يعرض 1 - 20 نتائج من 170 نتيجة بحث عن '"mojabilidad"', وقت الاستعلام: 0.68s تنقيح النتائج
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    Dissertation/ Thesis

    المؤلفون: Dislaki, Evangelia

    المساهمون: University/Department: Universitat Autònoma de Barcelona. Departament de Física

    Thesis Advisors: Pellicer Vilà, Eva M. (Eva Maria), Sort Viñas, Jordi

    المصدر: TDX (Tesis Doctorals en Xarxa)

    وصف الملف: application/pdf

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    Academic Journal
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    Academic Journal

    المساهمون: Ministerio de Ciencia e Innovación (España), Ministerio de Economía y Competitividad (España)

    Relation: #PLACEHOLDER_PARENT_METADATA_VALUE#; info:eu-repo/grantAgreement/AEI/Plan Estatal de Investigación Científica y Técnica y de Innovación 2017-2020/PID2019-109401GB-I00/ES/ANTIADHERENCIA COMO HERRAMIENTA EN EL ECODISEÑO DE SUPERFICIES POLIMERICAS/; Publisher's version; Sí; Revista de Plasticos Modernos 125 (786) : 30-37 (2023); http://hdl.handle.net/10261/353562

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    Academic Journal
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    Dissertation/ Thesis
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    Dissertation/ Thesis
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    Dissertation/ Thesis
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    Conference
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    Academic Journal
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    Academic Journal
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    Academic Journal

    المؤلفون: Ruiz Rozo, Diana del Pilar

    المساهمون: Franco Ariza, Camilo, Universidad Nacional de Colombia - Sede Medellín, Fenómenos de Superficie - Michael Polanyi

