Academic literature on the topic 'Replenishment of hydrocarbon deposits'

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Journal articles on the topic "Replenishment of hydrocarbon deposits"

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Lazaruk, Yaroslav. "Regeneration of deposits of hydrocarbon fields of Ukraine." 58, no. 58 (June 1, 2023): 49–58. http://dx.doi.org/10.26565/2410-7360-2023-58-04.

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Formulation of the problem. In the world's oil and gas-bearing basins, there are known examples of an increase in the reserves of hydrocarbon deposits as a result of inflow of fluids from the deep subsoil. Recently, the theory of the Earth degassing is gaining popularity. There are more and more arguments in favor of the fact that in many oil- and gas-bearing provinces of the world, oil and gas deposits are constantly replenished due to the migration of hydrocarbons through degassing pipes. Certain prospects for maintaining oil and gas production are possible as a result of the natural recover
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Bochkarev, V., and A. Bochkarev. "RENEWABLE AND NON-RENEWABLE HC DEPOSITS." Znanstvena misel journal, no. 91 (June 26, 2024): 23–43. https://doi.org/10.5281/zenodo.12541096.

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Gradually, there is an accumulation of facts (replenishment of reserves of long-exploited deposits, inconsistency of the oil field exploitation period, pulsating flow rates), which indicate contemporary oil and gas formation and replenishment of initial reserves with incoming new portions of hydrocarbons. Established facts of the replenishment of oil and gas reserves in the fields under development, along with other noted evidence, indicate that the processes of generation, migration of oil and gas and formation (reformation) of deposits occur much faster than previously thought - within sever
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Barenbaum, A. A., and A. P. Shilovsky. "On modern oil and gas formation." Actual Problems of Oil and Gas, no. 42 (December 4, 2023): 68–87. http://dx.doi.org/10.29222/ipng.2078-5712.2023-42.art5.

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According to the organic theory of oil and gas origin, hydrocarbon potential of their deposits is limited. Therefore, during the exploitation of deposits, this potential must decrease. The discovery of the phenomenon of oil and gas reserves replenishment in developed fields, as well as the experimentally proven possibility of transferring these fields to “inexhaustible” hydrocarbon production mode, poses a number of new tasks for developers. The main one is controlling the hydrocarbon potential of oil and gas deposits and maintaining it at highest possible level. In the article we draw attenti
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Muslimov, Renat Kh. "An in-depth study of the crystalline basement of sedimentary basins is a dictate of the time." Georesursy 21, no. 4 (2019): 55–62. http://dx.doi.org/10.18599/grs.2019.4.55-62.

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The history of studying the crystalline basement in the Republic of Tatarstan, the state of implementation of the super-deep drilling program is given. The scientific substantiation of the replenishment of exploited oil and oil-gas fields is provided by feeding them with deep hydrocarbons through oil supply channels connecting the deep source of hydrocarbons with sedimentary cover deposits. The crystalline basement is of interest for the search for hydrocarbon deposits, but its role as a transit for replenishing deposits of hydrocarbon sedimentary cover in the process of constant degassing of
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Rudko, H. I., and V. V. Sobol. "Prospects of oil-and-gas-bearing capacity of Ukraine at great depths for the expansion of hydrocarbon potential of Ukraine." Мінеральні ресурси України, no. 2 (August 19, 2020): 36–42. http://dx.doi.org/10.31996/mru.2020.2.36-42.

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Energy independence is an important component of sustainable development and security of the state. Ukraine has a great hydrocarbon potential of the subsoil, which is why the priority objective is a search and exploration of new deposits of hydrocarbon raw materials. One of the important directions for increase of potential resources and reserves of oil and gas is the development of large deep (over 4500–5000 m) deposits, as hydrocarbon reserves at small and medium depths are quite depleted in many regions.
 For a long time, hydrocarbon reservoirs in basement rocks were underestimated dur
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Radchenko, K. A., N. I. Korobova, M. A. Bolshakova, A. V. Stoupakova, A. P. Zavyalova, and V. V. Chupakhina. "Lithological-geochemical characteristics of natural outcrops of the Domani sediments in the areas of the Pre-Urals regional trough of the Volga-Ural oil and gas basin." Moscow University Bulletin. Series 4. Geology, no. 4 (August 28, 2019): 28–33. http://dx.doi.org/10.33623/0579-9406-2019-4-28-33.

