يعرض 1 - 13 نتائج من 13 نتيجة بحث عن '"hoşgörmez, h"', وقت الاستعلام: 2.47s تنقيح النتائج
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    Conference
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    Academic Journal

    المساهمون: İstanbul Üniversitesi ,, 283866

    Relation: MARINE AND PETROLEUM GEOLOGY; YALÇIN M. N. , inan s., hoşgörmez h., çetin s., "A new Carboniferous coal/shale driven gas play in the Western Black Sea Region (Turkey)", MARINE AND PETROLEUM GEOLOGY, ss.1241-1256, 2003; vv_1032021; av_5592c0af-3931-44d9-b109-6f33c6c42198; http://hdl.handle.net/20.500.12627/60467; 1241; 1256

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    Report

    المساهمون: Diğer Kurumlar ,, 283874

    Relation: YALÇIN M. N. , inan s., özgökçe s., gürdal g., hoşgörmez h., çetin s., bulkan ö., özen f., can y., taşcı r., "Batı Karadeniz Bölgesinde Karbonifer Yaşlı Kömür ve Kiltaşları Kökenli Doğal Gaz Olanakları.", Proceedings 13th International Petroleum Congress and Exhibition of Turkey, Türkiye, 1 - 04 Ocak 2001, ss.87-96; vv_1032021; av_29b18b1f-8ab7-4de5-8247-44e00840f6a2; http://hdl.handle.net/20.500.12627/32836

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    Report

    المساهمون: İstanbul Üniversitesi ,, 284280

    Relation: YALÇIN M. N. , Hoşgörmez h., "Türkiyedeki gaz Zuhurlarının Özellikleri, Kökenleri ve İlişkili Petrol sistemleri", türliye 20. Uluslararası Petrol ve Doğal Gaz Kongresi ve Sergisi, Ankara, Türkiye, 27 - 29 Mayıs 2015, ss.164-165; av_a93e7cd9-9bc7-4962-b9e1-d642317278ab; vv_1032021; http://hdl.handle.net/20.500.12627/113056

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    Academic Journal

    المؤلفون: Etiope, G., Schoell, M., Hosgörmez, H.

    المساهمون: Etiope, G., Istituto Nazionale di Geofisica e Vulcanologia, Sezione Roma2, Roma, Italia, Schoell, M., GasConsult International Inc., Berkeley, USA, Hosgörmez, H., Istanbul University, Engineering Faculty, Geology Department, Istanbul, Turkey

