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Evaluation of selective composite cryogel for bromate removal from drinking water

โœ Scribed by Solmaz Hajizadeh; Harald Kirsebom; Igor Y. Galaev; Bo Mattiasson


Publisher
John Wiley and Sons
Year
2010
Tongue
English
Weight
315 KB
Volume
33
Category
Article
ISSN
1615-9306

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โœฆ Synopsis


Abstract

Bromate, which is a potential carcinogen, should be removed from drinking water to levels of less than 10โ€‰ฮผg/L. A chitosanโ€based molecularly imprinted polymer (MIP) and a solโ€“gel ionโ€exchange double hydrous oxide (Fe~2~O~3~ยทAl~2~O~3~ยท__x__H~2~O) adsorbent (inorganic adsorbent) were prepared for this purpose. The sorption behavior of each adsorbent including sorption kinetics, isotherms, effect of pH and selective sorption were investigated in detail. Sorption experimental results showed that the MIP adsorbents had better selectivity for bromate, even in the presence of high concentrations of nitrate, as compared to the inorganic adsorbent. It was found that pH does not affect the adsorption of bromate when using the inorganic adsorbent. Additionally, both adsorbents were immobilized in a polymeric cryogel inside plastic carriers to make them more practical for using in larger scale. Regeneration of the cryogels either containing MIP or inorganic adsorbents were carried out by 0.1โ€‰M NaOH and 0.1โ€‰M NaCl, respectively. It was found that the regenerated MIP and inorganic adsorbents could be used at least three and five times, respectively, without any loss in their sorption capacity.


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## Abstract **BACKGROUND:** There are a number of articles related to removal of boron by electrocoagulation using aluminium electrodes, but there are fewer articles describing the use of magnesium as the anode material. The main disadvantage of aluminium electrodes is the residual aluminium presen