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Information Journal Paper

Title

Separation of Ammonia from Wastewater by Photocatalyst/Membrane Process Hybrid System

Pages

  53-63

Abstract

 In this research, the performance of Photocatalyst/Membrane process hybrid system was investigated for the Ammonia removal from the wastewater. The prepared Membranes were ultrafiltration (UF) using the Polyethersulfone (PES) by the phase inversion method. Synthetic Fumarate alumoxane nanoparticle was used as the additive in the preparation of Membrane. The Photocatalyst was zinc oxide (ZnO) fixed on a light expanded clay aggregate support named LECA. The effect of the parameters containing Ammonia initial concentration, nanoparticle content and the treatment process duration on the Ammonia removal was investigated. The Photocatalyst and Membrane systems were employed separately and their performance including the flux and rejection was compared with the hybrid system. The results showed that the Photocatalyst system was able to remove the Ammonia at high flux level, well. By consideration of the Ammonia flux and its removal percentage, the best performance was obtained for the Membrane prepared by the PES with 2 wt. % nanoparticle. In hybrid system, firstly, the Ammonia was reached to the low concentration and then, the Membrane process removed this low concentration of Ammonia.

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    APA: Copy

    Faramarzi, Mehrdad, Amirinejad, Mehdi, & SHARIFNIA, SHAHRAM. (2019). Separation of Ammonia from Wastewater by Photocatalyst/Membrane Process Hybrid System. JOURNAL OF SEPARATION SCIENCE AND ENGINEERING, 11(1 ), 53-63. SID. https://sid.ir/paper/150104/en

    Vancouver: Copy

    Faramarzi Mehrdad, Amirinejad Mehdi, SHARIFNIA SHAHRAM. Separation of Ammonia from Wastewater by Photocatalyst/Membrane Process Hybrid System. JOURNAL OF SEPARATION SCIENCE AND ENGINEERING[Internet]. 2019;11(1 ):53-63. Available from: https://sid.ir/paper/150104/en

    IEEE: Copy

    Mehrdad Faramarzi, Mehdi Amirinejad, and SHAHRAM SHARIFNIA, “Separation of Ammonia from Wastewater by Photocatalyst/Membrane Process Hybrid System,” JOURNAL OF SEPARATION SCIENCE AND ENGINEERING, vol. 11, no. 1 , pp. 53–63, 2019, [Online]. Available: https://sid.ir/paper/150104/en

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