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2011 | 20 | 1 |

Tytuł artykułu

Sorption of lead and cadmium cations on natural and manganese-modified zeolite

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Our work shows that active masses modified with manganese that are used to remove Mn(II) and Fe(II) can also remove the heavy metals Pb and Cd. The study was conducted for solutions with a concentration of cation 100 mg/L and demonstrated the high correlation between hydroxo-complexs and their potential, and the process of removing investigated metals (Pb and Cd).

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

1

Opis fizyczny

p.15-19,fig.,ref.

Twórcy

autor
  • Faculty of Environmental Engineering, Cracow University of Technology, Krakow, Poland
autor

Bibliografia

  • 1. SONGHUYUAN, ZHIMIN XI, YI JIANG, JINZHONG WAN, CHAN WU, ZHONGHUA ZHENG, XIAOHUA LU. Desorption of copper and cadmium from soils enhanced by organic acids. Chemosphere 68, 1289, 2007.
  • 2. HORANYI G. Specific adsorption of simple organic acids on metal (hydroxides: a radiotracer approach. J. Colloidal Int. Sci. 254, 214, 2002.
  • 3. WASAY S.A., BARRINGTON S., TOKUNAGA S. Organic acids for the in situ remediation of soils polluted by heavy metals; soil flushing in columns, Water Air Soil Pollut. 127, 301, 2003.
  • 4. DOJLIDO J.R. Chemistry surface waters. Economics and environmental. Bialystok 1995.
  • 5. WATT G.C.M., BRITTON A., GILMOUR H. G., MOORE M.R., MURRAY G.D., ROBERTSON S.J. Food and Chemical Toxicology 38, S73, 2000.
  • 6. LANPHEAR B. P., BURGOON D. A., RUST S. W., EBERLY S., GALKE W. Environmental Research, 76, 120, 1998.
  • 7. TANGAROMSUK J., POKETHITIYOOK P., KRUATRACHUE M., UPATHAM E.S. Cadmium biosorption by Sphingomonas paucimobilis biomass. Bioresource Technology 85, 103, 2002.
  • 8. WAISBERG M., PIUS JOSEPH, BEVERLEY HALE, DETMAR BEYERSMANN. Molecular and cellular mechanisms of cadmium carcinogenesis. Toxicology 192, 95, 2003.
  • 9. MOMOSE Y., IWAHASHI H. Bioassay of cadmium using a DNA microarray: genome-wide Saccha expression patterns of Saccharomyces cerevisiae in response to cadmium. Environ. Toxicol. Chem. 20, 2353, 2001.
  • 10. KALICANIN BILJANA M. Determination of very toxic metal – Cadmium in natural water samples. Desalination 249, 58, 2009.
  • 11. DE CONTO CINIER CH., PETIT-RAMEL M., FAURE R., GARIN D., JOUVET Y. Kinetics of cadmium accumulation and elimination in carp Cyprinus carpio tissues. Comparative and Physiology Part C 122, 345, 1999.
  • 12. BENAISSA H. Screening new sorbent materials for cadmium removal from aqueous solutions. Journal of Hazardous materials B 132, 189, 2006.
  • 13. CHIN-HSING LAI, CHIH-YU CHEN, BAI-LUH WEI, SHU-HSING YEH. Cadmium adsorption on goethite-coated sand in the presence of humic acid. Water Research 36, 4943, 2002.
  • 14. PANUCCIO M. R., SORBONA A., PIZZO M., CACCO G. Cadmium adsorption on vermiculite, zeolite and pumice: Batch experimental studies. Journal of Environmental Management 90, 364, 2009.
  • 15. ANIELAK A.M. The physicochemical properties of manganese dioxide-modified clinoptylolite. Przemysł Chemiczny 7, 487, 2006.
  • 16. UFNALSKI Ionics equilibrium, algorithms, calculations and computer simulation. N-T, WNT, 2004.
  • 17. Patent application 369803 ANIELAK A.M.
  • 18. ANIELAK A.M., SCHMIDT R. Adsorption of As(III) on natural Clinoptilolite Modified with Manganese. Polish Journal of Environmental Studies. 16, (2A), 239, 2007.
  • 19. ANIELAK A.M., ŚWIDERSKA-DĄBROWSKA R., MAJEWSKI A. Removal of arsenic from underground waters on modified clinoptilolite. Environmental Engineering Taylor & Francis Group, London, UK, 2007.
  • 20. DAVIS A.P., BHATNAGAR V. Adsorption of cadmium and humic onto hematite. Chemosphere, 30, (2) 243, 1995

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.dl-catalog-d08eb671-07ae-4cae-a9aa-7aa5846114b1
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