. Shale Reservoir Heterogeneity: A Case Study of Organic-Rich Longmaxi Shale in Southern Sichuan, China. Energies, v. 15, n. 3, 2022. ZHANG, L.; LI, B.; JIANG, S.; XIAO, D.; LU, S.; ZHANG, Y.; GONG, C.; CHEN, L. Heterogeneity characterization of the lower Silurian Longmaxi marine shale in the Pengshui area, South China. International Journal of Coal Geology, v. 195, n. June, p. 250266, 2018.
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