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References

1
Aplin, A. C., E. J. Warren, S. M. Grant, and A. G. Robinson, Mechanisms of quartz cementation in North Sea reservoir sands: constraints from fluid compositions, Am. Assc. Petrol. Geol. Studies in Geology, 36, 5-22, 1993.

2
Awwiller, D. N., Illite/smectite formation and potassium mass transfer during burial diagenesis of mudrocks: a study from the Texas Gulf Coast Paleocene-Eocene, J. of Sed. Petrol., 63, 501-512, 1993.

3
Baker, J. C., P. J. R. Uwins, and I. D. R. Mackinnon, ESEM study of authigenic chlorite acid sensitivity in sandstone reservoirs, J. of Petrol. Sci. and Eng., 8, 269-277, 1993.

4
Banner, J., L. R. Edwards, T. N. Kimbell, and J. D. Humphrey, Timing of mixing-zone cementation in a Late Pleistocene coral reef, Barbados, West Indies, Am. Assc. Petrol. Geol. Annual Convention Abstracts, 99, 1994.

5
Barnes, D. A., J-P. Girard, and J. L. Aronson, K-Ar dating of illite diagenesis in the Middle Ordovician St. Peter Sandstone, Central Michigan Basin, USA: implications for thermal history, Soc. Econ. Paleon. Mineral. Spec. Pub., 47, 35-48, 1992.

6
Barth, T., and K. Bjø rlykke, Organic acids from source rock maturation: generation potentials, transport mechanisms and relevance for mineral diagenesis, Applied Geochemistry, 8, 317-324, 1993.

7
Bjø rlykke, K., and K. Gran, Salinity variations in North Sea formation waters: implications for large-scale fluid movements, Mar. and Petrol. Geol., 11, 5-9, 1994.

8
Bjø rlykke, K., and P. K. Egeberg, Quartz cementation in sedimentary basins, Am. Assc. Petrol. Geol. Bulletin, 77, 1538-1548, 1993.

9
Bloch, J., and I. Hutcheon, Silica mass transport during shale diagenesis: are shales a source or sink for silica? Proc. 7th Internat. Symp. on Water-Rock Interaction, 1157-1160, 1992.

10
Bloch, S., and K. P. Helmold, Approaches to predicting reservoir quality in sandstones, Am. Assc. Petrol. Geol. Bulletin, 79, 97-115, 1995.

11
Blum, A. E., and D. D. Eberl, Determination of clay particle thicknesses and morphology using Scanning Force Microscopy, Proc. 7th Internat. Symp. on Water-Rock Interaction, 133-136, 1992.

12
Boles, J. R., Evidence for oil-derived organic acids in reservoirs, Proc. 7th Internat. Symp. on Water-Rock Interaction, 311-314, 1992.

13
Brantley, S. L., Kinetics of dissolution and precipitation---experimental and field results, Proc. 7th Internat. Symp. on Water-Rock Interaction, 3-6, 1992.

14
Bryant, S., C. Cade, and D. Mellor, Permeability prediction from geologic models, Am. Assc. Petrol. Geol. Bulletin, 77, 1338-1350, 1993.

15
Clauer, N., J. D. Cocker, and S. Chaudhuri, Isotopic dating of diagenetic illites in reservoir sandstones: influence of the investigator effect, Soc. Econ. Paleon. Mineral. Spec. Pub., 47, 5-12, 1992.

16
Coleman, M. L., and H. G. M. Eggenkamp, Chlorine stable isotopes as a tracer of waters expelled from mudrocks, U. S. Geol. Surv. Circular, 1107, 64, 1994.

17
Crossey, L. J., Thermal degradation of aqueous oxalate species, Geochimica et Cosmochimica Acta, 55, 1515-1527, 1991.

18
de Caritat, P., I. Hutcheon, and J. Walshe, Chlorite geothermometry: a review, Clays and Clay Minerals, 41, 219-239, 1993.

19
Ehrenberg, S. N., Preservation of anomalously high porosity in deeply buried sandstones by grain-coating chlorite: examples from the Norwegian Continental Shelf, Am. Assc. Petrol. Geol. Bulletin, 75, 1260-1286, 1993.

20
Ehrlich, R. S. J. Crabtree, K. O. Horkowitz, and J. P. Horkowitz, Petrography and reservoir physics I: objective classification of reservoir porosity, Am. Assc. Petrol. Geol. Bulletin, 75, 1547-1562, 1991.