    وصف الملف: application/pdf

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Geochemical evidence of presentday serpentinization. Science 56, 830–832. Barnes, I., O'Neil, J.R., Trescases, J.J., 1978. Present day serpentinization in New Caledonia, Oman, and Yugoslavia. Geochim. Cosmochim. Acta 42, 144–145. Beeskow, B., Treloar, P.J., Rankin, A.H., Vennemann, T.W., Spangenberg, J., 2006. A reassessment of models for hydrocarbon generation in the Khibiny nepheline syenite complex, Kola Peninsula, Russia. Lithos 91, 1–18. Blank, J.G., Green, S.J., Blake, D., Valley, J.W., Kita, N.T., Treiman, A., Dobson, P.F., 2009. An alkaline spring system within the Del Puerto Ophiolite (California, USA): a Mars analog site. Planet. Space Sci. 57, 533–540. Bottinga, Y., 1969. Calculated fractionation factors for carbon and hydrogen isotope exchange in the system calcite–carbon dioxide–graphite–methane–hydrogen– water vapor. Geochim. Cosmochim. Acta 33, 49–64. Bradley, A.S., Summons, R.E., 2010. Multiple origins of methane at the Lost City hydrothermal field. Earth Planet. Sci. Lett. 297, 34–41. Brown, A., 2000. Evaluation of possible gas microseepage mechanisms. Am. Assoc. Petrol. Geol. Bull. 84, 1775–1789. Cardace, D., Hoehler, T.M., Roberts, B.A., Foster, A.L., 2009. Actively serpentinizing seeps in the Bay of Island Ophiolites, Western Newfoundland: a window into the deep biosphere. GSA Abstr. Programs 41 (7), 378. Charlou, J.L., Donval, J.P., Fouquet, Y., Jean-Baptiste, P., Holm, N., 2002. Geochemistry of high H2 and CH4 vent fluids issuing from ultramafic rocks at the rainbow hydrothermal field (36°14′N, MAR). Chem. Geol. 191, 345–359. Chung, H.M., Gormly, J.R., Squires, R.M., 1988. Origin of gases hydrocarbons in subsurface environments: theoretical considerations of carbon isotope distribution. Chem. Geol. 71, 97–103. De Boer, J.Z., Chanton, J., Zeitlhöfler, M., 2007. Homer's chimaera fires (SW of Antalya/ Turkey); burning abiogenic methane gases; are they generated by a serpentinization process related to alkalic magmatism? Geowissenschaftliche 158/4, 997–1003. Delichatsios, M.A., 1990. Procedure for calculating the air entrainment into turbulent pool and jet fires. J. Fire. Prot. Eng. 2, 93–98. Demirel, I.H., Günay, Y., 2000. Tectonic and karstic effects on the Western Taurus Region, Southwestern Turkey: relations to the present temperature gradients and total organic carbon content. Energy Sources 22, 431–441. Ehlmann, B.L., Mustard, J.F., Murchie, S.L., 2010. Geologic setting of serpentine deposits on Mars. Geophys. Res. Lett. 37, L06201. doi:10.1029/2010GL042596. Etiope, G., 2009. Natural emissions of methane from geological seepage in Europe. Atmos. Environ. 43, 1430–1443. Etiope, G., Klusman, R.W., 2010. Microseepage in drylands: flux and implications in the global atmospheric source/sink budget ofmethane.Global Planet. Change 72, 265–274. Etiope, G., Martinelli, G., 2002. Migration of carrier and trace gases in the geosphere: an overview. Phys. Earth Planet. Inter. 129, 185–204. Etiope, G., Fridriksson, T., Italiano, F., Winiwarter, W., Theloke, J., 2007. Natural emissions of methane from geothermal and volcanic sources in Europe. J. Volcanol. Geotherm. Res. 165, 76–86. Etiope, G., Nakada, R., Tanaka, K., Yoshida, N., 2011a. Gas seepage from Tokamachi mud volcanoes, onshore Niigata Basin (Japan): origin, post-genetic alterations and CH4– CO2 fluxes. Appl. Geochem. 26, 348–359. Etiope, G., Oehler, D.Z., Allen, C.C., 2011b. Methane emissions from Earth's degassing: implications for Mars. Planet. Space Sci. 59, 182–195. Fiebig, J., Woodland, A.B., Spangenberg, J., Oschmann, W., 2007. Natural evidence for rapid abiogenic hydrothermal generation of CH4. Geochim. Cosmochim. Acta 71, 3028–3039. Filipescu, M.N., Humă, I., 1979. Geochemistry of Natural Gases. Academiei R.S.Romania, Publ., House, Bucharest. 175 pp. (in Romanian). Foustoukos, D.I., Seyfried Jr., W.E., 2004. Hydrocarbons in hydrothermal vent fluids: the role of chromium-bearing catalysts. Science 304, 1002–1005. Fritz, P., Clark, I.D., Fontes, J.-C., Whiticar, M.J., Faber, E., 1992. Deuterium and 13C evidence for low temperature production of hydrogen and methane in a highly alkaline groundwater environment in Oman. In: Kharaka, Y.K., Maest, A.S. (Eds.), Proceed. 