4.7 Article

Effect of solvent immobilization on membrane separation of ibuprofen metabolite: A green and organic solvent analysis

Journal

SEPARATION AND PURIFICATION TECHNOLOGY
Volume 115, Issue -, Pages 57-65

Publisher

ELSEVIER
DOI: 10.1016/j.seppur.2013.04.046

Keywords

Micropollutant; 4-Isobutylacetophenone; Hollow fiber membrane contactor; Immobilized solvent; Extraction-stripping; Impregnated solvent

Funding

  1. Natural Science and Engineering Research Council (NSERC), Canada

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The removal of pharmaceutical micropollutant 4-isobutylacetophenone (4-IBAP) from water using immobilized solvent was investigated. In the first part, extraction performance of flat membrane sheets with two immobilized solvents, a green solvent (canola oil) and octanol, was characterized in batch operation. Sodium hydroxide (approximate to 0.1 M) solution was used to regenerate the saturated sheets with 4-IBAP. Experiments were conducted with varying aqueous feed pH, initial aqueous concentration of 4-IBAP, and the initial concentration of sodium hydroxide. While octanol had a faster initial extraction rate K-ov = 1.83 x 10(-7) m/s of 4-IBAP compared to canola oil, the flat sheet impregnated with canola oil exhibited better renewal capacity rinsing with NaOH stripping solution with mass transfer coefficient of 1.33 x 10(-7) m/s in repeated experiments. In the second part, continuous extraction of 4-IBAP in the immobilized solvent and simultaneous regeneration of the solvent were carried out in a hollow fiber membrane contactor. Canola oil was impregnated into the pores of the membrane to extract 4-IBAP from the aqueous phase passing through the shell side of the fiber with simultaneous regeneration of the immobilized solvent using a 0.1 M NaOH stripping solution passing through the lumen of the fibers. Using this continuous membrane process with a green solvent, about 70-100 mL of canola oil removed an average of 80% of 4-IBAP from 40 L of water. (C) 2013 Elsevier B.V. All rights reserved.

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