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Colloids and Surfaces A: Physicochemical and Engineering Aspects(3)
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Characterization of Skeletonema costatum intracellular organic matter and study of nanomechanical properties under different solution conditions
ArticleAbstract: In the current investigation, a rigorous characterization of the high molecular weight (HMW) compounPalabras claves:atomic force microscopy, Interfacial interactions, Nanomechanical properties, Organic matter, Skeletonema costatumAutores:Aimar P., Aubry C., Croue J.P., Dramas L., Leonardo GutierrezFuentes:googlescopusNatural organic matter interactions with polyamide and polysulfone membranes: Formation of conditioning film
ArticleAbstract: A conditioning film changes the physicochemical properties of the membrane surface and strongly affePalabras claves:atomic force microscopy, Conditioning film, Interfacial interactions, Natural organic matter, Organic foulingAutores:Aubry C., Croue J.P., Leonardo Gutierrez, Valladares Linares R.Fuentes:googlescopusInterfacial interactions between Skeletonema costatum extracellular organic matter and metal oxides: Implications for ceramic membrane filtration
ArticleAbstract: In the current study, the interfacial interactions between the high molecular weight (HMW) compoundsPalabras claves:atomic force microscopy, Interfacial interactions, Metal oxides, Skeletonema costatum extracellular organic matterAutores:Croue J.P., Daniel Garcés-León, Dramas L., Leonardo Gutierrez, Zaouri N.Fuentes:googlescopusImpact of operation conditions, foulant adsorption, and chemical cleaning on the nanomechanical properties of ultrafiltration hollow fiber membranes
ArticleAbstract: This study analyzed the change in nanomechanical properties of ultrafiltration hollow fiber membranePalabras claves:atomic force microscopy, fouling, Nanomechanical properties, QNM, Ultrafiltration hollow fiber membraneAutores:Aubry C., Croue J.P., Keucken A., Leonardo Gutierrez, Teychene B., Zaouri N.Fuentes:googlescopusThe characteristics of organic matter influence its interfacial interactions with MnO<inf>2</inf> and catalytic oxidation processes
ArticleAbstract: The influence of dissolved organic matter (DOM) properties on its interfacial interactions with MnO2Palabras claves:Adsorption, atomic force microscopy, Catalytic process, Manganese oxide, Organic matterAutores:Croue J.P., Leonardo Gutierrez, Niu X.Z., Qi F., Zhang S.Fuentes:googlescopus