Title of article
Novel boron specific copolymers with quaternary amine segments for efficient boron removal via PEUF Original Research Article
Author/Authors
Hasan Zerze، نويسنده , , H. onder ozbelge، نويسنده , , Niyazi Bicak، نويسنده , , Nihal Aydogan، نويسنده , , Levent Yilmaz، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2013
Pages
11
From page
169
To page
179
Abstract
In this study, a copolymer, poly (vinyl amino-N, N′-bis-propane diol-co-DADMAC) (GPVA-co-DADMAC) was synthesized in three comonomer ratios (2%, 5% and 10%) and efficiently exploited for boron removal via polymer enhanced ultrafiltration (PEUF). Boron concentration could be reduced from 10 ppm down to 0.8 ppm by the employment of novel copolymer in continuous PEUF at pH 9 and boron-to-polymer mass ratio (loading) of 0.001. Polymer precipitation was not observed even after complexation with boron. Boron retention was found to be highly pH dependent and boron concentration dependent at constant loading. Hence, efficient polymer regeneration can be expected due to high pH and concentration dependency of boron complexation. Moreover, permeate flux was not affected by the polymer concentration in the conditions studied (polymer concentration ≤ 10 g/L; pressure drop: 2 bar). Dynamic and static light scattering measurements showed that gyration radius of the polymers rises by dilution or by increasing pH of the solutions. Furthermore, a two-step equilibrium model was correlated with the experimental boron retention data. Having high boron binding affinity, hydrolytic stability and efficiency in boron removal, the synthesized copolymers possessing DADMAC segments seemed to be attractive and useful for large scale water treatment with PEUF systems.
Keywords
Boron removal , Polymer enhanced ultrafiltration , Binding model , Polychelatogen
Journal title
Desalination
Serial Year
2013
Journal title
Desalination
Record number
1115591
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