21
Elias, B. P., A. J. Hajash Jr., and T. Dewers, The effects of clay on intergranular pressure solution: an experimental study, Geol. Soc. Amer. Abst. with Prog., 25, 335, 1993.

22
Elliot, T., C. J. Ballentine, R. K. O'Nions, and T. Ricchiuto, Carbon, helium, neon and argon isotopes in a Po Basin (northern Italy) natural gas field, Chemical Geology, 106, 429-440, 1993.

23
Elliott, W. C., J. L. Aronson, G. Matisoff, and D. L. Gautier, Kinetics of the smectite to illite transformation in the Denver Basin: clay mineral, K-Ar data, and mathematical model results, Am. Assc. Petrol. Geol. Bulletin, 75, 436-462, 1991.

24
Elmore, R. D., S. W. Imbus, M. H. Engel, and D. Fruit, Hydrocarbons and magnetizations in magnetite, Soc. Econ. Paleon. Mineral. Spec. Pub., 49, 181-191, 1993.

25
Eslinger E., and J. R. Glassman, (Eds.), Geothermometry and Geochronology using Clay Minerals, Clays and Clay Minerals, 41, 1993.

26
Evans, J., A. J. C. Hogg, M. S. Hopkins, and R. J. Howarth, Quantification of quartz cements using combined SEM, CL and image analysis, J. of Sed. Res., 64, 334-338, 1994.

27
Fallick, A. E., R. Burgess, A. J. Bryce, P. McConvill, and S. P. Kelley, Laser probes S analysis of geologic samples, Frontiers in Isotope Geoscience (abs)., Terra Abstracts, 3 Suppl. 1, 4, 1991.

28
Foland, K., F. A. Hubacher, and G. B. Arehart, Ar/Ar dating of very fine-grained samples: an encapsulated-vial procedure to overcome the problem of Ar recoil loss, Chemical Geology, 102, 269-276, 1992.

29
Folk, R. L., SEM imaging of bacteria and nannobacteria in carbonate sediments and rocks, J. of Sed. Petrol., 63, 990-999, 1993.

30
Giles, M. R., S. Stevenson, S. V. Martin, S. J. C. Cannon, P. J. Hamilton, J. D. Marshall, and G. M. Samways, The reservoir properties and diagenesis of the Brent Group: a regional perspective, Geol. Soc. London Spec. Pub., 61, 289-327, 1992.

31
Gluyas, J. G., and M. L. Coleman, Material flux during sediment diagenesis: a contradiction to fluid flow prediction, Nature, 356, 22-23, 1992.

32
Gómez-Hernández, J. J., and A. G. Journel, Stochastic characterization of gridblock permeabilities, SPE Formation Evaluation Newsletter, June 1994, 93-99, 1994.

33
Guilhaumou, N., N. Szydlowski, and B. Pradier, Characterization of hydrocarbon fluid inclusions by infra-red and fluorescence microspectrometry, Mineralogical Magazine, 54, 311-324, 1990.

34
Halliday, A. N., M. Ohr, K. Mazger, J. T. Chesley, S. Nakai, and C. P. DeWolf, Recent developments in dating ancient crustal fluid flow, Rev. of Geophys., 29, 577-584, 1991.

35
Hamilton, P. J., M. R. Giles, and P. Ainsworth, K-Ar dating of illites in Brent Group reservoirs: a regional perspective, Geol. Soc. London Spec. Pub., 61, 377-400, 1992.

36
Hanor, J. S., Physical and chemical controls on the composition of waters in sedimentary basins, Mar. and Petrol. Geol., 11, 31-45, 1994.

37
Hanor, J. S., L. S. Land, and G. L. MacPherson, Carboxylic acid anions in formation waters, San Joaquin Basin and Louisiana Gulf Coast, USA: Implications for clastic diagenesis: Critical comment, Applied Geochemistry, 8, 305-307, 1993.

38
Harrison, W. J., and L. L. Summa, Paleohydrology of the Gulf of Mexico Basin, Am. J. of Sci., 291, 109-176, 1991.

39
Harrison, W. J., and G. D. Thyne, Predictions of diagenetic reactions in the presence of organic acids, Geochimica et Cosmochimica Acta, 56, 565-586, 1992.

40
Hayes, M. J., and J. R. Boles, Volumetric relations between dissolved plagioclase and kaolinite in sandstones: implications for aluminum mass transfer in the San Joaquin Basin, California, Soc. Econ. Paleon. Mineral. Spec. Pub., 47, 111-124, 1992.

