Commercial steel wool for reduction of hexavalent chromium in wastewater: batch kinetic studies and rate model

Author:

Mitra P.,Banerjee P.,Sarkar D.,Chakrabarti S.

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,Environmental Chemistry,Environmental Engineering

Reference41 articles.

1. Adamson AW, Gast AP (1997) Physical chemistry of surfaces, 6th edn. Wiley, New York

2. Agrawal A, Kumar V, Pandey BD (2006) Remediation options for the treatment of electroplating and leather tanning effluent containing chromium—a review. Miner Process Extract Metall Rev 27(2):99–130

3. Beveridge SG, Schechter RS (1970) Optimization: theory and practice. McGraw-Hill, Inc., New York

4. Blowes DW, Gillham RW, Ptacek CJ, Puls RW, Benett TA, O’Hannesin SF, Hanton-Fong CJ, Bain JG (1996) An in situ permeable reactive barrier for the treatment of hexavalent chromium and trichloroethylene in ground water. design and installation, vol. 1, United States Environmental Protection Agency

5. Blowes DW, Ptacek CJ, Benner SG, McRae C, Bennett TA, Puls RW (2000) Treatment of inorganic contaminants using permeable reactive barriers. J Contam Hydrol 45(1–2):123–137

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