    وصف الملف: application/pdf

    Relation: 1. Cortés F., M.C., & Franco C. (2013). “Uso de nanopartículas de Sílice para la estabilización de finos en lechos empacados de arena Ottawa”. págs. (26-33).; 2. Castruita G, P. & Saucedo, E. (2012). “Síntesis y Caracterización de Alúmina-α vía Sol”. Gel: Academia Española.; 3. He, W & Stephens, M. (2011). “Bridging Particle Size Distribution in Drilling Fluid and Formation Damage”. In SPE Eur. Formation Damage Conference. Pags. (7-10).; 4. Vickers, S., Jones, M & Twynam, T. (2006). “A new methodology that surpasses current bridging theories to efficiently seal a varied pore throat distribution as found in natural reservoir formations”. Wiert. Naft. Gaz, vol. 23/1. Pags. (501-515).; 5. Caenn, R., H.C.H.D., and Gray, G.R. (2011). “Composition and Properties of Drilling and Completions Fluids”. Gulf Professional Publishing. Pags. (1–37, 201).; 6. Akinsete, O & Isehunwa, S.O. (2013). “An Analysis of Formation Damage During the Drilling of Deviated Wells”. Ed. Petroleum Sciencie Technology, 31: Pags. (2202-2210).; 7. Navarrete, R.C., Dearing, H. L., Constien, V. G., Marsaglia, K. M., Seheult, J. M., & Rodgers, P. (2002). “Experiments in Fluid Loss and Formation Damage with Xanthan-Based Fluids While Drilling, in Society of Petroleum Engineers”. SPE, Editor.; 8. Sheshdeh, M.J. (2015). “A Review Study of Wettability Alteration Methods with Regard to Nano-Materials Application”. In SPE Bergen One Day Seminar. Society of Petroleum Engineers: Bergen, Norway. Pag. (12).; 9. A., N. “Evaluación de yacimientos de hidrocarburos”. Centro de Publicaciones Universidad Nacional de Colombia. Vol. (1).; 11. Usuga-Manco, L. (2015). "Estudio de la hidrofobicidad de la caolinita de La Unión, Antioquia". Tecno Lógicas, 18: Pags. (71-81).; 12. Franco, C., Cortés, F., & Nassar, N. (2014). “Adsorptive removal of oil spill from oil-in-fresh water emulsions by hydrophobic alumina nanoparticles functionalized with petroleum vacuum residue”. Journal of colloid and interface science. Pág. (168-177).; 13. Hoelscher, K. (2013). “Nanotechnology Application in Drilling Fluids, in Offshore Mediterranean Conference and Exhibition. Offshore Mediterranean Conference: Ravenna, Italy. Pág. (11).; 14. Ullo, J. (2008). “Computational Challenges in the Search for and Production of Hydrocarbons”. Scientific Modeling and Simulation, 15: Pags. (313-337).; 15. Bennion, D.B., Thomas, F. B., & Bennion, D. W. (1991). “Effective Laboratory Coreflood Tests to Evaluate and Minimize Formation Damage in Horizontal Wells, in Third International Conference on Horizontal Well Technology”. Houston, Texas.; 16. Bennion, D.B., & Thomas, F. B. (1994). “Underbalanced Drilling of Horizontal; 17. Wells. (1994). Does It Really Eliminate Formation Damage, in SPE Formation Damage Control Symposium". SPE, Editor: Lafayette, Louisiana.; 18. Ezeukwu, T., R.L. Thomas, & Gunneroed, T. (1998). “Fines Migration Control in High-Water-Cut Nigerian Oil Wells: Problems and Solutions, in SPE Formation Damage Control Conference”. Society of Petroleum Engineers: Lafayette, Louisiana. Pág. (9).; 19. Sarkar, A.K. & Sharma, M. (1990). “Fines Migration in Two-Phase Flow”. Journal of Petroleum Technology, 42 (05): Pags. (646-652).; 20. Yuan, B., Moghanloo, R.G & Zheng, D. (2016). “Analytical Evaluation of Nanoparticle Application To Mitigate Fines Migration in Porous Media”. SPE Journal, 21(06): Pags. (2317-2332).; 21. Ahmadi, M., & Zeta, A. (2013). “Potential Investigation and Experimental Study of Nanoparticles Deposited on Rock Surface To Reduce Fines Migration”. SPE Journal, pags. (534-544).; 22. Huang, T., Crews, J. & Willingham, J. (2008). “Using Nanoparticle Technology to Control Fine Migration, in SPE Annual Technical Conference and Exhibition”. Society of Petroleum Engineers: Denver, Colorado, USA. Pág. (9).; 23. Yuan, B., Ghanbarnezhad, R & Pattamasingh, P. (2015). “Applying Method of Characteristics to Study Utilization of Nanoparticles to Reduce Fines Migration in Deepwater Reservoirs, in SPE European Formation Damage Conference and Exhibition”. Society of Petroleum Engineers: Budapest, Hungary. Pag. (21).; 24. Giraldo, J. (2013). “Wettability Alteration of Sandstone Cores by Alumina-Based Nanofluids”. Energy & Fuels, Págs. (3659-3665).; 25. Civan, F. “Reservoir Formation Damage Fundamentals, Modeling, Assessment, and Mitigation”. (2000). Houston, Texas: Gulf Publishing Company. Pág. (740).; 26. Porter, K.E. (1989). “An Overview of Formation Damage”. Petroleum Technology, 41: Pags. (780-786).; 27. Mungan, N. “Discussion of An Overview of Formation Damage”. (1989). Petroleum Technology, 41: Pag. (1224).; 28. Amaefule, J.O. (1987). “Understanding Formation Damage Processes: An Essential Ingredient for Improved Measurement and Interpretation of Relative Permeability Data, in SPE Production Operations Symposium”. Society