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Replenishment of oil reserves requires searching, exploration and production of new unconventional objects. Among these objects is Domanik formation, which is widespread in the Volga-Ural basin. The Domanic high-carbon formation is presented by thin-layered carbonate-siliceous rocks with a high content of organic matter, capable of both producing hydrocarbons with its own oil and gas potential, and concentraring them in reservoirs [Stupakova et al., 2017]. Study of lithological composition of rocks help to obtain information about the nature of hydrocarbon accumulations and understand possibil
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Dzyublo, A. D., V. V. Sidorov, M. S. Zonn, and I. G. Agadzhanyants. "Oil and gas perspectives of the Ordoviksky-Nizhnefransky mega-complex of the Pechorsk Sea shelf." Moscow University Bulletin. Series 4. Geology 1, no. 4 (2022): 70–81. http://dx.doi.org/10.33623/0579-9406-2021-4-70-81.

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A fundamentally important result of offshore exploration is the identification of a new oilbearing region in the eastern part of the Pechomorsk shelf. Large oil fields have been discovered here: Prirazlomnoye, Varandey-more, Medynskoye-more, Dolginskoye. The explored reserves and resources of hydrocarbons (HC) suggest that in the near future a new oil-producing region will be formed on the shelf of the Pechora Sea. According to the State Balance, the total initial raw oil resources in the Pechora Sea are 3273.2 million tons. The main task of our work is the desire of the authors to draw attent
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Muslimov, Renat Kh. "The experience of rational development of hydrocarbon resources in the Earth’s interior used in the new paradigm of Academician A.E. Kontorovich – the development of oil and gas complex of Russia." Georesursy, Special issue (August 31, 2020): 5–9. http://dx.doi.org/10.18599/grs.2020.si.5-9.

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The Republic of Tatarstan has accumulated vast experience in the exploration and development of oil fields of various ranks – from small and smallest to giant and supergiant. Approaches for the rational development of various groups and categories of deposits have been found. The most effective methods of prospecting, exploration and additional exploration of oil fields, the most advanced hydrodynamic methods of developing fields with active and hard-to-recover reserves, including those at the late and post-late stages of development, have been worked out. Methods of enhanced oil recovery have
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Barenbaum, Azariy A. "New representations on oil and gas origin in connection with the opening of the phenomenon of reserves replenishment in exploited oil fields." Georesursy 21, no. 4 (2019): 34–39. http://dx.doi.org/10.18599/grs.2019.4.34-39.

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New ideas about the origin of oil and gas are discussed. They are caused by the discovery of the phenomenon of replenishment of oil and gas reserves in exploited fields. This phenomenon was discovered by the Russian geologists a quarter of a century ago, and a little later it was theoretically justified on the basis of the biosphere concept of oil and gas formation. As a result, the well-known «organic hypothesis» and «mineral hypothesis», which have long time competed in oil and gas geology are being replaced by new representations today, according to which oil and gas are the inexhaustible u
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Zhang, Tao, Jingchao Lei, Cong Hu, et al. "The Uranium Enrichment Mechanism of Hydrocarbon-Bearing Fluids in Aeolian Sedimentary Background Uranium Reservoirs of the Ordos Basin." Minerals 15, no. 7 (2025): 716. https://doi.org/10.3390/min15070716.

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Significant uranium exploration breakthroughs have been achieved in the eolian deposits of the uranium reservoirs in the southwestern part of the Ordos Basin. The redox environment remains a crucial factor in controlling the migration and precipitation of uranium. This study, through rock mineralogical observations and hydrocarbon gas composition analysis, combined with the regional source rock and basin tectonic evolution history, reveals the characteristics of the reducing medium and the mineralization mechanisms involved in uranium ore formation. The Lower Cretaceous Luohe Formation uranium
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Dissertations / Theses on the topic "Replenishment of hydrocarbon deposits"

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Arthur, Michael Raymond. "Mass-Transport Deposits in the Northern Gulf of Mexico and Their Implications for Hydrocarbon Exploration." TopSCHOLAR®, 2018. https://digitalcommons.wku.edu/theses/3076.