41
Helgeson, H. C., A. M. Knox, C. E. Owens, and E. L. Shock, Petroleum, oil field waters, and authigenic minerals assemblages: are they in metastable equilibrium in hydrocarbon reservoirs? Geochimica et Cosmochimica Acta, 57, 3295-3339, 1993.

42
Hermanrud, C., Basin modelling techniqes---an overview, in Basin Modelling: Advances and Applications, edited by A. G. Doré, 1-34, Elsevier, Amsterdam, 1993.

43
Hogg, A. J. C., P. J. Hamilton, and R. M. Macintyre, Mapping diagenetic fluid flow within a reservoir: K-Ar dating in the Alwn area (UK North Sea), Mar. and Petrol. Geol., 10, 279-294, 1993.

44
Horbury, A. D., and A. G. Robinson (Eds.), Diagenesis and Basin Development, Am. Assc. Petrol. Geol. Studies in Geology 36, 274, 1993.

45
Horita, J., T. J. Friedman, B. Lazar, and H. D. Holland, The composition of Permian seawater, Geochimica et Cosmochimica Acta, 55, 417-432, 1991.

46
Houseknecht, D. W., Assessing the relative importance of compaction processes and cementation to reduction of porosity in sandstones, Am. Assc. Petrol. Geol. Bulletin, 71, 633-642, 1987.

47
Houseknecht, D. W., and E. D. Pittman, (Eds.), Origin, Diagenesis and Petrophysics of Clay Minerals in Sandstones, Soc. Econ. Paleon. Mineral. Spec. Pub. 47, 282 p, 1982.

48
Huang, W. L., J. M. Longo, and D. R. Pevear, An experimentally derived kinetic model for smectite-to-illite conversion and its use as a geothermometer, Clays and Clay Minerals, 41, 134-147, 1993.

49
Hutcheon, I. E., (Ed.) Short Course in Burial Diagenesis, Mineral. Assc. Canada Short Course Handbook, 15, 409 pp., 1989.

50
Kantorowicz, J. D., M. R. Eignes, S. E. Livera, F. S. Van Schijndel-Gostner, and P. J. Hamilton, Integration of petroleum engineering studies of producing Brent Group Fields to predict reservoir properties in the Pelican Field, North Sea, Geol. Soc. London Spec. Pub., 61, 453-469, 1992.

51
Kharaka, Y. K., and A. S. Maest, (Eds.), Water-Rock Interaction, 1686 pp., Proceedings of the 7th International Symposium on Water-Rock Interaction, A. A. Balkema, Rotterdam, 1992.

52
Kharaka, Y. K., and R. H. Mariner, Chemical geothermometers and their application to formation waters from sedimentary basins, in Thermal History of Sedimentary Basins, edited by N. D. Naeser, and T. H. McCulloh, pp. 99-117, Springer, 1989.

53
Kaufman, J., Numerical models of fluid flow in carbonate platforms: implications for dolomitization, J. of Sed. Res., A64, 128-139, 1994.

54
Kihle, J., Non-destructive fingerprinting of single hydrocarbon fluid inclusions: micro-luminescence spectroscopy; state of the art and prospects for tomorrow, Organic Geochemistry Poster Sessions from the Sixteenth International Meeting on Organic Geochemistry, 784-790, 1993.

55
Land, L. S., Evidence for vertical movement of fluids, Gulf Coast sedimentary basin, Geophys. Res. Lett., 18, 919-922, 1991.

56
Land, L. S., and G. L. Macpherson, Origin of saline formation waters, Cenozoic section, Gulf of Mexico sedimentary basin, Am. Assc. Petrol. Geol. Bulletin, 76, 1344-1362, 1992a.

57
Land, L. S., and G. L. Macpherson, Geothermometry from brine analyses: lessons from the Gulf Coast, USA, Applied Geochemistry, 7, 333-340, 1992b.

58
Lundegard, P. D., Sandstone porosity loss; a ``big picture'' view of the importance of compaction, J. of Sed. Petrol., 62, 250-260, 1992.

59
Lundegard, P. D., and L. S. Land, Carboxylic acid anions in formation waters, San Joaquin Basin and Louisiana Gulf Coast, USA: implications for clastic diagenesis, Applied Geochemistry, 8, 297-300, 1993.

60
Lundegard, P. D., Y. K. Kharaka, and R. J. Rosenbauer, Petroleum as a potential diagenetic agent: experimental evidence, Proc. 7th Internat. Symp. on Water-Rock Interaction, 329-335, 1992.

