Spectral remote sensing for onshore seepage characterization: A critical overview
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[1] M. Franchini,et al. Large-Scale Bleaching of Red Beds Related To Upward Migration of Hydrocarbons: Los Chihuidos High, Neuquén Basin, Argentina , 2014 .
[2] Jack S. Margolis,et al. Mapping methane emissions from a marine geological seep source using imaging spectrometry , 2010 .
[3] Shuhab D. Khan,et al. Remote detection and geochemical studies for finding hydrocarbon-induced alterations in Lisbon Valley, Utah , 2005 .
[4] J. Rimstidt,et al. Jarosite as an indicator of water-limited chemical weathering on Mars , 2004, Nature.
[5] T. Donovan. Petroleum Microseepage at Cement, Oklahoma: Evidence and Mechanism , 1974 .
[6] A. Thorpe. Mapping methane concentrations from a controlled release experiment using the next generation Airborne Visible/Infrared Imaging Spectrometer (AVIRISng) , 2014 .
[7] Christopher J. Schenk. An estimate of undiscovered conventional oil and gas resources of the world, 2012 , 2012 .
[8] Eyal Ben-Dor,et al. Quantitative Assessment of Hydrocarbon Contamination in Soil Using Reflectance Spectroscopy: A “Multipath” Approach , 2013, Applied spectroscopy.
[9] Freek D. van der Meer,et al. Remote sensing and petroleum seepage: a review and case study , 2002 .
[10] Thomas C. Bailey,et al. Drilling confirms radar-mapped atmospheric seepage anomalies , 2006 .
[11] Steven A. Tedesco,et al. Surface geochemistry in petroleum exploration , 1994 .
[12] Kay Winkelmann. On the applicability of imaging spectrometry for the detection and investigation of contaminated sites with particular consideration given to the detection of fuel hydrocarbon contaminants in soil , 2005 .
[13] R. Clark,et al. Reflectance spectroscopy of organic compounds: 1. Alkanes , 2009 .
[14] Benoît Dubacq,et al. Fluid-mineral reactions and trace metal mobilization in an exhumed natural CO2 reservoir, Green River, Utah , 2012 .
[15] J. Hunt,et al. Petroleum Geochemistry and Geology , 1995 .
[16] Yoshiki Ninomiya,et al. Mapping hydrocarbon‐induced mineralogical alteration in the northern Tian Shan using ASTER multispectral data , 2007 .
[17] Marco Gianinetto,et al. Satellite remote sensing for hydrocarbon exploration in new venture areas , 2015, 2015 IEEE International Geoscience and Remote Sensing Symposium (IGARSS).
[18] C. Frankenberg,et al. Retrieval techniques for airborne imaging of methane concentrations using high spatial and moderate spectral resolution: application to AVIRIS , 2014 .
[19] F. Brouwer,et al. 13. Detection of Subsurface Hydrocarbon Seepage in Seismic Data: Implications for Charge, Seal, Overpressure, and Gas-hydrate Assessment , 2013 .
[20] Shuhab D. Khan,et al. Remote sensing and geochemistry for detecting hydrocarbon microseepages , 2008 .
[21] Carle M. Pieters,et al. Deconvolution of mineral absorption bands: An improved approach , 1990 .
[22] Qiming Qin,et al. Oil and gas reservoir exploration based on hyperspectral remote sensing and super-low-frequency electromagnetic detection , 2016 .
[23] G. Etiope,et al. Migration of carrier and trace gases in the geosphere: an overview , 2002 .
[24] R. Weibel. Diagenesis in oxidising and locally reducing conditions — an example from the Triassic Skagerrak Formation, Denmark , 1998 .
[25] D. Richers,et al. Landsat and Soil-Gas Geochemical Study of Patrick Draw Oil Field, Sweetwater County, Wyoming , 1982 .
[26] R. E. Denison,et al. Diagenetic alteration of Permian strata at oil fields of south central Oklahoma, USA , 1995 .
[27] W. T. Parry,et al. Fingerprints of Fluid Flow: Chemical Diagenetic History of the Jurassic Navajo Sandstone, Southern Utah, U.S.A. , 2005 .