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This study investigates Mio-Pliocene mass-transport deposits (MTDs) in an understudied, hydrocarbon-rich region of the northeastern Gulf of Mexico. The research utilizes a high-quality 3D seismic dataset with an area of 635 km2, along with wireline logs and biostratigraphic data. With the help of quantitative seismic geomorphology techniques, detailed mapping of MTDs suggests a complex erosional and depositional history. Deposition of a MTD unit resulted in a 180 m topographic high that substantially influenced the distribution and morphology of subsequent MTDs, specifically the bifurcation of
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Aldosary, Huda A. KH. "Polycyclic Aromatic Hydrocarbon Degradation by Anaerobic Bacteria from the Great Artesian Basin." Thesis, Griffith University, 2020. http://hdl.handle.net/10072/393639.

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The Great Artesian Basin (GAB) is a vast subterranean thermal aquifer system underlying over 20% of the Australian continent. Substantial reserves of oil, gas and minerals exist within the GAB and combined with industrial activities can often contaminate the groundwaters. The current study investigated the bacterial ecology of bore waters that were in or close to oil deposits. Three sites were selected, two in the Quilpie/Eromanga region of Queensland (Naretha bore registered number 4022 and Adavale bore registered number 305), and the other in the Moomba oil field of South Australia (Moomba b
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Makhubele, Marvel M. H. "The role of salt tectonics in the hydrocarbon potential of the post-salt deposits (Albian to Recent), offshore Gabon." Thesis, University of Western Cape, 2014. http://hdl.handle.net/11394/3497.

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Magister Scientiae - MSc<br>Following successful discovery and production of hydrocarbons, Gabon is one of the key hydrocarbon target countries in Africa. Located in the Lower Congo Basin, the study area is based in Etame Marin Permit (EMP), which is licensed to VAALCO Energy Inc., and has been producing hydrocarbons since 2002. The currently explored and producing reservoirs are in the pre-salt sandstones of the Aptian Gamba Formation, charged with hydrocarbons sourced from the syn-rift lacustrine shale of the pre-Aptian Melania Formation. With the aim of finding potential petroleum plays in
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Semkiv, Bogdan. "Problems of monitoring existing oil wells of Western Ukraine." Thesis, National Aviation University, 2021. https://er.nau.edu.ua/handle/NAU/50623.

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1. V.Pryhid. Ecological catastrophe: Boryslav has not laughed for a long time // Deutsche Welle. - 30.10.2017. – Lviv. https://p.dw.com/p/2mdS7. 2. Dryguluch P.G., Pukish A.V. Problems of urban areas during the development of oil and gas fields (on the example of the city of Boryslav)// Oil and gas industry of Ukraine. 2013. № 2.<br>The territory of Ukraine has a large number of wells, as the history of hydrocarbon production dates back to XVI - XVII centuries. The western region of Ukraine is represented by several oil and gas regions: Lviv, Ivano-Frankivsk, Chernivtsi and Zakarpattia region
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Razafimbelo, Eugène. "Le bassin de morondava (madagascar) : synthese geologique et structurale." Université Louis Pasteur (Strasbourg) (1971-2008), 1987. http://www.theses.fr/1987STR13184.

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La synthese des donnees geologiques et structurales du bassin de morondava conduit a modifier la nomenclature stratigraphique des formations sedimentaires du type "karroo". Dans le bassin, le controle tectonique de la sedimentation est realise par un jeu complexe mais permanent de failles en faisceaux denses. La fracturation continentale a permis la mise en place de roches effusives basaltes et gabbros, puis roches granito-syenitiques. L'epaisseur et la nature des formations sedimentaires du bassin de morondava sont propices a la naissance de gisements d'hydrocarbures
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Петрунчак, І. М. "Економічний механізм розробки нафтогазовидобувними підприємствами родовищ вуглеводнів на пізній стадії експлуатації". Thesis, Івано-Франківський національний технічний університет нафти і газу, 2014. http://elar.nung.edu.ua/handle/123456789/4684.

