Preparation and Properties of A Hyperbranch-Structured Polyamine adsorbent for Carbon Dioxide Capture
A fibrous adsorbent with amino-terminated hyperbranch structure (PP-AM-HBP-NH 2 ) was prepared by grafting hyperbranched polyamine (HBP-NH 2 ) onto the acrylamide-modified polypropylene (PP) fibers. The grafting of AM on PP fibers provided the active sites for introducing HBP-NH 2 onto the PP fibers...
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Veröffentlicht in: | Scientific reports 2017-06, Vol.7 (1), p.3913-10, Article 3913 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A fibrous adsorbent with amino-terminated hyperbranch structure (PP-AM-HBP-NH
2
) was prepared by grafting hyperbranched polyamine (HBP-NH
2
) onto the acrylamide-modified polypropylene (PP) fibers. The grafting of AM on PP fibers provided the active sites for introducing HBP-NH
2
onto the PP fibers. This kind of “grafting to” procedure to synthesize hyperbranch-structured fiber could overcome the disadvantages of stepwise growth procedure, avoiding the complicated synthesis process and the requirement of strict experimental conditions. The grafted HBP-NH
2
was three-dimensional dentritic architecture and had a large number of pores existing within the grafted polymers, which is favorable for CO
2
molecules to diffuse into the HBP-NH
2
. Therefore, the as-prepared PP-AM-HBP-NH
2
fibers showed a high adsorption capacity (5.64 mmol/g) for CO
2
in the presence of water at 25 °C, and the utilization efficiency of alkyl amino groups could reach 88.2%, demonstrating that the hyperbranched structure of adsorbents can greatly promote adsorption capacity and efficiency. This could be attributed to better swelling properties and lower mass transfer resistance to CO
2
of the hyperbranched adsorbent. PP-AM-HBP-NH
2
also showed excellent regeneration performance, and it could maintain the same adsorption capacity for CO
2
after 15 recycle numbers as the fresh adsorbent. |
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ISSN: | 2045-2322 2045-2322 |
DOI: | 10.1038/s41598-017-04329-w |