134
Views
6
CrossRef citations to date
0
Altmetric
Research Article

Phenol recovery using continuous emulsion liquid membrane (CELM) process

, , , , , & show all

References

  • Abbassian K, Kargari A, Kaghazchi T. 2015. Phenol removal from aqueous solutions by a novel industrial solvent. Chem Eng Commun. 202(3):408–413.
  • Ahmad AL, Kusumastuti A, Derek CJC, Ooi BS. 2012. Emulsion liquid membrane for cadmium removal: Studies on emulsion diameter and stability. Desalination. 287:30–34.
  • Badgujar V, Rastogi NK. 2011. Extraction of phenol from aqueous effluent using triglycerides in supported liquid membrane. Desalin Water Treat. 36(1–3):187–196.
  • Balasubramanian A, Venkatesan S. 2012. Removal of phenolic compounds from aqueous solutions by emulsion liquid membrane containing ionic liquid [BMIM]+[PF6]− in tributyl phosphate. Desalination. 289:27–34.
  • Bhowal A, Bhattacharyya G, Inturu B, Datta S. 2012. Continuous removal of hexavalent chromium by emulsion liquid membrane in a modified spray column. Sep Purif Technol. 99:69–76.
  • Busca G, Berardinelli S, Resini C, Arrighi L. 2008. Technologies for the removal of phenol from fluid streams: A short review of recent developments. J Hazard Mater. 160(2–3):265–288.
  • Chang SH. 2014. Vegetable oil as organic solvent for wastewater treatment in liquid membrane processes. Desalin Water Treat. 52(1–3):88–101.
  • Chang SH, Teng TT, Ismail N. 2011. Screening of factors influencing Cu (II) extraction by soybean oil-based organic solvents using fractional factorial design. J Environ Manage. 92(10):2580–2585.
  • Chaouchi S, Hamdaoui O. 2014. Acetaminophen extraction by emulsion liquid membrane using Aliquat 336 as extractant. Sep Purif Technol. 129:32–40.
  • Dadkhah H, Behnajady MA. 2019. Optimization of photooxidative removal of p-nitrophenol in a spinning disc photoreactor using response surface methodology. Chem Eng Commun. 206(3):398–408.
  • Davoodi-Nasab P, Rahbar-Kelishami A, Safdari J, Abolghasemi H. 2018. Evaluation of the emulsion liquid membrane performance on the removal of gadolinium from acidic solutions. J Mol Liq. 262:97–103.
  • Gasser MS, El-Hefny NE, Daoud JA. 2008. Extraction of Co (II) from aqueous solution using emulsion liquid membrane. J Hazard Mater. 151(2–3):610–615.
  • Haaland PD. 1989. Experimental design in biotechnology. New York: Marcel Dekker Inc.
  • Hemmati AR, Shirvani M, Torab-Mostaedi M, Ghaemi A. 2015. Hold-up and flooding characteristics in a perforated rotating disc contactor (PRDC). RSC Adv. 5(77):63025–63033.
  • Jiao H, Peng W, Zhao J, Xu C. 2013. Extraction performance of bisphenol A from aqueous solutions by emulsion liquid membrane using response surface methodology. Desalination. 313:36–43.
  • Jiao T, Qin X, Zhang H, Zhang W, Zhang Y, Liang P. 2019. Separation of phenol and pyridine from coal tarvia liquid–liquid extraction using deep eutectic solvents. Chem Eng Res Des. 145:112–121.
  • Jusoh N, Othman N. 2016. Stability of water-in-oil emulsion in liquid membrane prospect. Mal J Fund Anal Sci. 12(3):114–116.
  • Kislik VS. 2010. General Description, Definitions Classification Overview. In: Kislik VS, editors. Liquid membranes, principle and application in chemical separation and wastewater treatment. United Kingdom: Elsevier. pp. 1–5.
  • Kumbasar RA. 2010. Extraction of cadmium from solutions containing various heavy metal ions by Amberlite LA-2. J Ind Eng Chem. 16(2):207–213.
  • Li X, Huang J, Wang Z, Jiang X, Yu W, Zheng Y, Li Q, He N. 2014. Alkaline extraction and acid precipitation of phenolic compounds from longan (Dimocarpus longan L.) seeds. Sep Purif Technol. 124:201–206.
  • Martendal E, Budziak D, Carasek E. 2007. Application of fractional factorial experimental and Box-Behnken designs for optimization of single-drop microextraction of 2, 4, 6-trichloroanisole and 2, 4, 6-tribromoanisole from wine samples. J Chromatogr A. 1148(2):131–136.
  • Mohammadi S, Kargari A, Sanaeepur H, Abbassian K, Najafi A, Mofarrah E. 2015. Phenol removal from industrial wastewaters: A short review. Desalin Water Treat. 53(8):2215–2234.
  • Mohammed AA, Selman HM, Abukhanafer G. 2018. Liquid surfactant membrane for lead separation from aqueous solution: Studies on emulsion stability and extraction efficiency. J Environ Chem Eng. 6(6):6923–6930.
  • Mokhtari B, Pourabdollah K. 2015. Emulsion liquid membrane for selective extraction of Bi (III). Chin J Chem Eng. 23(4):641–645.
  • Mortaheb HR, Zolfaghari A, Mokhtarani B, Amini MH, Mandanipour V. 2010. Study on removal of cadmium by hybrid liquid membrane process. J Hazard Mater. 177(1–3):660–667.