7th Intern. Symp. on Water–Rock Interaction: Low Temperature Environments, vol. 1. Balkema, Rotterdam, pp. 793–796. Fruh-Green, G.L., Connolly, J.A.D., Plas, A., Kelley, D.S., Grobéty, B., 2004. Serpentinization of oceanic peridotites: implications for geochemical cycles and biological activity. The subseafloor biosphere at mid-ocean ridges: Geophysical Monograph Series, 144. AGU, pp. 119–136. Fu, Q., Sherwood Lollar, B., Horita, J., Lacrampe-Couloume, G., Seyfried, J.W.E., 2007. Abiotic formation of hydrocarbons under hydrothermal conditions: constraints from chemical and isotopic data. Geochim. Cosmochim. Acta 71, 1982–1998. Hoefen, T.M., Clark, R.N., Bandfield, J.L., Smith, M.D., Pearl, J.C., Christensen, P.R., 2003. Discovery of olivine in the Nili Fossae region of Mars. Science 302, 627–630. Homer, translated by R. Fitzgerald, 2004 The Iliad: Farrar, Straus, Giroux,NewYork, 632 pp. Horibe, Y., Craig, H., 1995. D/H fractionation in the system methane–hydrogen–water. Geochim. Cosmochim. Acta 59, 5209–5217. Hosgormez, H., 2007. Origin of the natural gas seep of Çirali (Chimera), Turkey: site of the first Olympic fire. J. Asian Earth Sci. 30, 131–141. Hosgormez, H., Etiope, G., Yalçın, M.N., 2008. New evidence for a mixed inorganic and organic origin of the Olympic Chimaera fire (Turkey): a large onshore seepage of abiogenic gas. Geofluids 8, 263–275. Jacquemin,M., Beuls, A., Ruiz, P., 2010. Catalytic production ofmethane fromCO2 andH2at low temperature: insight on the reaction mechanism. Catal. Today 157, 462–466. Jenden, P.D., Hilton, D.R., Kaplan, I.R., Craig, H., 1993. Abiogenic hydrocarbons and mantle helium in oil and gas fields. In: Howell, D. (Ed.), Future of Energy Gases: USGS, Professional Paper, 1570, pp. 31–35. Juteau, T., 1968. Commentaire de la carte geologique des ophiolites de la region de Kumluca (Taurus lycien, Turquie meridionale): cadre structural, modes de gisement et description des principaux fades du cortege ophiolitique. M.T.A. Bull. 70 Ankara. Lefevre, F., Forget, F., 2009. Observed variations of methane on Mars unexplained by known chemistry and physics. Nature 460, 720–723. Lyon, G., Giggenbach, W.F., Lupton, J.F., 1990. Composition and origin of the hydrogenrich gas seep, Fiordland, New Zealand. EOS Trans. V51D–10, 1717. McCollom, T.M., Bach, W., 2009. Thermodynamic constraints on hydrogen generation during serpentinization of ultramafic rocks. Geochim. Cosmochim. Acta 73, 856–879. McCollom, T.M., Seewald, J.S., 2006. Carbon isotope composition of organic compounds produced by abiotic synthesis under hydrothermal conditions. Earth Planet. Sci. Lett. 243, 74–84. McCollom, T.M., Sherwood Lollar, B., Lacrampe-Couloume, G., Seewald, J.S., 2010. The influence of carbon source on abiotic organic synthesis and carbon isotope fractionation under hydrothermal conditions. Geochim. Cosmochim. Acta 74, 2717–2740. Mischna, M.A., Allen, M., Richardson, M.I., Newman, C.E., Toigo, A.D., 2011. Atmospheric modelling of Mars methane surface releases. Planet. Space Sci. 59, 227–237. Monnin, C., Chavagnac, V., Ceuleneer, G., Boulart, C., Hoareau, G., 2011. Characterization of hyperalkaline fluids produced by serpentinization of mantle peridotites in Oman and in Liguria (Northern Italy). Mineralog. Mag. 75, 1490 (Goldschmidt Conference Abstracts). Mumma, M.J., Villanueva, G.L., Robert, E., Novak, R.E., Hewagama, T., Boncho, P., Bonev, B.P., DiSanti, M.A., Mandell, A.M., Michael, D., Smith, M.D., 2009. Strong release of methane on mars in northern summer 2003. Science 323, 1041–1045. Neal, C., Stanger, G., 1983. Hydrogen generation from mantle source rocks in Oman. Earth Planet. Sci. Lett. 66, 315–320. Neubeck, A., Nguyen, D.T., Bastviken, D., Crill, P., Holm, N.G., 2011. Formation of H2 and CH4 by weathering of olivine at temperatures between 30 and 70 degrees Celsius. Geochem. Transactions 12, 6. doi:10.1186/1467-4866-12-6. Ni, Y., Dai, J., Zhou, Q., Luo, X., Hu, A., Yang, C., 2009. Geochemical characteristics of abiogenic gas and its percentage in Xujiaweizi Fault Depression, Songliao Basin, NE China. Petrol. Explor. Dev. 36, 35–45. O'Neil, J., Barnes, I., 1971. Cl3 and 018 compositions in some fresh-water carbonates associated with ultramafic rocks and serpentinites: western United States. Geochim. Cosmochim. Acta 35, 687–697. Oze, C., Sharma, M., 2005. Have olivine, will gas: serpentinization and the abiogenic production of methane on Mars. Geophys. Res. Lett. 32, L10203. Potter, J., Rankin, A.H., Treloar, P.J., 2004. Abiogenic Fischer–Tropsch synthesis of hydrocarbons in alkaline igneous rocks; fluid inclusion, textural