Lower Cambrian shale and lower Silurian shale are both typical of oil-prone kerogen and siliceous composition, but different in thermal maturities. Porosity differences were determined in marine shales between the two shales. Measurements were utilized including organic geochemistry, XRD, scanning electron microscopy (SEM) and N2 gas adsorption. Pore volume (PV) of lower Silurian shale was approximately 1.5 times higher than that of lower Cambrian shale, and pore surface area (PSA) of lower Silurian shale was almost 2.5 times higher than that of lower Cambrian shale. Lower Cambrian shale and lower Silurian shale possess similar materials, but distinctive thermal degrees. Evolution mechanisms of different types of pores, especially organic m...
Tectonism is one of the major controlling factors of shale gas accumulation and enrichment in China....
The research on pore structure and heterogeneity of shale reservoirs has always been a hotspot in th...
The recoverable resource of shale gas is 25 trillion cubic meter, 33% of which is stored in transiti...
This study is predominantly about the differences in shale pore structure and the controlling factor...
The Lower Paleozoic marine shale in southern China has undergone several strong tectonic transformat...
To study organic matter and pore characteristics of the Lower Cambrian Niutitang organic-rich shales...
Organic-rich shales from Lower Silurian are widely distributed in the Middle Yangtze region, central...
The Silurian Longmaxi (S1l) marine shale and Jurassic Dongyuemiao (J1d) lacustrine shale in the Sich...
The shale reservoirs of the Lower Cambrian Qiongzhusi Formation are widely distributed in the Sichua...
The pore structure characterization and its controlling factors in overmature shales are keys to und...
Organic matter (OM)-rich shale in the Yanchang Formation is recognized as a promising hybrid shale o...
The porosities of the Lower Cambrian shale and Upper Ordovician-Lower Silurian marine shale from the...
To compare the micropore structure of marine-continental transitional shale with marine shale, organ...
AbstractData was acquired from both the drillings and core samples of the Lower Paleozoic Qiongzhusi...
Due to shortage of conventional resources, tight/shale oil/gas reservoirs have become increasingly i...
Tectonism is one of the major controlling factors of shale gas accumulation and enrichment in China....
The research on pore structure and heterogeneity of shale reservoirs has always been a hotspot in th...
The recoverable resource of shale gas is 25 trillion cubic meter, 33% of which is stored in transiti...
This study is predominantly about the differences in shale pore structure and the controlling factor...
The Lower Paleozoic marine shale in southern China has undergone several strong tectonic transformat...
To study organic matter and pore characteristics of the Lower Cambrian Niutitang organic-rich shales...
Organic-rich shales from Lower Silurian are widely distributed in the Middle Yangtze region, central...
The Silurian Longmaxi (S1l) marine shale and Jurassic Dongyuemiao (J1d) lacustrine shale in the Sich...
The shale reservoirs of the Lower Cambrian Qiongzhusi Formation are widely distributed in the Sichua...
The pore structure characterization and its controlling factors in overmature shales are keys to und...
Organic matter (OM)-rich shale in the Yanchang Formation is recognized as a promising hybrid shale o...
The porosities of the Lower Cambrian shale and Upper Ordovician-Lower Silurian marine shale from the...
To compare the micropore structure of marine-continental transitional shale with marine shale, organ...
AbstractData was acquired from both the drillings and core samples of the Lower Paleozoic Qiongzhusi...
Due to shortage of conventional resources, tight/shale oil/gas reservoirs have become increasingly i...
Tectonism is one of the major controlling factors of shale gas accumulation and enrichment in China....
The research on pore structure and heterogeneity of shale reservoirs has always been a hotspot in th...
The recoverable resource of shale gas is 25 trillion cubic meter, 33% of which is stored in transiti...