[28] Carlos Roberto de Souza Filho,et al. A review on spectral processing methods for geological remote sensing , 2016, Int. J. Appl. Earth Obs. Geoinformation.
[29] V. T. Jones,et al. Predictions of Oil or Gas Potential by Near-Surface Geochemistry , 1983 .
[30] Shuhab D. Khan,et al. Integrated hyperspectral remote sensing, geochemical and isotopic studies for understanding hydrocarbon-induced rock alterations , 2012 .
[31] J. Walsh,et al. An exhumed palaeo‐hydrocarbon migration fairway in a faulted carrier system, Entrada Sandstone of SE Utah, USA , 2001 .
[32] David D. Pollard,et al. Paleo-fluid flow and deformation in the Aztec Sandstone at the Valley of Fire, Nevada—Evidence for the coupling of hydrogeologic, diagenetic, and tectonic processes , 2004 .
[33] F. C. Arnes,et al. Simulation forecasts complex flow streams from Ekofisk , 1996 .
[34] B. McPherson,et al. Iron precipitation in a natural CO2 reservoir: Jurassic Navajo Sandstone in the northern San Rafael Swell, UT, USA , 2013 .
[35] Brigette A. Martini,et al. Imaging spectroscopy of jarosite cement in the Jurassic Navajo Sandstone , 2010 .
[36] M. Hovland,et al. Understanding Geology as the Key to Using Seepage in Exploration: The Spectrum of Seepage Styles , 1996 .
[37] Fernando Pellon de Miranda,et al. Remote detection of a tonal anomaly in an area of hydrocarbon microseepage, Tucano basin, north-eastern Brazil , 1999 .
[38] F. Meer,et al. Direct detection of onshore hydrocarbon microseepages by remote sensing techniques , 2000 .
[39] Donald F. Saunders,et al. Relation of thorium-normalized surface and aerial radiometric data to subsurface petroleum accumulations , 1993 .
[40] J. P. Land. Nonseismic methods can provide many views of a drillsite , 1996 .
[41] M. H. Tangestani,et al. Mineralogy and geochemistry of alteration induced by hydrocarbon seepage in an evaporite formation; a case study from the Zagros Fold Belt, SW Iran , 2014 .
[42] Donald F. Saunders,et al. Model for Hydrocarbon Microseepage and Related Near-Surface Alterations , 1999 .
[43] Perry A. Fischer. Unconventional exploration technologies : Take another look , 2006 .
[44] Preliminary ASTER and INSAR imagery combination for mud volcano dynamics, Azerbaijan , 2003, IGARSS 2003. 2003 IEEE International Geoscience and Remote Sensing Symposium. Proceedings (IEEE Cat. No.03CH37477).
[45] Sandra L. Perry,et al. Evidence of Hydrocarbon Seepage Using Multispectral Satellite Imagery, Kurdistan, Iraq , 2011 .
[46] T. C. Bailey,et al. Science behind sensing hydrocarbon seepage using X-band radar , 1996 .
[47] R. Lilburn,et al. Geochemistry and Isotopic Composition of Hydrocarbon-Induced Diagenetic Aureole (HIDA), Cement Field Oklahoma , 1985 .
[48] R. Clarke,et al. Petroleum seepage and post-accumulation migration , 1991, Geological Society, London, Special Publications.
[49] P. Shi,et al. Multispectral remote sensing mapping for hydrocarbon seepage-induced lithologic anomalies in the Kuqa foreland basin, south Tian Shan , 2012 .
[50] G. Etiope,et al. Earth's Degassing: A Missing Ethane and Propane Source , 2009, Science.
[51] Brenda Beitler Bowen,et al. Reflectance spectroscopic mapping of diagenetic heterogeneities and fluid-flow pathways in the Jurassic Navajo Sandstone , 2007 .
[52] W. T. Parry,et al. Diagenetic characteristics of the Jurassic Navajo Sandstone in the Covenant oil field, central Utah thrust belt , 2009 .
