Assessment of the petroleum generation potential of Lower Carboniferous coals, North Sea: evidence for inherently gas-pronesource rocks
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[1] H. Petersen. The petroleum generation potential and effective oil window of humic coals related to coal composition and age , 2006 .
[2] H. Petersen,et al. Oil generation capacity of coals as a function of coal age and aliphatic structure , 2006 .
[3] J. Lie,et al. Maturity and source-rock potential of Palaeozoic sediments in the NW European Northern Permian Basin , 2006, Petroleum Geoscience.
[4] E. Johannessen,et al. THE PALEOCENE SANDY SIRI FAIRWAY: AN EFFICIENT “PIPELINE” DRAINING THE PROLIFIC CENTRAL GRABEN? , 2006 .
[5] C. Walters,et al. Biomarkers and isotopes in petroleum systems and earth history , 2005 .
[6] H. Petersen,et al. Modelling of the hydrocarbon generation history and volumetric considerations of the coal-sourced Lulita Field, Danish North Sea , 2004, Petroleum Geoscience.
[7] D. Evans,et al. The millennium atlas : petroleum geology of the central and northern North Sea , 2003 .
[8] D. Gautier. Carboniferous-Rotliegend total petroleum system; description and assessment results summary , 2003 .
[9] L. Snowdon,et al. Guidelines for assessing the petroleum potential of coaly source rocks using Rock-Eval pyrolysis , 2002 .
[10] H. Petersen. A RE‐CONSIDERATION OF THE “OIL WINDOW” FOR HUMIC COAL AND KEROGEN TYPE III SOURCE ROCKS , 2002 .
[11] H. Petersen,et al. Source rock analysis and petroleum geochemistry of the Trym discovery, Norwegian North Sea: a Middle Jurassic coal-sourced petroleum system , 2001 .
[12] R. Sykes. Depositional and Rank Controls on the Petroleum Potential of Coaly Source Rocks , 2001 .
[13] U. Schmitz. Petroleum Geology of the North Sea , 2000 .
[14] A. Carr. SUPPRESSION AND RETARDATION OF VITRINITE REFLECTANCE, PART 1. FORMATION AND SIGNIFICANCE FOR HYDROCARBON GENERATION , 2000 .
[15] H. Petersen,et al. COAL‐GENERATED OIL: SOURCE ROCK EVALUATION AND PETROLEUM GEOCHEMISTRY OF THE LULITA OILFIELD, DANISH NORTH SEA , 2000 .
[16] L. Nielsena,et al. Petroleum potential of Oligocene lacustrine mudstones and coals at Dong Ho , Vietnam Ð an outcrop analogue to terrestrial source rocks in the greater Song Hong Basin , 2000 .
[17] A. Schimmelmann,et al. D/H isotope ratios of kerogen, bitumen, oil, and water in hydrous pyrolysis of source rocks containing kerogen types I, II, IIS, and III , 1999 .
[18] J. Damsté,et al. The effect of clay minerals on diasterane/sterane ratios , 1998 .
[19] H. Petersen,et al. Morphology, formation and palaeo-environmental implications of naturally formed char particles in coals and carbonaceous mudstones , 1998 .
[20] P. Rosenberg,et al. Petroleum potential and depositional environments of Middle Jurassic coals and non-marine deposits, Danish Central Graben, with special reference to the Søgne Basin , 1998 .
[21] P. Rosenberg,et al. REFLECTANCE RETARDATION (SUPPRESSION) AND SOURCE ROCK PROPERTIES RELATED TO HYDROGEN‐ENRICHED VITRINITE IN MIDDLE JURASSIC COALS, DANISH NORTH SEA , 1998 .
[22] C. Diessel,et al. Isometamorphic variations in the reflectance and fluorescence of vitrinite—a key to depositional environment , 1998 .
[23] B. Horsfield,et al. Using natural maturation series to evaluate the utility of parallel reaction kinetics models: an investigation of Toarcian shales and Carboniferous coals, Germany , 1998 .
[24] A. Jenssen,et al. Controls on the oil and gas potential of humic coals , 1998 .