61
McCreesh, C. A., R. Ehrlich, and S. J. Crabtree, Petrography and reservoir physics II: relating thin section porosity to capillary pressure, the association between pore types and throat size, Am. Assc. Petrol. Geol. Bulletin, 75, 1563-1578, 1991.

62
McBride, E. F., Quartz cement in sandstones: a review, Earth-Science Reviews, 26, 69-112, 1989.

63
McKeever, P. J., S. D. Burley, and I. C. Lyon, Oxygen isotope studies on authigenic quartz using the VG Isolab 54 microbeam ion probe, Am. Assc. Petrol. Geol. 1994 Annual Convention Abstracts, 212, 1994.

64
McMahon, P. B., F. H. Chapelle, W. F. Falls, and P. M. Bradley, Role of microbial processes in linking sandstone diagenesis with organic-rich clays, J. of Sed. Petrol., 61, 1-10, 1992.

65
Meshrie, I. D., and P. J. Ortoleva, (Eds.), Prediction of Reservoir Quality Through Chemical Modeling, 175 pp., Am. Assc. Petrol. Geol. Memoir 49, 1990.

66
Milliken, K. L., and L. S. Land, The origin and fate of silt-sized carbonate in subsurface Miocene-Oligocene mudstones, south Texas Gulf Coast, Sedimentology, 40, 107-124, 1993.

67
Nagy, K. L., and A. C. Lasaga, Dissolution and precipitation kinetics of gibbsite at 80C and pH 3; the dependence on solution saturation state, Geochimica et Cosmochimica Acta, 56, 3093-3111, 1992.

68
Nagy, K. L., and P. J. Houser, Growth kinetics of fibrous illite in the Central North Sea: application of scanning force microscopy, 1994 Clay Mineral Society Workshop Lectures, in press.

69
Osborne, M., and R. S. Haszeldine, Evidence for resetting of fluid inclusion temperatures from quartz cements in oilfields, Mar. and Petrol. Geol., 10, 271-278, 1993.

70
Paxton, S. T., J. R. Szabo, C. S. Calvert, and J. M. Ajdukiewicz, Preservation of primary porosity in deeply buried sandstones: a new play concept from the Cretaceous Tuscaloosa sandstone of Louisiana, Am. Assc. Petrol. Geol. Bulletin, 74, 737, 1990.

71
Peacor, D. R., Diagenesis and low-grade metamorphism of shales and slates, Reviews in Mineralogy, 27, 335-380, 1992.

72
Pevear, D. R., Illite age analysis, a new tool for basin thermal history analysis, Proc. 7th Internat. Symp. of Water-Rock Interaction, 1251-1254, 1992.

73
Pittman, E. D., and R. E. Larese, Compaction of lithic sands: experimental results and applications, Am. Assc. Petrol. Geol. Bulletin, 75, 1279-1299, 1991.

74
Pittman, E. D., R. E. Larese, and M. T. Heald, Clay coats: occurrence and relevance to preservation of porosity and sandstones, Soc. Econ. Paleon. Mineral. Spec. Pub., 47, 241-256, 1992.

75
Plummer, L. N., Geochemical modeling of water-rock interaction: past, present, future, Proc. 7th Internat. Symp. of Water-Rock Interaction, 23-33, 1992.

76
Pottorf, R. J., and L. L. Summa, Interactions between hydrocarbons, water, and sandstones: implications for reservoir quality and secondary migration timing, Am. Assc. Petrol. Geol. 1994 Annual Convention Abstracts, 237, 1994.

77
Ramm, M., Porosity/depth trends in Upper Jurassic reservoirs, Norwegian Central Graben: an example of porosity preservation at deep burial by grain-coating micro-quartz, Am. Assc. Petrol. Geol. 1994 Annual Convention Abstracts, 241, 1994.

78
Reynolds, R. C., Jr., Three-dimensional X-ray powder diffraction from disordered illite: simulation and interpretation of the diffraction patterns, Clay Minerals Society Workshop Lectures, 5, 43-78, 1993.

79
Reynolds, R. L., M. B. Goldhaber, and M. L. Tuttle, Sulfidization and magnetization above hydrocarbon reservoirs, Soc. Econ. Paleon. Mineral. Spec. Pub., 49, 167-179, 1993.

80
Rimstidt, J. D., and H. L. Barnes, The kinetics of silica-water reactions, Geochimica et Cosmochimica Acta, 44, 1683-1699, 1980.

81
Robinson, A. G., and J. G. Gluyas, Duration of quartz cementation in sandstones, North Sea and Haltenbanken basins, Mar. and Petrol. Geol., 9, 324-327, 1992.