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У дисертаційній роботі досліджено фактори, особливості та показники, що визначають ефективність проектів дорозробки виснажених нафтових родовищ. Систематизовано існуючі методи підвищення нафтовіддачі пластів та інтенсифікації видобування нафти і здійснено аналіз їх економічної ефективності в умовах нафтогазових родовищ України. Визначено, що окрім нарощування розвіданих запасів та їх введення у розробку самостійним значним резервом вуглеводневої сировини є залишкова нафта і конденсат родовищ, що вже тривалий час експлуатуються. Проведено аналіз фонду низькодебітних свердловин та удосконалено м
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Fan, Zhiming. "Formation and characteristics of carbonaceous deposits from heavy hydrocarbon vapours." Thesis, 2006. http://hdl.handle.net/2429/18466.

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Coking is an important step in the upgrading of bitumen or other heavy hydrocarbons into lighter products. Deposition of carbonaceous material in the cyclone exit line is a chronic problem for all fluid cokers and is a key process limitation to achieving longer run length. It has been a subject of detailed process studies at UBC. The overall aims of this work were to elucidate the causes of deposit formation via coke characterization with a range of techniques, to examine the evolution of deposit composition and structure over time, to compare the laboratory deposits with industrial samples, a
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Ku, Chih-Wen, and 顧志文. "Joint Development of Hydrocarbon Deposits in the South China Sea: International Legal Perspective." Thesis, 2017. http://ndltd.ncl.edu.tw/handle/h675sw.

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博士<br>國立臺灣師範大學<br>政治學研究所<br>105<br>The significances of the South China Sea are the potential hydrocarbon deposits reserved, sea lines of communication and productive living resources. These are the reasons the claimants to the South China Sea claim sovereignty over the maritime features and their surrounding waters. Claims are based on historical evidence, pre-occupation or the United Nations Convention on the Law of the Sea. Recently all claimants have been bolstering some infrastructure on their maritime features such as airstrips, radar systems and harbors for vessels. This behavior compl
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Merrell, Michael Phillip. "Pressure and stress at Mad Dog Field, Gulf of Mexico." 2012. http://hdl.handle.net/2152/20068.

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Hydrocarbon exploration involves drilling into or near salt deposits in the Gulf of Mexico, Brazil, Egypt, and the Middle East. Drilling these systems has proven to be quite dangerous, challenging, and expensive due to the pressure and stress perturbations that exist around the salt. My study focuses on characterizing the pressure and stress distribution at the Mad Dog field, which is a large oil field below an allochthonous salt body in the deepwater Gulf of Mexico. The Mad Dog field lies beneath the Sigsbee Escarpment, which represents the surface and seaward-most indicator of a mobile salt
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Fuhrmann, Andreas [Verfasser]. "Geochemical indicators of paleoenvironmental and paleoclimatic change in ancient and recent lake deposits: facies models, facies distributions and hydrocarbon aspects / vorgelegt von Andreas Fuhrmann." 2003. http://d-nb.info/966166795/34.

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Books on the topic "Replenishment of hydrocarbon deposits"

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Becker-Weinberg, Vasco. Joint Development of Hydrocarbon Deposits in the Law of the Sea. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-43570-0.

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N, Sokolov V., and Eremeev V. V, eds. Clay seals of oil and gas deposits. A.A. Balkema, 2004.

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A, Moskovskiĭ G., ed. Permskiĭ galogenez Prikaspii︠a︡. Izd-vo "Nauch. kn.", 2003.

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H, Anderson Warren. Mineralization and hydrocarbon emplacement in the Cambrian-Ordovician Mascot Dolomite of the Knox Group in south-central Kentucky. Kentucky Geological Survey, University of Kentucky, 1991.