[53] Carlos Roberto de Souza Filho,et al. Quantitative characterization of crude oils and fuels in mineral substrates using reflectance spectroscopy: Implications for remote sensing , 2016, Int. J. Appl. Earth Obs. Geoinformation.
[54] L. Zou,et al. Remote sensing detection of heavy oil through spectral enhancement techniques in the western slope zone of Songliao Basin, China , 2009 .
[55] R. W. Potter,et al. Significance of Geochemical Anomalies in Hydrocarbon Exploration: One Company's Experience , 1996 .
[56] A Bolding. Bulk factor method estimates FPSO topsides weight , 2001 .
[57] P. Smalley,et al. Sulfur cycle in buried evaporites , 1997 .
[58] M. Abrams. Significance of hydrocarbon seepage relative to petroleum generation and entrapment , 2005 .
[59] Nasser Mubarak Al-Araimi,et al. Unconventional coiled tubing operation restores a Brunei offshore well : Well control and intervention , 2006 .
[60] S. J. Sutley,et al. Using Imaging Spectroscopy To Map Acidic Mine Waste , 2000 .
[61] Jilu Feng,et al. Remote bitumen content estimation of Athabasca oil sand from hyperspectral infrared reflectance spectra using Gaussian singlets and derivative of Gaussian wavelets , 2010 .
[62] Carlos Roberto de Souza Filho,et al. Spectroscopic characterization of red latosols contaminated by petroleum-hydrocarbon and empirical model to estimate pollutant content and type , 2016 .
[63] W. T. Parry,et al. Diagenetic Hematite and Manganese Oxides and Fault-Related Fluid Flow in Jurassic Sandstones, Southeastern Utah , 2000 .
[64] Dietmar Schumacher,et al. Integrating Hydrocarbon Microseepage Data With Seismic Data Doubles Exploration Success , 2010 .
[65] Pieter P. Tans,et al. Upward revision of global fossil fuel methane emissions based on isotope database , 2016, Nature.
[66] I. Friedman,et al. Recognition of Petroleum-bearing Traps by Unusual Isotopic Compositions of Carbonate-cemented Surface Rocks , 1974 .
[67] Alton A. Brown,et al. Evaluation of possible gas microseepage mechanisms , 2000 .
[68] Carlos Roberto de Souza Filho,et al. Spectroscopic characterization of oils yielded from Brazilian offshore basins: Potential applications of remote sensing , 2011 .
[69] Sumanth Kaushik,et al. Near-IR Reflectance Spectroscopy for the Determination of Motor Oil Contamination in Sandy Loam , 1996 .
[70] Frederic Coulon,et al. Analysis of petroleum-contaminated soils by diffuse reflectance spectroscopy and sequential ultrasonic solvent extraction-gas chromatography. , 2014, Environmental pollution.
[71] T. C. Bailey. Application of X-band radar to sense hydrocarbon seepage , 1996 .
[72] K. Soda,et al. Remote Detection of Anomalous Mineralogy Associated with Hydrocarbon Production, Lisbon Valley, Utah: ABSTRACT , 1985 .
[73] W. Duchscherer. Geochemical methods of prospecting for hydrocarbons , 1980 .
[74] E. Cloutis. Spectral Reflectance Properties of Hydrocarbons: Remote-Sensing Implications , 1989, Science.
[75] Ira Leifer,et al. Detection of marine methane emissions with AVIRIS band ratios , 2011 .
[76] B. Hörig,et al. Hydrocarbon Index – an algorithm for hyperspectral detection of hydrocarbons , 2004 .
[77] D. Schumacher,et al. Surface geochemical exploration for oil and gas: New life for an old technology , 2000 .
[78] L. Horvitz. Near-Surface Evidence of Hydrocarbon Movement from Depth , 1978 .
[79] J. Burrows,et al. Remote sensing atmospheric trace gases with infrared imaging spectroscopy , 2012 .
[80] Cathleen E. Jones,et al. State of the art satellite and airborne marine oil spill remote sensing: Application to the BP Deepwater Horizon oil spill , 2012 .
