4.6 Article

A New Polyvinylidene Fluoride Membrane Synthesized by Integrating of Powdered Activated Carbon for Treatment of Stabilized Leachate

期刊

WATER
卷 13, 期 16, 页码 -

出版社

MDPI
DOI: 10.3390/w13162282

关键词

stabilized leachate; membrane fabrication; filtration technology; phase inversion technique; powdered activated carbon (PAC)

资金

  1. Higher Education Ministry [FRGS/1/2019/TK10/UTAR/02/3]
  2. PETRONAS through YUTP grant [015LC0-169]

向作者/读者索取更多资源

The study optimized a thin membrane synthesized using powdered activated carbon through response surface methodology, which effectively filtered stabilized landfill leachate, removing COD, color, and NH3-N. The membrane design enhanced water flux and transmembrane pressure, and although results were limited, potential improvements could be made by adding a hydrophilic additive.
Stabilized landfill leachate contains a wide variety of highly concentrated non-biodegradable organics, which are extremely toxic to the environment. Though numerous techniques have been developed for leachate treatment, advanced membrane filtration is one of the most environmentally friendly methods to purify wastewater effectively. In the current study, a novel polymeric membrane was produced by integrating powdered activated carbon (PAC) on polyvinylidene fluoride (PVDF) to synthesize a thin membrane using the phase inversion method. The membrane design was optimized using response surface methodology (RSM). The fabricated membrane was effectively applied for the filtration of stabilized leachate using a cross-flow ring (CFR) test. The findings suggested that the filtration properties of fabricated membrane were effectively enhanced through the incorporation of PAC. The optimum removal efficiencies by the fabricated membrane (14.9 wt.% PVDF, 1.0 wt.% PAC) were 35.34, 48.71, and 22.00% for COD, colour and NH3-N, respectively. Water flux and transmembrane pressure were also enhanced by the incorporated PAC and recorded 61.0 L/m(2)center dot h and 0.67 bar, respectively, under the conditions of the optimum removal efficiency. Moreover, the performance of fabricated membranes in terms of pollutant removal, pure water permeation, and different morphological characteristics were systematically analyzed. Despite the limited achievement, which might be improved by the addition of a hydrophilic additive, the study offers an efficient way to fabricate PVDF-PAC membrane and to optimize its treatability through the RSM tool.

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