Extractive removal of chromium (VI) from industrial waste solution.


Abstract

Extractive removal of Cr (VI) was carried out from chloride solutions using cyanex 923 mixed with kerosene.

The efficiency of this extractant was studied under various experimental conditions, such as concentration of different mineral acids in the aqueous phase, concentration of cyanex 923 and Cr (VI) present in the initial aqueous feed, temperature and time of extraction, organic to aqueous (O/A) phase ratio.

Percentage Cr (VI) extraction decreases with the increase in temperature at varying concentration of cyanex 923. The interference of the impurities usually associated with Cr (VI) such as Cr (III), Cu, Ni, Fe (II), Zn, Chloride and sulphate, etc., were examined under the optimized conditions and only Zn was found to interfere.

Under the optimum experimental conditions 98.6-99.9% of Cr (VI) was extracted in 3-5 min at O/A of 2 with the initial feed concentration of 1g/L of Cr (VI). The extracted Cr (VI) was quantitatively stripped with 1M NaOH and the organic phase obtained after the stripping of Cr (VI) was washed with dilute HCl solution to neutralize any NaOH trapped/adhered to the solvent and then with distilled water.

This regenerated solvent was reused in succeeding extraction of chromium (VI). Finally a few experiments were performed with the synthetic effluent from an electroplating industry.


Full Text

  • DOI - Journal of Hazardous Materials (DOI)
  • EBSCO - full-text online (subscription/membership/fee required)
  • Elsevier Science - full-text online (subscription/membership/fee required)
  • Swets Information Services - full-text online (subscription/membership/fee required)

Subjects


Similar articles

Authors


Publication date

2008-10-20


Journal

Journal of hazardous materials
J Hazard Mater (0304-3894)



Journal topics


Language

Eng.


Copyright

Journal of Hazardous Materials

Metal Extraction and Forming Division, National Metallurgical Laboratory, Jamshedpur 831007, India. archana nml03 [at] yahoo.com


Release reference

J Hazard Mater. 2008 Nov;159(2-3):458-64



Related books


Español | English

© Galenicom 1999-2013