[81] Raymond F. Kokaly,et al. A method for quantitative mapping of thick oil spills using imaging spectroscopy , 2010 .
[82] Harald van der Werff. Knowledge-based remote sensing of complex objects: Recognition of spatial patterns resulting from natural hydrocarbon seepages , 2006 .
[83] Brenda Beitler,et al. Bleaching of Jurassic Navajo Sandstone on Colorado Plateau Laramide highs: Evidence of exhumed hydrocarbon supergiants? , 2003 .
[84] G. Hunt. SPECTRAL SIGNATURES OF PARTICULATE MINERALS IN THE VISIBLE AND NEAR INFRARED , 1977 .
[85] G. Etiope,et al. Reappraisal of the fossil methane budget and related emission from geologic sources , 2008 .
[86] Dietmar Schumacher,et al. Hydrocarbon-Induced Alteration of Soils and Sediments , 1996 .
[87] J. K. Crowley,et al. Spectral reflectance properties (0.4–2.5 μm) of secondary Fe-oxide, Fe-hydroxide, and Fe-sulphate-hydrate minerals associated with sulphide-bearing mine wastes , 2003, Geochemistry: Exploration, Environment, Analysis.
[88] R. S. Foote. Relationship of Near-Surface Magnetic Anomalies to Oil- and Gas-Producing Areas , 1996 .
[89] Shengbo Chen,et al. Hydrocarbon micro-seepage detection by altered minerals mapping from airborne hyper-spectral data in Xifeng Oilfield, China , 2017, Journal of Earth Science.
[90] Raymond F. Kokaly,et al. Spectroscopic remote sensing of the distribution and persistence of oil from the Deepwater Horizon spill in Barataria Bay marshes , 2013 .
[91] C. R. S. Filho,et al. Investigating the capability of WorldView-3 superspectral data for direct hydrocarbon detection , 2016 .
[92] Giuseppe Etiope,et al. Microseepage in drylands: Flux and implications in the global atmospheric source/sink budget of methane , 2010 .
[93] Bihong Fu,et al. Chemical speciation of redox sensitive elements during hydrocarbon leaching in the Junggar Basin, Northwest China , 2010 .
[94] Tatsuya Yokota,et al. Global mapping of greenhouse gases retrieved from GOSAT Level 2 products by using a kriging method , 2015 .
[95] M. Chan,et al. Hydrocarbon-induced diagenetic alteration of the Permian White Rim Sandstone, Elaterite Basin, southeast Utah , 2015 .
[96] Amer Smailbegovic,et al. Spectroscopic and hyperspectral evaluation of possible hydrocarbon occurrences in estuarine sediments, North Charleston, South Carolina, USA , 2009, 2009 First Workshop on Hyperspectral Image and Signal Processing: Evolution in Remote Sensing.
[97] D. Yergin. The Prize: The Epic Quest for Oil, Money, and Power , 1990 .
[98] Frank van Ruitenbeek,et al. Detection of Alteration Induced by Onshore Gas Seeps from ASTER and WorldView-2 Data , 2014, Remote. Sens..
[99] B. Burkart,et al. Test of Hydrocarbon-Induced Magnetic Patterns in Soils: The Sanitary Landfill as Laboratory , 1996 .
[100] Yunpeng Wang,et al. Hydrocarbon Alteration Characteristics of Soils and Mechanism for Detection by Remote Sensing in East Sichuan Area, China , 2000 .
[101] Michael J. Gaffey,et al. Characterization of minerals in oil sands by reflectance spectroscopy , 1995 .
[102] S. A. Tedesco. ANOMALY SHIFTS INDICATE RAPID SURFACE SEEP RATES , 1999 .
[103] William T. Parry,et al. Chemical bleaching indicates episodes of fluid flow in deformation bands in sandstone , 2004 .
[104] Donald F. Saunders,et al. Observed relation of soil magnetic susceptibility and soil gas hydrocarbon analyses to subsurface hydrocarbon accumulations , 1991 .
[105] K. H. Scholte. Hyperspectral remote sensing and mud volcanism in Azerbaijan , 2005 .
