潘结南 照片

潘结南

博士 教授

所属大学: 河南理工大学

所属学院: 资源环境学院

邮箱:
panjienan@163.com

个人主页:
http://218.196.240.101/npgms/dsquery?zy=081800&code=10460100035

个人简介

潘结南,男,汉族,1972年8月生,博士、教授,资源环境学院博士生导师。 科研情况:         [1] 2018.01~2021.12, 构造煤微裂隙结构演化特征及对煤储层渗透性控制(41772162),国家自然科学基金面上项目, 77万

[2] 2014.01~2017.12,构造煤甲烷吸附/解吸特征及与其微晶结构耦合机理[3](41372161),国家自然科学基金面上项目,80万

[3] 2017.01~2018.12,煤层气储层物性及其地质控制(17IRTSTHN025),河南省高校科技创新团队支持计划项目,100万

[4] 2011.01~2015.12,煤层气,中国科学院战略性先导科技专项“碳专项”子课题(XDA05010304),200万

[5] 2011.01~2015.12,西北地区煤碳开发中的碳排放,中国科学院战略性先导科技专项“碳专项”子课题(XDA05030102),200万

[6] 2013.01~2015.12,构造变形煤纳米级孔隙特征及其构造演化机制研究(13HASTIT030),河南省高校科技创新人才支持计划项目,60万

[7] 2011.01~2013.12,煤孔隙结构演化的构造制约及瓦斯富集机理研究(41072153),国家自然科学基金面上项目,49万

研究领域

煤层气(页岩气)地质、煤地质,煤炭(煤层气)开发利用中碳排放

近期论文

[1] Pan Jienan*, Lv Minmin, Hou Quanlin, et al. Coal microcrystalline structural changes related to methane adsorption/desorption. Fuel, 2019, 239: 13-23.

[2] Niu Qinghe, Pan Jienan*, Jin Yi, et al. Fractal study of adsorption-pores in pulverized coals with various metamorphism degrees using N2 adsorption, X-ray scattering and image analysis methods. Journal of Petroleum Science and Engineering, 2019, 176: 584-593

[3] Wang Zhenzhi, Pan Jienan*, Hou Quanlin, et al. Changes in the anisotropic permeability of low-rank coal under varying effective stress in Fukang mining area, China. Fuel, 2018,234:1481-1497

[4] Shi Xinghua, Pan Jienan*, Hou Quanlin, et al. Micrometer-scale fractures in coal related to coal rank based on micro-CT scanning and fractal theory. Fuel, 2018,212:162-172

[5] Wang Zhenzhi, Pan Jienan*, Hou Quanlin,et al. Anisotropic characteristics of low-rank coal fractures in the Fukang mining area, China. Fuel, 2018,211: 182-193

[6] Pan Jienan*, Lv minmin, Bai Heling, et al Effects of metamorphism and deformation on the coal macromolecular structure by Laser Raman Spectroscopy, Energy & Fuels, 2017, 31 (2): 1136–1146

[7] Pan Jienan*, Peng Chao, Wan Xiaoqiang, et al. Pore structure characteristics of coal-bearing organic shale in Yuzhou coalfield, China using low pressure N2 adsorption and FESEM methods. Journal of Petroleum Science and Engineering, 2017, 153: 234-243

[8] Wang Sen, Pan Jienan*, Ju Yiwen, et al. The super-micropores in macromolecular structure of tectonically deformed coal using high- resolution transmission electron microscopy. Journal of Nanoscience and Nanotechnology 2017,17: 6982–6990

[9] Pan Jienan*, Niu Qinghe, Wang Kai, et al. The closed pores of tectonically deformed coal studied by small-angle X-ray scattering and liquid nitrogen adsorption. Microporous and Mesoporous Materials, 2016,224:245-252

[10] Pan Jienan*, Wang Kai, Hou quanlin, et al. Micro-pores and fractures of coals analysed by field emission scanning electron microscopy and fractal theory. Fuel, 2016, 164:277-285

[11] Pan Jienan*, Wang Sen, Ju Yiwen, et al. Quantitative study of the macromolecular structures of tectonically deformed coal using high-resolution transmission electron microscopy, Journal of Natural Gas Science and Engineering, 2015, 27: 1852-1862

[12] Pan Jienan*, Zhu Haitao, Hou Quanlin, et al. Macromolecular and pore structures of Chinese tectonically deformed coal studied by atomic force microscopy. Fuel, 2015,139:94-101

[13] Pan Jienan*, Sun Teng, Hou Quanlin, et al. Examination of the formation phases of coalbed methane reservoirs in the Lu’an mining area (China) based on a fluid inclusion analysis and Ro method. Journal of Natural Gas Science and Engineering, 2015 22: 73-82

[14] Pan Jienan*, Zhao Yanqing, Hou Quanlin, et al. Nanoscale pores in coal related to coal rank and deformation structures. Transport in Porous Media, 2015,107:543-554

[15] Wang Haichao, Pan Jienan*, Wang Sen, et al. Relationship between macro- fracture density, P-wave velocity, and permeability of coal, Journal of Applied Geophysics, 2015, 117: 111-117

[16] Pan Jienan*, Wang Haichao, Wang kai, et al. Relationshiop of fractures in coal with lithotype and thickness of coal lithotype. Geomechanics and Engineering, 2014, 6(6):613-624

[17] Pan Jienan*, Meng Zhaoping, Hou Quanlin, et al. Coal strength and Young’s modulus related to coal rank, compressional velocity and maceral composition. Journal of Structural Geology, 2013, 54:129-135

[18] Pan Jienan*, Zhang Xiaomin, Yiwen Ju, et al. Stable isotope and water quality analysis of coal bed methane produced water in the southern Qinshui Basin, China. Membrane Water Treatment, 2013,4(4):265-275

[19] Pan Jienan*, Hou Quanlin, Ju, Yiwen, et al. Coalbed methane sorption related to coal deformation structures at different temperatures and pressures, Fuel, 2012,102:760-765