4.7 Article

Superelastic and superhydrophobic bacterial cellulose/silica aerogels with hierarchical cellular structure for oil absorption and recovery

Journal

JOURNAL OF HAZARDOUS MATERIALS
Volume 346, Issue -, Pages 199-207

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2017.12.045

Keywords

Bacterial cellulose; Silica aerogels; Superelastic; Superhydrophobic; Oil absorption and recovery

Funding

  1. Tianjin Research Program of Application Foundation and Advanced Technology [14JCQNJC02800]
  2. Tianjin University Program for Young Scholar

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Bacterial cellulose aerogels/silica aerogels (BCAs/SAs) are prepared using three-dimensional self assembled BC skeleton as reinforcement and methyltriethoxysilane derived silica aerogels as filler through vacuum infiltration and freeze drying. The BCAs/SAs possess a hierarchical cellular structure giving them superelasticity and recyclable compressibility. The BCAs/SAs can bear a compressive strain up to 80% and recover their original shapes after the release of the stress. The BCAs/SAs exhibit super-hydrophobicity with a contact angle of 152 and super-oleophilicity resulting from the methyl groups on the surface of silica aerogel filler. This endows the BCAs/SAs outstanding oil absorbing capability with the quality factor Q from 8 to 14 for organic solvents and oils. Moreover, the absorbed oil can be retrieved by mechanically squeezed with a recovery of 88% related to the superelastic ability of the composites. In addition, the oil absorbing of BS/SAs could be well maintained with the quality factor Q about 11 for gasoline after harsh conditional treatment down to -200 degrees C and up to -300 degrees C. Such outstanding elastic and oleophilic properties make the BC/SAs tremendous potential for applications of oil absorbing, recovery and oil-water separation. (C) 2017 Published by Elsevier B.V.

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