Reaktor
Volume 21 No.4 December 2021

Fouling Analysis on Polysulfone/Peg400/ZnO Membrane during Textile Wastewater Treatment

Putu Teta Prihartini Aryanti (Chemical Engineering Dept., Faculty of Engineering, Universitas Jenderal Achmad Yani Jl. Terusan Jenderal Sudirman, Cibeber – Cimahi Telp./Fax.: (022)6642064)
Febrianto Adi Nugroho (Chemical Engineering Dept., Faculty of Engineering, Universitas Jenderal Achmad Yani Jl. Terusan Jenderal Sudirman, Cibeber – Cimahi Telp./Fax.: (022)6642064)
Gatra Buana Winiarti (Chemical Engineering Dept., Faculty of Engineering, Universitas Jenderal Achmad Yani Jl. Terusan Jenderal Sudirman, Cibeber – Cimahi Telp./Fax.: (022)6642064)
Ghina Shofi Pratiwi (Chemical Engineering Dept., Faculty of Engineering, Universitas Jenderal Achmad Yani Jl. Terusan Jenderal Sudirman, Cibeber – Cimahi Telp./Fax.: (022)6642064)
I Nyoman Widiasa (Chemical Engineering Dept., Faculty of Engineering, Universitas Diponegoro Jl. Prof. Soedarto SH Tembalang Semarang Telp./Fax. (024)7460058 / (024)76480675)



Article Info

Publish Date
24 Feb 2022

Abstract

Fouling has become the main problem in long-term application of ultrafiltration (UF) membrane for water and wastewater treatment, significantly reducing membrane productivity. In this paper, fouling on polysulfone-based membrane was analyzed using Hermia’s model during textile wastewater treatment. The UF membrane has been prepared by blending polysulfone (PSf), acetone, and PEG400 in DMAc, with ZnO nanoparticles at a concentration of 1% by weight of polymers (PSf and PEG400). The influence of polysulfone concentration (18 and 20 wt.%) and PEG400 (0 - 25 wt.%) on fouling mechanisms was investigated. It was found that the increase of polysulfone from 18 to 20 wt.% reduced permeate flux from 54 to 25 L.m-2.h-1. Vise versa, the increase of PEG400 concentration enhanced the permeate flux. More stable flux was achieved when 18 wt.% of polysulfone was used to prepare the UF membrane. The fouling type in the UF membrane depends on the characteristics of the membrane. A significant flux decline occurred when used 20 wt.% of polysulfone without the addition of PEG400. Smaller membrane pore and higher hydrophobicity due to high polysulfone concentration induced cake layer of fouling on the membrane surface at the first 40 minutes of ultrafiltration. Further increase of operating time, internal fouling was formed due to the movement of pollutants to the permeate side caused by different concentrations. The highest color rejection (86%) was achieved when 25 wt.% of PEG400 was added in 20 wt.% of polysulfone solution.Keywords: fouling, hermia model, ultrafiltration, wastewater treatment.

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Journal Info

Abbrev

reaktor

Publisher

Subject

Chemical Engineering, Chemistry & Bioengineering Control & Systems Engineering Energy Materials Science & Nanotechnology

Description

Reaktor invites contributions of original and novel fundamental research. Reaktor publishes scientific study/ research papers, industrial problem solving related to Chemical Engineering field as well as review papers. The journal presents paper dealing with the topic related to Chemical Engineering ...