GEOCHEMISTRY OF TRENTON/BLACK RIVER GASES IN THE APPALACHIAN BASIN GEOCHEMISTRY OF TRENTON/BLACK RIVER GASES IN THE APPALACHIAN BASIN A PRELIMINARY REPORT.

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GEOCHEMISTRY OF TRENTON/BLACK RIVER GASES IN THE APPALACHIAN BASIN GEOCHEMISTRY OF TRENTON/BLACK RIVER GASES IN THE APPALACHIAN BASIN A PRELIMINARY REPORT

ACKNOWLEDGEMENTS COMPANIES COMPANIES Isotech Laboratories Isotech Laboratories Triana Energy and CNR Triana Energy and CNR Fortuna Energy Inc. Fortuna Energy Inc. Hay Exploration Hay Exploration K Petroleum K Petroleum CGAS Exploration/Enervest CGAS Exploration/Enervest Colleagues Dick Beardsley and Ed Rothman (Triana) Jeff Bowers (Fortuna) Monte Hay (Hay Petroleum) Bill Grubaugh (Enervest) Katharine Lee Avery (WVGS) Dave Harris (KGS) Larry Wickstrom (OGS) Dennis Coleman and Martin Schoell (Isotech)

OUTLINE Utility of isotope geochemistry in natural gas exploration and development Utility of isotope geochemistry in natural gas exploration and development Purpose of Trenton/Black River natural gas study Purpose of Trenton/Black River natural gas study Natural gas sample distribution Natural gas sample distribution Results to date Results to date Preliminary conclusions and future work Preliminary conclusions and future work

UTILITY OF ISOTOPE GEOCHEMISTRY IN NATURAL GAS EXPLORATION AND DEVELOPMENT Genetic Information Genetic Information Recognize and Quantify Gas Mixing Recognize and Quantify Gas Mixing Reservoir Identification Reservoir Identification Fault Block Mapping Fault Block Mapping

 13 C (permil) =  ( 13 C/ 12 C) sample ( 13 C/ 12 C) PDB – 1  1000  13 C (permil) =  ( 13 C/ 12 C) sample / ( 13 C/ 12 C) PDB – 1  1000 UTILITY OF ISOTOPE GEOCHEMISTRY IN NATURAL GAS EXPLORATION AND DEVELOPMENT Natural gases vary in chemical and isotope composition as a function of their formation and migration history. Individual gas components (CH 4,C 2 H 6, etc.) can be characterized by their stable carbon ( 13 C/ 12 C) and hydrogen ( 2 H/ 1 H) isotopic compositions  (permil) =  (/) sample (/) SMOW – 1  1000  D (permil) =  ( D / H ) sample / ( D / H ) SMOW – 1  1000

GENETIC INFORMATION (Schoell, 1983)

RECOGNIZE AND QUANTIFY GAS MIXING Jenden and others, 1994

RESERVOIR COMPARTMENTALIZATION AND FAULT BLOCK MAPPING Schoell, 2003 personal communication

PURPOSE OF TRENTON/BLACK RIVER NATURAL GASES STUDY Source Rock and Thermal Maturation Data Source Rock and Thermal Maturation Data Recognize and Quantify Gas Mixing Recognize and Quantify Gas Mixing Recognize Reservoir Compartmentalization Recognize Reservoir Compartmentalization Fault Block Mapping Fault Block Mapping

Natural Gas Sample Distribution Glodes Corners Field, Steuben Co., NY: 5 samples Glodes Corners Field, Steuben Co., NY: 5 samples Muck Farm Field, Steuben Co., NY: 1 sample Muck Farm Field, Steuben Co., NY: 1 sample Wilson Hollow Field, Steuben and Chemung Co., NY: 1 sample Wilson Hollow Field, Steuben and Chemung Co., NY: 1 sample County Line Field, Chemung Co., NY: 1 sample County Line Field, Chemung Co., NY: 1 sample Terry Hill South Field, Chemung Co., NY: 1 sample Terry Hill South Field, Chemung Co., NY: 1 sample #1 Andrews well, Steuben Co., NY: 1 sample #1 Andrews well, Steuben Co., NY: 1 sample

Natural Gas Sample Distribution York Field, Ashtabula Co., OH: 6 samples York Field, Ashtabula Co., OH: 6 samples Cottontree Field, Roane CO., WV: 2 samples Cottontree Field, Roane CO., WV: 2 samples Homer Field, Elliott Co., KY: 2 samples Homer Field, Elliott Co., KY: 2 samples Clay Co., KY: 1 sample Clay Co., KY: 1 sample

RESULTS TO DATE Clay County, KY. Clay County, KY.