82
Robinson, A. G., S. M. Grant, and N. H. Oxtoby, Geological evidence against natural non-elastic deformation of fluid inclusions in diagenetic quartz cement, Mar. and Petrol. Geol., 9, 568-572, 1992.

83
Ryan, P. C., and R. C. Reynolds, Jr., The origin and diagenesis of grain-coating chlorite in Tuscaloosa Formation sandstone, U. S. Gulf Coast, American Mineralogist, in press.

84
Sharp, Z. D., In situ laser microprobe techniques for stable isotope analysis, Chem. Geol. ( Isotope Geoscience), 101, 3-19, 1992.

85
Sibley, D. F., and H. Blatt, Intergranular pressure solution and cementation of the Tuscarora Orthoquartzite, J. of Sed. Petrol., 46, 881-896, 1976.

86
Small, J. S., Experimental determination of the rates of precipitation of authigenic illite and kaolinite in the presence of aqueous oxalate and comparison to the K/Ar ages of authigenic illite in reservoir sandstones, Clays and Clay Minerals, 41, 191-208, 1993.

87
Small, J. S., D. L. Hamilton, and S. Habesch, Experimental simulation of clay precipitation in reservoir sandstones 1: Techniques and examples, J. of Sed. Petrol., 62, 508-519, 1992a.

88
Small, J. S., D. L. Hamilton, and S. Habesch, Experimental simulation of clay precipitation in reservoir sandstones 2: Mechanism of illite formation and controls on morphology, J. of Sed. Petrol., 62, 520-529, 1992b.

89
Smalley, P. C., and E. A. Warren, North Sea formation waters: implications for diagenesis and production chemistry, Mar. and Petrol. Geol., 11, 3-5, 1993.

90
Smalley, P. C., A. Lø nø y, and A. RáHeim, Spatial Sr/Sr variations in formation water and calcite from the Ekofisk chalk oil field: implications for reservoir connectivity and fluid composition, Applied Geochemistry, 7, 341-350, 1992.

91
Steefel, C. I., and A. C. Lasaga, Putting transport into water-rock interaction models, Geology, 20, 680-684, 1992.

92
Suk, D., R. van der Voo, and D. R. Peacor, Origin of magnetite responsible for remagnetization of Early Paleozoic limestones of New York State, J. of Geophys. Res., 98, 419-434, 1993.

93
Surdam, R. C., Z. S. Jiao, and D. B. MacGowan, Redox reactions involving hydrocarbons and mineral oxidants: a mechanism for signficant porosity enhancement in sandstones, Am. Assc. Petrol. Geol. Bulletin, 77, 1509-1518, 1993.

94
Tyler, K. J., T. Svanes, and A. Henriquez, Heterogeneity modeling used for production simulation of a fluvial reservoir, SPE Format, 1994.

95
Velde, B., and G. Vasseur, Estimation of the diagenetic smectite to illite transformation in time-temperature space, American Mineralogist, 77, 967-976, 1992.

96
Walderhaug, O., Temperatures of quartz cementation in Jurassic sandstones from the Norwegian continental shelf---evidence from fluid inclusions, J. of Sed. Res., 64, 311-323, 1994a.

97
Walderhaug, O., Precipitation rates for quartz cement in sandstones determined by fluid-inclusion microthermometry and temperature-history modeling, J. of Sed. Res., 64., 324-333, 1994b.

98
Walker, J. R., Chlorite polytype geothermometry, Clays and Clay Minerals, 41, 260-267, 1993.

99
Walther, J., Einleitung in die Geologie als historische Wissenschaft., 1055 pp, Jena: Fisher Verlag, 1893.

100
Whiteman, W. A., and W. J. Harrison, Investigation of shales as a source of authigenic phases in shale-encased valley-fill sandstones, Muddy Formation, Wind River Basin, Wyoming, Am. Assc. Petrol. Geol. Bulletin, in press.

101
Winsch, R. P., and C. M. Kvale, Differential mobility of elements in burial diagenesis of siliciclastic rocks, J. of Sed. Res., 64, 349-361, 1994,

102
Wood, J. R., and J. R. Boles, Evidence for episodic cementation and diagenetic recording of seismic pumping events, North Coles Levee, California, USA, Applied Geochemistry, 6, 509-521, 1991.

103
Ziegler, K., B. W. Sellwood, and A. E. Fallick, Radiogenic and stable isotope evidence for age and origin of authigenic illites in the Rotliegende, Southern North Sea, Clay Minerals, 29, 555-565, 1994.


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