  • Nam SN, Cho H, Han J, Her N, Yoon J. 2018. Photocatalytic degradation of acesulfame K: Optimization using the Box–Behnken design (BBD). Process Saf Environ Prot. 113:10–21.
  • Ng YS, Jayakumar NS, Hashim MA. 2011. Behavior of hydrophobic ionic liquids as liquid membranes on phenol removal: Experimental study and optimization. Desalination. 278(1–3):250–258.
  • Noah NFM, Othman N, Jusoh N. 2018. The use of factorial design in screening of factors influencing hexavalent chromium extraction by continuous green emulsion liquid membrane. IOP Conf Series: Mater Sci Eng. 458:1–13.
  • Nosrati S, Jayakumar NS, Hashim MA. 2011. Performance evaluation of supported ionic liquid membrane for removal of phenol. J Hazard. Mater. 192(3):1283–1290.
  • Omar WNNW, Amin NAS. 2011. Optimization of heterogeneous biodiesel production from waste cooking palm oil via response surface methodology. Biomass Bioenergy. 3:1329–1338.
  • Othman N, Noah NFM, Shu LY, Ooi ZY, Jusoh N, Idroas M, Goto M. 2017. Easy removing of phenol from wastewater using vegetable oil-based organic solvent in emulsion liquid membrane process. Chinese J Chem Eng. 25(1):45–52.
  • Park Y, Skelland AHP, Forney LJ, Kim JH. 2006. Removal of phenol and substituted phenols by newly developed emulsion liquid membrane process. Water Res. 40(9):1763–1772.
  • Peydayesh M, Kazemi P, Nabavi MS, Mohammadi T. 2014. Phenolic wastewater treatment by supported liquid membrane using different cooking oils as liquid membrane. Chem Eng Commun. 201(12):1593–1605.
  • Raja Sulaiman RN, Othman N, Saidina Amin NA. 2016. Recovery of ionized nanosilver by emulsion liquid membrane process and parameters optimization using response surface methodology. Desalin Water Treat. 57(8):3339–3349.
  • Rajasimman M, Karthic P. 2010. Application of response surface methodology for the extraction of chromium (VI) by emulsion liquid membrane. J Taiwan Inst Chem Eng. 41(1):105–110.
  • Raza W, Lee J, Raza N, Luo Y, Kim KH, Yang J. 2019. Removal of phenolic compounds from industrial waste water based on membrane-based technologies. J Ind Eng Chem. 71:1–18.
  • Razo-Lazcano TA, González-Muñoz MP, Stambouli M, Pareau D, Hernández-Perales L, Avila-Rodriguez M. 2018. Chlorpheniramine recovery from aqueous solutions by emulsion liquid membranes using soy lecithin as carrier. Colloids Surf A. 536:68–73.
  • Rosly MB, Jusoh N, Othman N, Rahman HA, Noah NFM, Sulaiman RNR. 2019. Effect and optimization parameters of phenol removal in emulsion liquid membrane process via fractional-factorial design. Chem Eng Res Des. 145:268–278.
  • Salman HM, Mohammed AA. 2019. Extraction of lead ions from aqueous solution by co-stabilization mechanisms of magnetic Fe2O3 particles and nonionic surfactants in emulsion liquid membrane. Colloids Surf A. 568:301–310.
  • Sulaiman RNR, Othman N. 2018. Solvent extraction of nickel ions from electroless nickel plating wastewater using synergistic green binary mixture of D2EHPA-octanol system. J Environ Chem Eng. 6(2):1814–1820.
  • Sulaiman RNR, Othman N, Amin NAS. 2013. Recovery of ionized nanosilver from wash water solution using emulsion liquid membrane process. J Teknol. 65(4):33–36.
  • Szczepański P. 2018. Experimental and model studies of p-nitrophenol and phenol separation in the bulk liquid membrane with the application of bond-graph method. Chem Eng Sci. 185:141–148.
  • Teresa M, Reis A, Freitas OMF, Agarwal S, Ferreira LM, Rosinda M, Ismael C, Machado R, Carvalho JMR. 2011. Removal of phenols from aqueous solutions by emulsion liquid membranes. J Hazard. Mater. 192(3):986–994.
  • Vatanpour V, Sheydaei M, Esmaeili M. 2017. Box-Behnken design as a systematic approach to inspect correlation between synthesis conditions and desalination performance of TFC RO membranes. Desalination. 420:1–11.
  • Villegas LGC, Mashhadi N, Chen M, Mukherjee D, Taylor KE, Biswas N. 2016. A short review of techniques for phenol removal from wastewater. Curr Pollut Rep. 2(3):157–167.
  • Zeng L, Zhang Y, Bukirwa C, Li W, Yang Y. 2015. Study of mean diameter and drop size distribution of emulsion drops in a modified rotating disc contactor for an emulsion liquid membrane system. RSC Adv. 5(109):89959–89970.
  • Zeng L, Zhang Y, Liu Q, Yang L, Xiao J, Liu X, Yang Y. 2016. Determination of mass transfer coefficient for continuous removal of cadmium by emulsion liquid membrane in a modified rotating disc contactor. Chem Eng J. 289:452–462.
  • Zereshki S, Daraei P, Shokri A. 2018. Application of edible paraffin oil for cationic dye removal from water using emulsion liquid membrane. J Hazard Mater. 356:1–8.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.