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February 19, 2008Journal of the American Chemical Society763 citations

Designing Adsorbents for CO2 Capture from Flue Gas-Hyperbranched Aminosilicas Capable of Capturing CO2 Reversibly

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JHJason C. HicksJDJeffrey H. DreseDFDaniel J. Fauth

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Abstract

Carbon dioxide adsorption from a simulated flue gas stream was successfully performed with a hyperbranched aminosilica (HAS) material. The HAS was synthesized by a one-step reaction, spontaneous aziridine ring-opening polymerization off of surface silanols, to form a 32 wt % organic/inorganic hybrid material. The adsorption measurements were performed in a fixed-bed flow reactor using humidified CO 2 . The advantage of this adsorbent over previously reported adsorbents is the stability of the organic groups covalently bound to the silica support compared to those made by physisorbed methods. Furthermore, a large CO 2 capacity (∼3 mmol CO 2 /g adsorbent) associated with the high loading of amines was observed.

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Hicks et al. (2008) studied this question.

synapsesocial.com/papers/6a6f5671a528af2d65c2f134https://doi.org/10.1021/ja077795v
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