The expansion of manufacturing activity in the domain of sea product conditioning generates significant pollution and contributes to the wastewater produced causing health and environmental problems. The current study provides a summary of the various technologies used for the treatment of cuttlefish conditioning wastewater integrating membrane separation techniques. The treatment of massive volumes of colored effluents into clean water, which met the discharge limit or better can be reused, has been addressed. In comparison to other techniques for treating wastewater, the membrane process provides a low-cost, easily controllable, and high-quality treatment option. The findings of this study demonstrated the potential of using the membrane separation technology for cuttlefish conditioning effluent treatment and provided valuable insights into their effectiveness concerning the removal of color and other pollutants expressed in terms of COD and turbidity under optimal given conditions.

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Performances of Ceramic Membranes for Cuttlefish Conditioning Wastewater Treatment

  • Raja Ben Amar,
  • Afef Attia,
  • Hajer Aloulou,
  • Wala Aloulou

摘要

The expansion of manufacturing activity in the domain of sea product conditioning generates significant pollution and contributes to the wastewater produced causing health and environmental problems. The current study provides a summary of the various technologies used for the treatment of cuttlefish conditioning wastewater integrating membrane separation techniques. The treatment of massive volumes of colored effluents into clean water, which met the discharge limit or better can be reused, has been addressed. In comparison to other techniques for treating wastewater, the membrane process provides a low-cost, easily controllable, and high-quality treatment option. The findings of this study demonstrated the potential of using the membrane separation technology for cuttlefish conditioning effluent treatment and provided valuable insights into their effectiveness concerning the removal of color and other pollutants expressed in terms of COD and turbidity under optimal given conditions.