[25] J. Boudou,et al. Predicting generation and expulsion of paraffinic oil from vitrinite-rich coals , 1998 .
[26] M. Lewan. Experiments on the role of water in petroleum formation , 1997 .
[27] R. Bustin,et al. Micro-FTIR spectroscopy of liptinite macerals in coal , 1998 .
[28] P. Farrimond,et al. Three series of rearranged hopanes in Toarcian sediments (northern Italy) , 1996 .
[29] H. Petersen,et al. Organic facies development within Middle Jurassic coal seams, Danish Central Graben, and evidence for relative sea-level control on peat accumulation in a coastal plain environment , 1996 .
[30] M. Mastalerz,et al. A geochemical study of macerals from a Miocene lignite and an Eocene bituminous coal, Indonesia , 1996 .
[31] R. Bustin,et al. Sulfur in the Changuinola peat deposit, Panama, as an indicator of d the environments of deposition of peat and coal , 1996 .
[32] R. A. Noble,et al. Maturation effects on absolute biomarker concentration in a suite of coals and associated vitrinite concentrates , 1995 .
[33] T. Dodd,et al. Simple kinetic models of petroleum formation. Part II: oil-gas cracking , 1995 .
[34] Andrew S. Pepper,et al. Simple kinetic models of petroleum formation. Part III : Modelling an open system , 1995 .
[35] M. Pawlewicz,et al. Calculation of Vitrinite Reflectance from Thermal Histories and Peak Temperatures: A Comparison of Methods , 1994 .
[36] Van Krevelen,et al. Coal: Typology - Physics - Chemistry - Constitution , 1993 .
[37] G. Drozdzewski. The Ruhr coal basin (Germany): structural evolution of an autochthonous foreland basin , 1993 .
[38] P. Albrecht,et al. C(14a)-homo-26-nor-17α-hopanes, a novel and unexpected series of molecular fossils in biodegraded petroleum , 1993 .
[39] P. D. Guion,et al. Carboniferous , 1992, Geological Society, London, Memoirs.
[40] C. Diessel. Coal Bearing Depositional Systems , 1992 .
[41] R. Raiswell,et al. The Carboniferous of the Outer Moray Firth Basin, quadrants 14 and 15, Central North Sea , 1990 .
[42] R. Littke,et al. Petroleum generation and migration in coal seams of the Carboniferous Ruhr Basin, northwest Germany , 1990 .
[43] P. Robert. The thermal setting of Carboniferous basins in relation to the Variscan orogeny in Central and Western Europe , 1989 .
[44] R. Littke,et al. Palaoecologic trends and petroleum potential of Upper carboniferous coal seams of western Germany as revealed by their petrographic and organic geochemical characteristics , 1989 .
[45] A. Scott. Observations on the nature and origin of fusain , 1989 .
[46] P. R. Solomon,et al. FT-i.r. analysis of coal: 2. Aliphatic and aromatic hydrogen concentration , 1988 .
[47] J. Parnell,et al. Lacustrine petroleum source rocks in the Dinantian Oil Shale Group, Scotland: a review , 1988, Geological Society, London, Special Publications.
[48] F. Goodarzi. Characteristics of pyrolytic carbon in Canadian coals , 1985 .
[49] Shih-Hsien Wang,et al. Ruthenium tetroxide catalysed oxidation of Illinois No. 6 coal. The formation of volatile monocarboxylic acids , 1985 .
[50] P. Painter,et al. Determination of aromatic and aliphatic CH groups in coal by FT-i.r.: 1. Studies of coal extracts , 1984 .
[51] P. Painter,et al. Determination of aromatic and aliphatic CH groups in coal by FT-i.r.: 2. Studies of coals and vitrinite concentrates , 1984 .
[52] A. Cohen,et al. Occurrence and distribution of sulfur in peat-forming environments of southern Florida , 1984 .
[53] A. Whiteman,et al. Geological atlas of western and central Europe , 1983 .
[54] R. W. Snyder,et al. Concerning the Application of FT-IR to the Study of Coal: A Critical Assessment of Band Assignments and the Application of Spectral Analysis Programs , 1981 .