[106] F. Pirajno. Hydrothermal Processes and Mineral Systems , 2008 .
[107] Sam Boggs,et al. Petrology of sedimentary rocks , 1991 .
[108] F. Meer,et al. Spectral and geochemical characterization of onshore hydrocarbon seep-induced alteration in the Dezful embayment, southwest Iran , 2014 .
[109] Gary K. Rice,et al. Integration of geology, seismic, and geochemical data — Theory and practice in Cheeseburger Field, Stonewall County, Texas, USA , 2016 .
[110] B. Kratochvil,et al. Near-infrared diffuse reflectance analysis of Athabasca oil sand , 1990 .
[111] Carlos Roberto de Souza Filho,et al. Mapping and characterization of the API gravity of offshore hydrocarbon seepages using multispectral ASTER data , 2012 .
[112] J. Coates. Interpretation of Infrared Spectra, A Practical Approach , 2006 .
[113] M. Dalziel,et al. Epigenetic Zoning in Surface and Near-Surface Rocks Resulting from Seepage-Induced Redox Gradients, Velma Oil Field, Oklahoma: ABSTRACT , 1981 .
[114] William E. Asher,et al. Reflected optical second‐harmonic generation in the study of naturally occurring organic films at the ocean surface , 1988 .
[115] F. Lehmann,et al. HyMap hyperspectral remote sensing to detect hydrocarbons , 2001 .
[116] Walter K. Link,et al. Significance of Oil and Gas Seeps in World Oil Exploration , 1952 .
[117] J. Sjöblom,et al. Determination of saturate, aromatic, resin, and asphaltenic (SARA) components in crude oils by means of infrared and near-infrared spectroscopy , 2001 .
[118] D. Schumacher. Surface Geochemical Exploration for Petroleum , 1999 .
[119] Harald van der Werff,et al. Combining spectral signals and spatial patterns using multiple Hough transforms: An application for detection of natural gas seepages , 2006, Comput. Geosci..
[120] Benoit Rivard,et al. Characterization of mineral substrates impregnated with crude oils using proximal infrared hyperspectral imaging , 2016 .
[121] Ira Leifer,et al. High resolution mapping of methane emissions from marine and terrestrial sources using a Cluster-Tuned Matched Filter technique and imaging spectrometry , 2013 .
[122] Yufeng Ge,et al. Rapid identification of oil-contaminated soils using visible near-infrared diffuse reflectance spectroscopy. , 2010, Journal of environmental quality.
[123] C. S. Filho,et al. Detecção de exsudações de hidrocarbonetos por geobotânica e sensoriamento remoto multi-temporal: estudo de caso no Remanso do Fogo (MG) , 2008 .
[124] Ira Leifer,et al. Airborne visualization and quantification of discrete methane sources in the environment , 2014 .
[125] S. Gaffey,et al. Spectral reflectance of carbonate minerals in the visible and near infrared (0.35–2.55 um): Anhydrous carbonate minerals , 1987 .
[126] C. Freitas,et al. Terrain characteristics of a tonal anomaly remotely detected in an area of hydrocarbon microseepage, Tucano Basin, north-eastern Brazil , 2002 .
[127] L. Horvitz,et al. Geochemical Exploration for Petroleum , 1985, Science.
[128] S. Chakraborty,et al. Development of a hybrid proximal sensing method for rapid identification of petroleum contaminated soils. , 2015, The Science of the total environment.
[129] E. Paylor,et al. Investigation of a surface spectral anomaly at Table Rock gas field, Wyoming , 1987 .
[130] D. Macgregor,et al. Relationships between seepage, tectonics and subsurface petroleum reserves , 1993 .
[131] Simon J. Hook,et al. High spatial resolution imaging of methane and other trace gases with the airborne Hyperspectral Thermal Emission Spectrometer (HyTES) , 2016 .
[132] D. Thompson,et al. Airborne methane remote measurements reveal heavy-tail flux distribution in Four Corners region , 2016, Proceedings of the National Academy of Sciences.
[133] R. Klusman,et al. Comparison of Light Hydrocarbon Microseepage Mechanisms , 1996 .