of Petroleum Engineers: Oklahoma City, Oklahoma. pág. (25).; 29. Posium. (1987). " Society of Petroleum Engineers: Oklahoma City". Oklahoma. Pag. (25).; 30. Wojtanowicz, A.K., Krilov, Z., & Langlinais, J.P. (1987). “Study on the Effect of Pore Blocking Mechanisms on Formation Damage, in SPE Production Operations Symposium”. Society of Petroleum Engineers: Oklahoma City, Oklahoma. Pag. (15).; 31. Ives, K. (1985). “Mathematical Models and Design Methods in Solid-Liquid Separation”. Págs. (90-332).; 32. McDowell-Boyer, L.M., Hunt, J.R & Sitar, N. (1986). “Particle transport through porous media”. Water Resources Research, 22(13): Pags. (1901-1921).; 33. Khilar, K.C. & Fogler, H.S. (1987). “Colloidally Induced Fines Migration in Porous Media, in Reviews in Chemical Engineering”. Pag. (41).; 34. Israelachvili, J. (2015). “Intermolecular and surface forces”. Academic press.; 35. Zeta-Meter, I. (2012). “Zeta Potential: A Complete Course in 5 Minutes (The Interaction of Colloids)”.; 36. Treybal, R.E. (1988). “Operaciones de transferencia de masa”. Segunda edicion.; 37. Ferrer, M.P. “Fundamentos de Ingeniería de Yacimientos”. Maracaibo, Venezuela. Pág. (561).; 38. B.M, G.L.A.S. (2005). “Efecto de la mojabilidad en las propiedades petrofísicas y operaciones de recobro secundario, in Ingenierías fisicoquímicas”. Industrial de Santander: Bucaramanga. pág. (135).; 39. F.F, C., (1971). “The Reservoir Engineering Aspects of Waterflooding.” Monograph. Vol. 3. Texas: SPE.; 40. Kowalewski, E., Holt, T and Torsaeter, O. (2002). “Wettability alterations due to an oil soluble additive”. Journal of Petroleum Science and Engineering, Pags. (19-28).; 41. Maghzi, A. (2012). “Monitoring wettability alteration by silica nanoparticles during water flooding to heavy oils in five-spot systems: A pore-level investigation”. Experimental Thermal and Fluid Science, 40: Pags. (168-176).; 42. Stöber, W., Fink, A & Bohn, E. (1968). “Controlled growth of monodisperse silica spheres in the micron size range”. Journal of Colloid and Interface Science, 26(1): Pags. (62-69).; 43. Castañeda, J. (2006). “Fabricación de materiales amorfos y policristalinos con la ruta sol-gel”. Boletín de la Sociedad Mexicana de Física. Págs. (13-15).; 44. Echeverri, M., L.F. Giraldo, and B.L. López. (2007). “Síntesis y funcionalización de nanopartículas de sílica con morfología esférica”. Scientia et technica. Pag. (13).; 45. Micromeritics. (1996-2020). “Search results”. Disponible en: https://www.micromeritics.com/Search Results.aspx?keywords=nanoplus3&q=nanoplus3.; 46. Shimadzu. Molecular Spectro_FTIR.; 47. Wang, G. (2017). “Surface activities and aggregation behaviors of cationic-anionic fluorocarbon-hydrocarbon surfactants in dilute solutions”. Molecular Liquids, 234: Pags. (142-148).; 48. Sharma, V. (2016). “Zeta-potential and particle size studies of silver sulphide nanoparticles, in AIP Publishing”. AIP Conference Proceedings.; 49. Institute, A.P., R. API. (2003). "Recommended Practice for Field Testing Water-Based Drilling Fluids, and ISO 10414-1".; 50. P. J. Boul, B. Reddy, J. Zhang, and C. Thaemlitz, "Functionalized nanosilicas as shale inhibitors in water-based drilling fluids," SPE Drilling & Completion, vol. 32, pp. 121-130, 2017.; 52. Mondragón, R. (2014). "Preparación y caracterización de nanofluidos: Influencia de variables sobre su estabilidad, estado de aglomeración y propiedades físicas".Boletín de la Sociedad Española de Cerámica y Vidrio, 53: Pag. (101-110).; Evaluación del efecto de las nanopartículas de alúmina y sílice presentes en el filtrado del lodo para la inhibición de finos y la preservación de la humectabilidad al agua en un campo de los Llanos Orientales; https://repositorio.unal.edu.co/handle/unal/78453

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    Report

    المؤلفون: Osete Cortina, Laura

    المساهمون: Universitat Politècnica de València. Facultad de Bellas Artes - Facultat de Belles Arts, Universitat Politècnica de València. Departamento de Conservación y Restauración de Bienes Culturales - Departament de Conservació i Restauració de Béns Culturals

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    Academic Journal
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    Academic Journal

    المصدر: Tópicos de Investigación en Ciencias de la Tierra y Materiales; Vol 6 No 6 (2019): Tópicos de Investigación en Ciencias de la Tierra y Materiales; 41-48 ; Tópicos de Investigación en Ciencias de la Tierra y Materiales; Vol. 6 Núm. 6 (2019): Tópicos de Investigación en Ciencias de la Tierra y Materiales; 41-48 ; 2395-8405 ; 10.29057/aactm.v6i6

    وصف الملف: application/pdf

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    Academic Journal
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    Academic Journal
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    Academic Journal