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H, Bouma Arnold, Carter R. M, and International Geological Congress (28th : 1989 : Washington, D.C.), eds. Facies models in exploration and development of hydrocarbon and ore deposits: Proceedings of the 28th International Geology Congress, 9-19 July, 1989. VSP, 1991.

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Schroeder, Roy A. Delineation of a hydrocarbon (weathered gasoline) plume in shallow deposits at the U.S. Naval Weapons Station, Seal Beach, California. U.S. Dept. of the Interior, U.S. Geological Survey, 1991.

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Aerojet TechSystems Company (U.S.) and George C. Marshall Space Flight Center., eds. Carbon deposition model for oxygen-hydrocarbon combustion: Task VI, data analysis and formulation of an empirical model. Aerojet Techsystems Co., 1990.

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Pikovskiy, Yuriy. Mineral oil: the development of ideas about the inorganic origin of oil and gas deposits. INFRA-M Academic Publishing LLC., 2021. http://dx.doi.org/10.12737/1206680.

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The widely accepted theory of the organic origin of oil and gas accumulations is practically not used to select promising areas and places for exploratory drilling. This makes us pay close attention to the alternative mineral concept of the genesis of these minerals. The purpose of the book is to show how ideas about the deep inorganic origin of accumulations of oil and hydrocarbon gas developed from antiquity to modern times, before the creation of modern mineral theory. The importance of mineral theory for forecasting large oil and gas fields, as well as for optimizing oil and gas geoecology
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Nath, Das Dhirendra, and University of Gauhati. Dept. of Geological Sciences., eds. Hydrocarbon deposits of north east India: A collection of scientific papers presented at the regional symposium held on 15, 16 March 1990, in the Department of Geological Sciences, Gauhati University. All Assam Geological Forum, Gauhati University Unit, 1991.

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The Formation of Hydrocarbon Deposits in the North African Basins. Springer-Verlag, 2001. http://dx.doi.org/10.1007/bfb0011427.

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Book chapters on the topic "Replenishment of hydrocarbon deposits"

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Glasko, Yuri V. "Interpretation Algorithms for Hydrocarbon Deposits." In Springer Proceedings in Earth and Environmental Sciences. Springer International Publishing, 2019. http://dx.doi.org/10.1007/978-3-319-97670-9_13.

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Carter, J. S., P. C. D. Cazalet, and J. Ferguson. "Light Hydrocarbon Gases and Mineralization." In Mineral Deposits within the European Community. Springer Berlin Heidelberg, 1988. http://dx.doi.org/10.1007/978-3-642-51858-4_22.

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Ebert, Lawrence B. "Reductive Chemistry of Aromatic Hydrocarbon Molecules." In Chemistry of Engine Combustion Deposits. Springer US, 1985. http://dx.doi.org/10.1007/978-1-4613-2469-0_18.

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Gauthier-Lafaye, F., and F. Weber. "Uranium-Hydrocarbon Association in Francevillian Uranium Ore Deposits, Lower Proterozoic of Gabon." In Bitumens in Ore Deposits. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-642-85806-2_15.

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Parnell, J. "Chemical Age Dating of Hydrocarbon Migration Using Uraniferous Bitumens, Czech-Polish Border Region." In Bitumens in Ore Deposits. Springer Berlin Heidelberg, 1993. http://dx.doi.org/10.1007/978-3-642-85806-2_28.

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Alizadeh, Akif, Ibrahim Guliyev, Parviz Mamedov, et al. "Lithological Composition, Lithostratigraphy, and Lithofacies Zonation of the PS Deposits." In Pliocene Hydrocarbon Sedimentary Series of Azerbaijan. Springer International Publishing, 2024. http://dx.doi.org/10.1007/978-3-031-50438-9_2.

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Becker-Weinberg, Vasco. "Joint Development Agreements in Cases of Transboundary Hydrocarbon Deposits." In Joint Development of Hydrocarbon Deposits in the Law of the Sea. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-43570-0_5.

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Foght, J. "Microbial Communities in Oil Shales, Biodegraded and Heavy Oil Reservoirs, and Bitumen Deposits." In Handbook of Hydrocarbon and Lipid Microbiology. Springer Berlin Heidelberg, 2010. http://dx.doi.org/10.1007/978-3-540-77587-4_156.

