Page 88 - Fundamentals of Gas Shale Reservoirs
P. 88
68 GEOCHEMICAL ASSESSMENT OF UNCONVENTIONAL SHALE GAS RESOURCE SYSTEMS
Geochemical Society meeting; August 22, 2013; Houston, Pelet R. Evaluation quantitative des produits formes lors de
TX; 2013. l’evolution geochimique de la matiere organique. Revue Inst
Lorant F, Prinzhofer A, Behar F, Huc A‐Y. Carbon isotopic and Francais du Petrole 1985;40 (5):551–562.
molecular constraints on the formation and the expulsion of ther Pepper AS. Estimating the petroleum expulsion behavior of source
mogenic hydrocarbon gases. Chem Geol 1998;147:249–264. rocks: a novel quantitative approach. In: England WA, Fleet AJ,
Loucks RG, Reed RM, Ruppel SC, Jarvie DM. Morphology, editors. Petroleum Migration: The Geological Society Special
Genesis, and Distribution of nanometer‐scale pores in siliceous Publication 59. London: The Geological Society; 1991. pp 9–31.
mudstones of the Mississippian Barnett Shale. J Sediment Res Pepper AS, Corvi PJ. Simple models of petroleum formation. Part
2009;79:848–861. I: oil and gas generation. Mar Pet Geol 1995;12:291–320.
Mahlstedt N, Horsfield B. Gas generation at high maturities Prinzhofer AA, Huc AY. Genetic and post‐genetic molecular and
(>Ro=2%) in gas shales. Search Discovery Article 2012; isotopic fractionations in natural gases. Chem Geol 1995;126:
40873:21. 281–290.
Mango FD, Daniel JM. GOR from oil composition, 20th Reed R, Loucks R. Imaging nanoscale pores in the Mississippian
International Meeting on Organic Geochemistry, Nancy, France; Barnett Shale of the northern Fort Worth Basin, AAPG Annual
September 10–14, 2001 ; Abstracts Vol 1; 2001. pp 406–407. Convention; Long Beach, CA; April 1–4, 2007. Available at
National Commission on the BP Deepwater Horizon Oil Spill and http://www.searchanddiscovery.com/abstracts/html/2007/
Offshore Drilling. National Commission on the BP Deepwater annual/abstracts/lbReed.htm. Accessed November 12, 2010.
Horizon Spill and Offshore Drilling, UNT Digital Library; Sandvik EI, Young WA, Curry DJ. Expulsion from hydrocarbon
2011. Available at http://digital.library.unt.edu/ark:/67531/ sources: the role of organic absorption: Advances in Org
metadc132999/. Accessed November 13, 2013. Geochem 1991. Org Geochem 1992;19 (1–3):77–87.
Newman J. New approaches to detection and correction of sup Schettler Jr. PD and Parmely CR. 1991, Contributions to total
pressed vitrinite reflectance. Aust Petrol Prod Expl Assoc J storage capacity in Devonian shales, SPE paper 23422, 9p.
1997;37:524–535. Schoell M, Ellis L, Muehlenbachs K, Coleman DD, Underdown I.
Newman J, Eckersley KM, Francis DA, Moore NA. Application of Gas isotope analyses while drilling (GIAWD): an emerging
vitrinite‐inertinite reflectance and fluorescence to maturity technology for exploration and production, AAPG National
assessment in the East Coast and Canterbury Basins of New Convention; June 3–6, 2001; Sunver, CO, abstract book,
Zealand, 2000 New Zealand Petroleum Conference Proceedings; p A180, CD.
2000. pp 314–333. Sheiko SS, Sun FC, Randall A, Shirvanyants D, Rubinstein M, H‐I
Niemann M, Breviere J. Continuous isotope logging in real time Lee, Matyjaszewski K. Adsorption‐induced scission of carbon‐
while drilling, AAPG Search and Discovery Article 90110 from carbon bonds. Nature 2006;440(9):191–194.
AAPG Hedberg Conference. Application of Reservoir Fluid Steward DB. The Barnett Shale play: phoenix of the Fort Worth
Geochemistry; June 8–11, 2010; Vail, CO; 2010. Available at Basin, a history. In: Paniszczyn F, editor. The Fort Worth
http://www.searchanddiscovery.com/abstracts/pdf/2010/hedberg_ Geological Society & The North Texas Geological Society.
vail/abstracts/ndx_niemann.pdf. Accessed October 10, 2012. Kansas City, MO: Covington Group; 2007. p 202.
NIGOGA. The Norwegian Industry Guide to Organic Geochemical Tang Y, Perry JK, Jenden PD, Schoell M. Mathematical modeling
Analyses, 4.0 ed.; May 30, 2000; 102p. Available at http://www. of stable carbon isotope ratios in natural gases. Geochim
npd.no/engelsk/nigoga/default.htm. Accessed November 11, 2013. Cosmochim Acta 2000;64 (16):2673–2687.
Okiongbo KR, Aplin AC, Larter SR. Changes in type II kerogen The Perryman Group. The impact of the Barnett Shale on business
density as a function of maturity: evidence from the Kimmeridge activity in the surrounding region and Texas: an assessment of the
Clay Formation. Energy Fuels 2005;19 (6):2495–2499. first decade of extensive development, August 2011 report pre
Orendt AM, Birgenheier LP, Solum MS, Pugmire RJ, Facelli JC, pared for The Fort Worth Chamber of Commerce; 2011. 148p.
Locke D, Chapman K, Seifert S, Winans R, Chupas P. Structural Tian H, Xiao X, Wilkins RWT, Tang Y. New insights into the
characterization of Green River Oil Shale core segments and the volume and pressure changes during the thermal cracking of oil
kerogen isolated from these segments, 31st Oil Shale Symposium; to gas in reservoirs: implications for the in‐situ accumulation of
September 18, 2011. Available at http://www.yatedo.com/ajax/ gas cracked from oils. AAPG Bull 2008;92 (2):181–200.
redirect?url=http%3A%2F%2Fwww.costar‐mines.org%2Foss% Tiem VTA, Horsfield B, Sykes R. Influence of in‐situ bitumen on
2F31%2FF‐pres‐sm‐sec%2F10‐2_Orendt‐Anita.pdf. Accessed the generation of gas and oil in New Zealand coals. Org
August 18, 2013. Geochem 2008;39:1606–1619.
Orr WL. Comments on pyrolytic hydrocarbon yields in source‐rick Tilley B, McLellan S, Hiebert S, Quartero B, Veilleux B,
evaluation. In: Bjoroy M, editor. Advances in Organic Muehlenbachs K. Gas isotope reversals in fractured gas reser
Geochemistry. Chichester: John Wiley & Sons Ltd; 1983. voirs of the western Canadian foothills: mature shale gas in dis
p 775–787. guise. AAPG Bull 2011;95:1399–1422.
Pan C, Jiang L, Liu J, Zhang S, Zhu G. The effects of pyrobitumen Tissot BP, Welte DH. Petroleum Formation and Occurrence.
on oil cracking in confined pyrolysis experiments. Org Geochem 2nd ed. New York: Springer Verlag; 1978. p 699.
2012;45:29–47.