Separation of oil–water emulsion by disc ceramic membrane under dynamic membrane filtration mode

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review

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Author(s)

  • Yulong Yang
  • Guanghua Liu
  • Qikun Wang
  • Yongqing Wang
  • Jian-er Zhou
  • Qibing Chang

Detail(s)

Original languageEnglish
Article number121862
Journal / PublicationSeparation and Purification Technology
Volume300
Online published5 Aug 2022
Publication statusPublished - 1 Nov 2022

Abstract

The disc ceramic membrane under a dynamic membrane filtration is applied to separate oil–water emulsion. The dynamic membrane filtration means that the membrane is rotating to obtain the flow velocity of membrane surface but the feed solution is almost still. In this case, the trans-membrane pressure (TMP) and the flow velocity of membrane surface can be controlled separately. Here, the effects of operation parameters on the separation performance and re-generation of disc ceramic membrane are studied. The membrane fouling and stability and practicability of disc ceramic membrane are evaluated. The results show that the permeate flux of disc ceramic membrane increases with the increment of rotating speed and the rejection increases with the TMP decreases. Furthermore, the rejection efficiency of oil achieved up to >99.9% during a 90 min continuous separation if the TMP was only 0.2 bar. High flow velocity but low TMP of disc ceramic membrane alleviates the membrane fouling caused by concentration polarization layer and gel layer, and reduces the deformation and penetration of oil droplets. This work provides a new method to separate the high-concentration of oil–water emulsion.

Research Area(s)

  • Disc ceramic membrane, Dynamic membrane filtration, High efficiency, Membrane fouling, Oil-water emulsion

Citation Format(s)

Separation of oil–water emulsion by disc ceramic membrane under dynamic membrane filtration mode. / Yang, Yulong; Liu, Guanghua; Liu, Han et al.
In: Separation and Purification Technology, Vol. 300, 121862, 01.11.2022.

Research output: Journal Publications and Reviews (RGC: 21, 22, 62)21_Publication in refereed journalpeer-review