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Parnell, John, and Alistair McCready. "Paragenesis of gold- and hydrocarbon-bearing fluids in gold deposits." In Organic Matter and Mineralisation: Thermal Alteration, Hydrocarbon Generation and Role in Metallogenesis. Springer Netherlands, 2000. http://dx.doi.org/10.1007/978-94-015-9474-5_3.

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Becker-Weinberg, Vasco. "The Concept and Purpose of Joint Development of Hydrocarbon Deposits." In Joint Development of Hydrocarbon Deposits in the Law of the Sea. Springer Berlin Heidelberg, 2014. http://dx.doi.org/10.1007/978-3-662-43570-0_2.

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Conference papers on the topic "Replenishment of hydrocarbon deposits"

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Mike Brown, J., and James B. Dobbs. "A Novel Exothermic Process for the Removal of Paraffin Deposits in Hydrocarbon Production." In CORROSION 1998. NACE International, 1998. https://doi.org/10.5006/c1998-98233.

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Abstract The formation of troublesome organic deposits during oil and gas production is a significant cause of decreased production and increased lifting costs. Traditional methods of mechanical and solvent-based removal are time consuming, expensive, and can create additional problems of re-deposition and dehydration facilities upsets. A novel process has been developed to remove organic deposits from hydrocarbon producing wells and equipment by generating an exothermic reaction that melts and disperses paraffin wax and asphaltenic deposits. The reaction product is a powerful paraffin dispers
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Casey, G. E. "Evaluating Cleaning Solutions for the Removal of Hydrocarbon Deposits in Pipelines and Process Equipment." In CORROSION 2006. NACE International, 2006. https://doi.org/10.5006/c2006-06531.

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Abstract During the life of a pipeline, a piece of process equipment or an entire process plant, it may become necessary to chemically clean them to remove deposits, scales and foulants. Identification of the inorganic scales and deposits such as iron oxides, copper oxides, water hardness salts, etc., and common methodologies to remove those undesirable materials are documented in several textbooks, manuals, chemical cleaning contractors’ literature as well as variety of technical papers and other publicly available resources. The techniques and practices to remove the inorganic portions of th
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Khabibullin, Marat Yakhievich. "Impulse non-stationary flooding of hydrocarbon deposits." In International Conference "Actual Issues of Mechanical Engineering" (AIME 2018). Atlantis Press, 2018. http://dx.doi.org/10.2991/aime-18.2018.51.

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Pozdniakova, V. V., and M. A. Kustikova. "Raman spectroscopy for offshore hydrocarbon deposits detection." In 2022 International Conference Laser Optics (ICLO). IEEE, 2022. http://dx.doi.org/10.1109/iclo54117.2022.9840226.

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N. Dmitrievskiy, A., M. P. Yurova, and N. N. Tomilova. "Volcanic deposits as unconventional sources of Ukraine hydrocarbon." In 9th EAGE International Conference on Geoinformatics - Theoretical and Applied Aspects. EAGE Publications BV, 2010. http://dx.doi.org/10.3997/2214-4609.201402825.

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Baldin, V. A. "Hydrocarbon Potential of Riphean-paleozoic Deposits of Taimyr." In Saint Petersburg 2012. EAGE Publications BV, 2012. http://dx.doi.org/10.3997/2214-4609.20143597.

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Smolin, S. N., and G. M. Mitrofanov. "Determination of Small Hydrocarbon Deposits using Prony Decomposition." In Geomodel 2019. European Association of Geoscientists & Engineers, 2019. http://dx.doi.org/10.3997/2214-4609.201950026.

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Csorgei, J., S. Kovacsvolgyi, and L. Sores. "Non-seismic methods to delineate hydrocarbon deposits in Hungary." In 55th EAEG Meeting. European Association of Geoscientists & Engineers, 1993. http://dx.doi.org/10.3997/2214-4609.201411611.