and isotopic evidence from the Lovozero complex, N. W. Russia. Lithos 75, 311–330. Proskurowski, G., Lilley, M.D., Kelley, D.S., Olson, E.J., 2006. Low temperature volatile production at the Lost City Hydrothermal Field, evidence from a hydrogen stable isotope geothermometer. Chem. Geol. 229, 331–343. Proskurowski, G., Lilley, M.D., Seewald, J.S., Früh-Green, G.L., Olson, E.J., Lupton, J.E., Sylva, S.P., Kelley, D.S., 2008. Abiogenic hydrocarbon production at Lost City hydrothermal field. Science 319, 604–607. Sano, Y., Marty, B., 1995. Origin of carbon in fumarolic gas from island arcs. Chem. Geol. 119, 265–274. Sano, Y., Urabe, A., Wakita, H., Wushiki, H., 1993. Origin of hydrogen–nitrogen gas seeps, Oman. Appl. Geochem. 8, 1–8. Sherwood Lollar, B., Lacrampe-Couloume, G., Slater, G.F., Ward, J.A., Moser, D.P., Gihring, T.M., Lin, L.-H., Onstott, T.C., 2006. Unravelling abiogenic and biogenic sources of methane in the Earth's deep subsurface. Chem. Geol. 226, 328–339. Sherwood Lollar, B., Voglesonger, K., Lin, L.-H., Lacrampe-Couloume, G., Telling, J., Abrajano, T.A., Onstott, T.C., Pratt, L.M., 2007. Hydrogeologic controls on episodic H2 release from Precambrian fractured rocks—energy for deep subsurface life on Earth and Mars. Astrobiology 7, 971–986. Sherwood Lollar, B., Lacrampe-Couloume, G., Voglesonger, K., Onstott, T.C., Pratt, L.M., Slater, G.F., 2008. Isotopic signatures of CH4 and higher hydrocarbon gases from Precambrian Shield sites: a model for abiogenic polymerization of hydrocarbons. Geochim. Cosmochim. Acta 72, 4778–4795. Spulber, L., Etiope, G., Baciu, C., Malos, C., Vlad, S.N., 2010. Methane emission from natural gas seeps and mud volcanoes in Transylvania (Romania). Geofluids 10, 463–475. Szponar, N., Morrill, P.M., Brazelton, W.J., Schrenk, M.O., Bower, D.M., Steele, A., 2010. Present-day serpentinization in the Tablelands, Gros Morne National Park, Newfoundland: a Mars Analogue Site. American Geophysical Union, Fall Meeting 2010, Abstract #P13B-1393. Tang, Y., Perry, J.K., Jenden, P.D., Schoell, M., 2000. Mathematical modeling of stable carbon isotope ratios in natural gases. Geochim. Cosmochim. Acta 64, 2673–2687. Taran, Y.A., Kliger, G.A., Cienfuegos, E., Shuykin, A.N., 2010. Carbon and hydrogen isotopic compositions of products of open-system catalytic hydrogenation of CO2: implications for abiogenic hydrocarbons in Earth's crust. Geochim. Cosmochim. Acta 74, 6112–6125. Thampi, K.R., Kiwi, J., Grätzel, M., 1987. Methanation and photo-methanation of carbon dioxide at room temperature and atmospheric pressure. Nature 327, 506–508. Thielemann, T., Lucke, A., Schleser, G.H., Littke, R., 2000. Methane exchange between coal-bearing basins and the atmosphere: the Ruhr Basin and the Lower Rhine Embayment, Germany. Org. Geochem. 31, 1387–1408. Welhan, J.A., Craig, H., 1983. Methane, hydrogen and helium in hydrothermal fluids at 21°N on the East Pacific Rise. In: Rona, P.A., Bostrom, K., Laubier, L., Smith, K.L. (Eds.), Hydrothermal Processes at Seafloor Spreading Centers. Plenum, New York, pp. 391–409. Yakushev, V.S., Chuvilin, E.M., 2000. Natural gas and gas hydrate accumulations within permafrost in Russia. Cold Reg. Sci. Technol. 31, 189–197. Yuen, G., Blair, N., Des Marais, D.J., Chang, S., 1984. Carbon isotope composition of low molecular weight hydrocarbons and monocarboxylic acids from Murchison meteorite. Nature 307, 252–254. Zahnle,K., Freedman, R.S., Catling,D.C., 2011. Is theremethane on Mars? Icarus 212, 493–503. Zhu, Y., Shi, B., Fang, C., 2000. The isotopic compositions of molecular nitrogen: implications on their origins in natural gas accumulations. Chem. Geol. 164, 321–330.

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    Academic Journal

    المصدر: Organic geochemistry 33, 1429 - 1439 (2002).

    مصطلحات موضوعية: info:eu-repo/classification/ddc/540

    جغرافية الموضوع: DE

    Relation: info:eu-repo/semantics/altIdentifier/wos/WOS:000179970300011; info:eu-repo/semantics/altIdentifier/issn/0146-6380; https://juser.fz-juelich.de/record/25584; https://juser.fz-juelich.de/search?p=id:%22PreJuSER-25584%22

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    Academic Journal

    المصدر: Arabian Journal for Science & Engineering (Springer Science & Business Media B.V. ); Jul2015, Vol. 40 Issue 7, p1887-1895, 9p

    مصطلحات موضوعية: HYDROCARBONS, GASES, ISOTOPES, KEROGEN, PYROLYSIS, METHANE, ETHANES

    مصطلحات جغرافية: EASTERN Turkey