4.7 Article

The pervaporative membrane with vertically aligned carbon nanotube nanochannel for enhancing butanol recovery

Journal

JOURNAL OF MEMBRANE SCIENCE
Volume 577, Issue -, Pages 51-59

Publisher

ELSEVIER SCIENCE BV
DOI: 10.1016/j.memsci.2019.01.032

Keywords

Carbon nanotubes; Pervaporation; Butanol; Polydimethylsiloxane

Funding

  1. National Natural Science Foundation of China (NSFC) [21576045, 21878035]
  2. Dalian Science and Technology Innovation Project [2018J12SN074]
  3. Liaoning Innovative Talent Support Program [LR2017005]
  4. Youth Science and Technology Star Project of Dalian [2017RQ003]
  5. Talent Cultivation Plan of Xinghai Scholar from Dalian University of Technology
  6. Fundamental Research Funds for the Central Universities [DUT16YQ103]

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Vertically aligned (VA) and open-ended carbon nanotube (CNT) arrays filled polydimethylsiloxane (PDMS) composite membrane was fabricated, characterized, and evaluated for pervaporative recovery of butanol from acetone-butanol-ethanol (ABE) fermentation broth. The VA CNT (open-ended)/PDMS membrane displayed various advantages over homogeneous PDMS membrane, since the VA CNT (open-ended)/PDMS membrane demonstrated a simultaneous improved butanol flux and separation factor, which was the result of higher butanol solubility and diffusivity of this membrane. Both butanol flux and separation factor showed a sharp enhancement with increasing feed temperature (30-80 degrees C), and with increasing feed butanol concentration (5-25 g/L). The maximum total flux and butanol separation factor of the VA CNT (open-ended)/PDMS membrane reached 1093.7 g/m(2) h and 37.6 at 80 degrees C, respectively. The composite membrane showed a stable performance for long-time continuous operation with fermentation broth for biobutanol production. Overall, the VA CNT (open-ended)/PDMS membrane showed higher butanol flux and selectivity than homogeneous PDMS membrane, and has great potentials for butanol separation from ABE fermentation.

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