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Combination of surfactants and organic compounds for boosting CO <inf>2</inf> separation from natural gas by clathrate hydrate formation
ArticleAbstract: This study investigates the effects of several combinations of surfactants and organic compounds onPalabras claves:Additives, Carbon dioxide separation, Gas hydrate, natural gas, PromotersAutores:Dicharry C., Marvin Ricaurte, Renaud X., Torré J.P.Fuentes:googlescopusCO <inf>2</inf> enclathration in the presence of water-soluble hydrate promoters: Hydrate phase equilibria and kinetic studies in quiescent conditions
ArticleAbstract: Clathrate hydrates have potential applications in various domains and particularly for CO 2 capturePalabras claves:Additives, Carbon dioxide, Gas Hydrates, kinetics, Phase equilibria, SeparationsAutores:Broseta D., Dicharry C., Marvin Ricaurte, Torré J.P.Fuentes:googlescopusFiltration effect on water in oil emulsions stabilization in slop crude treatment
Conference ObjectAbstract: The emulsion (water, crude and solids) remaining in W/O interface after dehydration (water removal)Palabras claves:Autores:Marvin Ricaurte, Perozo H.Fuentes:googlescopusExperimental data, modeling, and correlation of carbon dioxide solubility in aqueous solutions containing low concentrations of clathrate hydrate promoters: Application to CO <inf>2</inf>-CH <inf>4</inf> gas mixtures
ArticleAbstract: This study presents experimental and modeling data of solubility of carbon dioxide (CO 2) in aqueousPalabras claves:Autores:Asbai A., Broseta D., Dicharry C., Marvin Ricaurte, Torré J.P.Fuentes:googlescopusKinetic and thermodynamic analysis of high-pressure co<inf>2</inf> capture using ethylenediamine: Experimental study and modeling
ArticleAbstract: One of the alternatives to reduce CO2 emissions from industrial sources (mainly the oil and gas induPalabras claves:CO capture 2, Ethylenediamine, High-pressure system, kinetics, Modeling, Thermodynamic analy-sisAutores:Alex Palma-Cando, Alfredo Viloria, Josselyne A. Villarroel, Marvin RicaurteFuentes:googlescopusShrinking-core model integrating to the fluid-dynamic analysis of fixed-bed adsorption towers for h<inf>2</inf>s removal from natural gas
ArticleAbstract: Natural gas sweetening is an essential process within hydrocarbon processing operations, enabling coPalabras claves:Adsorption, Fixed-bed tower, Fluid-dynamic modeling, H S removal 2, Pressure drop, Shrinking-core model, Solid sorbentAutores:Alfredo Viloria, Bryan Carrasco, Edward E. Ávila, Marvin RicaurteFuentes:googlescopus