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Термодинамика адсорбции органических соединений на поверхности силохрома С-120 с привитыми слоями ацетилацетонатов никеля, кобальта и меди Е. А. Ващенко, Е. А. Пахнутова

By: Ващенко, Екатерина АлександровнаContributor(s): Пахнутова, Евгения АндреевнаMaterial type: ArticleArticleOther title: Thermodynamics of adsorption of organic compounds on C-120 silochrome surface with precise layers of nickel acidyl acetoneates, cobalt and copper [Parallel title]Subject(s): термодинамика адсорбции | силохром С-120 | органические соединения | модифицированные поверхностиGenre/Form: статьи в сборниках Online resources: Click here to access online In: Перспективы развития фундаментальных наук. Т. 2 : сборник научных трудов XV Международной конференции студентов, аспирантов и молодых ученых, 24–27 апреля 2018 г Т. 2 : Химия. С. 57-59Abstract: Studied the adsorption properties of the surface Silochrom C-120 and chemically modified on the basis of its sorption materials containing acetylacetonates of nickel, cobalt and copper. As test compounds were used n-alkanes (Cg-Cg) and the adsorbates whose molecules have different electron-withdrawing and electron donating properties. From the experimental data on the retention of adsorbates designed their differential molar heat of adsorption q^if, i, change the standard differential molar entropy ASsi_ c and for polar adsorbates contributions A qdif,i(spec) far energy dispersive and specific interactions.
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Studied the adsorption properties of the surface Silochrom C-120 and chemically modified on the basis of its sorption materials containing acetylacetonates of nickel, cobalt and copper. As test compounds were used n-alkanes (Cg-Cg) and the adsorbates whose molecules have different electron-withdrawing and electron donating properties. From the experimental data on the retention of adsorbates designed their differential molar heat of adsorption q^if, i, change the standard differential molar entropy ASsi_ c and for polar adsorbates contributions A qdif,i(spec) far energy dispersive and specific interactions.

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