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Dem‘yanchuk, V., I. Bagriy, O. Somov, and O. Soroka. "FZIP Study for Prospecting and Exploration of Hydrocarbon Deposits." In 65th EAGE Conference & Exhibition. European Association of Geoscientists & Engineers, 2003. http://dx.doi.org/10.3997/2214-4609-pdb.6.p055.

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Voroshilov, N. A., G. N. Mikhailov, S. A. Veshev, and M. B. Shtokalenko. "Prognosis and prospecting of hydrocarbon deposits by geoelectrochemical methods." In Geophysics of the 21st Century - The Leap into the Future. European Association of Geoscientists & Engineers, 2003. http://dx.doi.org/10.3997/2214-4609-pdb.38.f095.

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Reports on the topic "Replenishment of hydrocarbon deposits"

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Skolnik, Merrill I. Radar Detection of Hydrocarbon Gas Seepage Associated with Underground Oil and Gas Deposits. Defense Technical Information Center, 1988. http://dx.doi.org/10.21236/ada199354.

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Pinet, N., O. H. Ardakani, J. Cesar, D. C. Petts, C. Debuhr, and P J Sack. Exploring the link between organic matter and Carlin-type gold mineralization: new insights from Yukon deposits. Natural Resources Canada/CMSS/Information Management, 2022. http://dx.doi.org/10.4095/330086.

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The link between organic matter and gold in sediment-hosted Carlin-type deposits is controversial. This study aims to tackle this potential link by documenting the occurrence of organic matter in a single borehole from a Carlin-type gold deposit in Yukon and by considering, in a preliminary way, the spatial and/or temporal relationship between organic matter and gold mineralization. The sedimentary succession hosting the Conrad deposit was relatively rich in organic matter, possibly related to Archea. Despite the high maturation of samples, the total organic carbon (TOC) content of the limesto
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Pack, David. PR-616-17607-R01 Sulfur Condensation in Pressure Reduction Equipment. Pipeline Research Council International, Inc. (PRCI), 2019. http://dx.doi.org/10.55274/r0011615.

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In natural gas transmission pipelines systems, there is a growing awareness of contamination due to the presence of sulfur vapor in the gas stream at sub ppm levels. Particularly at pressure reduction facilities, the sulfur vapor can desublimate out as solid elemental sulfur and then combine with other particle matter and trace liquids in the gas stream to form the observed contamination deposits. In order to better control the formation of the elemental sulfur, an improved understanding of the contribution that the design of pressure regulators make to this desublimation process is required.
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Ardakani, O. H. Organic petrography and thermal maturity of the Paskapoo Formation in the Fox Creek area, west-central Alberta. Natural Resources Canada/CMSS/Information Management, 2022. http://dx.doi.org/10.4095/330296.

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The Paskapoo Formation, which ranges in age from middle to upper Paleocene, is the major shallow aquifer in Alberta. This study is part of a larger GSC-led study on the potential environmental impact of hydrocarbon development in the Fox Creek area (west-central Alberta) on shallow aquifers. Fox Creek is located near the northern limit of the Paskapoo Formation. In addition to the underlying organic-rich source rocks in the study area, including the Duvernay Formation that is currently exploited for hydrocarbon resources, the Paskapoo Formation contains organic-rich intervals and coal seams. I
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Chidsey, Thomas C., David E. Eby, Michael D. Vanden Berg, and Douglas A. Sprinkel. Microbial Carbonate Reservoirs and Analogs from Utah. Utah Geological Survey, 2021. http://dx.doi.org/10.34191/ss-168.

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Multiple oil discoveries reveal the global scale and economic importance of a distinctive reservoir type composed of possible microbial lacustrine carbonates like the Lower Cretaceous pre-salt reservoirs in deepwater offshore Brazil and Angola. Marine microbialite reservoirs are also important in the Neoproterozoic to lowest Cambrian starta of the South Oman Salt Basin as well as large Paleozoic deposits including those in the Caspian Basin of Kazakhstan (e.g., Tengiz field), and the Cedar Creek Anticline fields and Ordovician Red River “B” horizontal play of the Williston Basin in Montana and
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