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September 27, 2000Industrial & Engineering Chemistry Research365 citations

Absorption of Carbon Dioxide into Aqueous Blends of Diethanolamine and Methyldiethanolamine

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EREdward B. RinkerSASami S. AshourOSOrville C. Sandall

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Abstract

In this work, a comprehensive model is developed for the absorption of carbon dioxide into aqueous mixtures of primary or secondary alkanolamines with tertiary alkanolamines. The model, which is based on penetration theory, incorporates an extensive set of important reversible reactions and takes into account the coupling between chemical equilibrium, mass transfer, and chemical kinetics. The reaction between CO 2 and the primary or secondary amine is modeled according to the zwitterion mechanism. The key physicochemical properties that are needed for the model are the CO 2 physical solubility, the CO 2 and amine diffusion coefficients, and the reaction rate coefficients and equilibrium constants. Data for carbon dioxide absorption into aqueous mixtures of diethanolamine and methyldiethanolamine are compared to model predictions.

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Cite This Study

Rinker et al. (2000) studied this question.

synapsesocial.com/papers/6a74c99b1078cf7de2b1db01https://doi.org/10.1021/ie990850r
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Kinetics and Modeling of Carbon Dioxide Absorption into Aqueous Solutions of Diethanolamine1996 · 110 citations
  2. 2Absorption of co2 into aqueous tertiary amine/mea solutions1992 · 137 citations
  3. 3Natural convection mass transfer in slender conical cavities1990 · 16 citations
  4. 4Interfacial turbulence during the absorption of carbon dioxide into monoethanolamine1967 · 74 citations
  5. 5Kinetic study of carbon dioxide reaction with tertiary amines in aqueous solutions1981 · 123 citations