Comparison of hydrocarbon gases (C1–C5) production from Carboniferous Donets (Ukraine) and Cretaceous Sabinas (Mexico) coals
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[1] M. Élie,et al. Comparison of generative capacities for bitumen and gas between Carboniferous coals from Donets Basin (Ukraine) and a Cretaceous coal from Sabinas-Piedras Negras Basin (Mexico) during artificial maturation in confined pyrolysis system , 2007 .
[2] T. Gentzis,et al. Horizontal degasification and characterization of coals in the Sabinas Sub-basin, Mexico: implications for CBM production , 2006 .
[3] B. Horsfield,et al. Enhanced late gas generation potential of petroleum source rocks via recombination reactions: Evidence from the Norwegian North Sea , 2006 .
[4] H. Petersen. The petroleum generation potential and effective oil window of humic coals related to coal composition and age , 2006 .
[5] Ying-ju Chang,et al. Generation of hydrocarbon gases and CO2 from a humic coal: Experimental study on the effect of water, minerals and transition metals , 2006 .
[6] R. Sachsenhofer,et al. Stratigraphic distribution of macerals and biomarkers in the Donets Basin: Implications for paleoecology, paleoclimatology and eustacy , 2006 .
[7] F. Lannuzel,et al. Artificial maturation of a high volatile bituminous coal from Asturias (NW Spain) in a confined pyrolysis system: Part II. Gas production during pyrolysis and numerical simulation , 2005 .
[8] A. Grøver,et al. Adsorption of petroleum compounds in vitrinite: implications for petroleum expulsion from coal , 2005 .
[9] M. Lewan,et al. Characterizing thermogenic coalbed gas from Polish coals of different ranks by hydrous pyrolysis , 2004 .
[10] R. Sachsenhofer,et al. Petrography and geochemistry of Carboniferous coal seams in the Donets Basin (Ukraine): implications for paleoecology , 2003 .
[11] M. Lewan,et al. Comparison of artificial maturation of lignite in hydrous and nonhydrous conditions , 2003 .
[12] H. Petersen. A RE‐CONSIDERATION OF THE “OIL WINDOW” FOR HUMIC COAL AND KEROGEN TYPE III SOURCE ROCKS , 2002 .
[13] R. Suggate,et al. Application of Rank(Sr), a maturity index based on chemical analyses of coals , 2002 .
[14] R. Wilkins,et al. Coal as a source rock for oil: a review , 2002 .
[15] P. Faure,et al. Understanding of reservoir gas compositions in a natural case using stepwise semi-open artificial maturation , 2002 .
[16] R. Stephenson,et al. The Donets Basin (Ukraine/Russia): coalification and thermal history. , 2002 .
[17] J. Clayton. Geochemistry of coalbed gas – A review , 1998 .
[18] R. Stephenson,et al. Structural features and evolution of the Dniepr-Donets Basin, Ukraine, from regional seismic reflection profiles , 1996 .
[19] P. Hatcher,et al. Experimental simulation of gas generation from coals and a marine kerogen , 1995 .
[20] J. Hunt,et al. Petroleum Geochemistry and Geology , 1995 .
[21] R. Cook,et al. A Geochemical Appraisal of Oil Generation in the Taranaki Basin, New Zealand , 1994 .
[22] P. Landais,et al. Analysis of confined pyrolysis effluents by thermodesorption-multidimensional gas chromatography , 1994 .
[23] S. Kressmann,et al. Experimental simulation in a confined system and kinetic modelling of kerogen and oil cracking , 1992 .
[24] R. Kutas,et al. Dnieper-Donets palaeorift , 1992 .
[25] W. Whitman,et al. Microbial Production and Consumption of Greenhouse Gases: Methane, Nitrogen Oxides, and Halomethanes , 1991 .
[26] Michael A. Wilson,et al. Molecular structure of coals: a debate , 1989 .
[27] B. Horsfield,et al. The micro-scale simulation of maturation: outline of a new technique and its potential applications , 1989 .
[28] M. Pawlewicz,et al. Characterization of coal-derived hydrocarbons and source-rock potential of coal beds, San Juan Basin, New Mexico and Colorado, U.S.A. , 1989 .
[29] M. Monthioux. Expected mechanisms in nature and in confined-system pyrolysis , 1988 .
[30] J. Klein,et al. ENTSTEHUNG VON ERDGAS AUS KOHLIGEN SEDIMENTEN , 1975 .
[31] Z. D. Cserna. Orogenesis in time and space in Mexico , 1960 .
[32] V. Burkle-Vitzthum,et al. Kinetic effect of alkylaromatics on the thermal stability of hydrocarbons under geological conditions , 2004 .
[33] N. Torres,et al. Coalbed Methane Resources of the Sabinas Basin, Coahuila, Mxico , 2003 .
[34] S. E. Antuñano. Geologic Evolution and Gas Resources of the Sabinas Basin in Northeastern Mexico , 2001 .
[35] Rice,et al. Composition and Origins of Coalbed Gas , 1993 .
[36] Dudley D. Rice,et al. Hydrocarbons from coal , 1993 .
[37] M. Monthioux,et al. Comparison between natural and artificial maturation series of humic coals from the Mahakam delta, Indonesia , 1985 .
[38] F. Meissner. Cretaceous and Lower Tertiary Coals As Source For Gas Accumulations in the Rocky Mountain Area , 1984 .
[39] P. Bertrand. Geochemical and petrographic characterization of humic coals considered as possible oil source rocks , 1984 .
[40] P. Given. An Essay on the Organic Geochemistry of Coal , 1984 .
[41] D. Welte,et al. Gas Generation and Migration in the Deep Basin of Western Canada , 1984 .
[42] E. Stach,et al. Stach's Textbook of coal petrology , 1975 .