[1]. Mutyala, S., Fairbridge, C., Paré, J. J., Bélanger, J. M., Ng, S., & Hawkins, R. (2010). Microwave applications to oil sands and petroleum, A review, Fuel Processing Technology, 91(2): 127-135, doi.org/10.1016/j.fuproc.2009.09.009.##
[2]. Zhu, J., Yang, Z., Li, X., Qi, S., Fang, Q., & Ding, Y. (2019). The experimental study of microwave heating on the microstructure of oil shale samples. Energy Science & Engineering, 7(3), 809-820. doi.org/10.1002/ese3.311Digital Object Identifier (DOI).##
[3]. Wang, Z., Deng, S., Gu, Q., Cui, X., Zhang, Y., Gorelick, S., Wang, H. (2019). Subcritical water extraction of Huadian oil shale under isothermal condition and pyrolysate analysis, Energy & fuels, 28(4): 2305-2313, doi.org/10.1021/ef5000062.##
[4]. Zendehboudi Sohrab, Shale Oil and Gas Handbook, ISBN: 978-0-12-802100-, 2017 Elsevier Inc.pp 334.##
[5]. Zhu, J., Yang, Z., Li, X., Wang, N., & Jia, M. (2018). Evaluation of different microwave heating parameters on the pore structure of oil shale samples. Energy Science & Engineering, 6(6), 797-809. doi.org/10.1002/ese3.253Digital Object Identifier (DOI).##
[6]. Zhao, L., Yang, D., Kang, Z. Q., & Zhao, Y. S. (2015). Gas generation law of oil shale heated by superheated steam. Journal of Taiyuan University of Technology, 46(3), 323-326.##
[7]. Naderi, H., Shekarifard, A., & Taheri Shakib, J. (2024). Investigating the Effects of Heating Rate and Granulation on Extracted Oil-Shale using Microwaves and Conventional Heating Methods. Journal of Petroleum Science and Technology, 14(1), 71-84. DOI:10.22078/jpst.2024.5375.1928.##
[8]. Tong, J., Han, X., Wang, S., & Jiang, X. (2011). Evaluation of structural characteristics of Huadian oil shale kerogen using direct techniques (solid-state 13C NMR, XPS, FT-IR, and XRD). Energy & fuels, 25(9), 4006-4013.##
[9]. Reddy, B. R., Ashok, I., Vinu, R. (2025). Preparation of carbon nanostructures from medium and high ash Indian coals via microwave-assisted pyrolysis. Advanced Powder Technology, 31(3), 1229-1240.##
[10]. Taheri-Shakib, J., Shekarifard, A., & Naderi, H. (2017a). The experimental investigation of effect of microwave and ultrasonic waves on the key characteristics of heavy crude oil, Journal of Analytical and Applied Pyrolysis, 128, 92-101, doi.org/10.1016/j.jaap.2017.10.021.##
[11]. Taheri-Shakib, J., Shekarifard, A., & Naderi, H. (2017b). The experimental study of effect of microwave heating time on the heavy oil properties: Prospects for heavy oil upgrading, Journal of Analytical and Applied Pyrolysis, 128, 176-186, doi.org/10.1016/j.jaap.2017.10.012.##
[12]. Taheri-Shakib, J., Shekarifard, A., & Naderi, H. (2018a). Experimental investigation of comparing electromagnetic and conventional heating effects on the unconventional oil (heavy oil) properties: Based on heating time and upgrading, Fuel, 228, 243-253, doi.org/10.1016/j.fuel.2018.04.141.##
[13]. Naderi H., Shekarifard A., Taheri Shakib, J. (2023) Considering and assessing electron accelerators' approaches on the amount and quality of the produced oil from Iran's oil shail sample, Petroleum Research, 129, 2023, 43-57.##