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ELIMINATION OF ZINC, COPPER AND LEAD IONS FROM AQUEOUS SOLUTIONS USING ASH ORIGINATING FROM PLANT BIOMASS COMBUSTION

Heviankova, Silvie, Bestova, Iva, Kucerova, Lucie, Kucerova, Radmila

First published: 2013-06-20https://doi.org/10.5593/sgem2013/bd4/s18.008View metrics

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Title
ELIMINATION OF ZINC, COPPER AND LEAD IONS FROM AQUEOUS SOLUTIONS USING ASH ORIGINATING FROM PLANT BIOMASS COMBUSTION
Authors
Heviankova, Silvie, Bestova, Iva, Kucerova, Lucie, Kucerova, Radmila
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; 13th SGEM GeoConference on ENERGY AND CLEAN TECHNOLOGIES
Publisher
Stef92 Technology
Year
2013
Pages
349 - 358 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References34
  1. SISCA O. LESMANA , NOVIE FEBRIANA , FELYCIA E. SOETAREDJO , JAKA SUNARSO, SURYADI ISMADJI. Studies on potential applications of biomass for the separation of heavy metals from water and wastewater . Biochemical Engineering Journal . Australia. 2009. [online, 24-03-2013]. Available at .

  2. PITTER, P. Hydrochemistry. 4 th edition, Pra gue: VŠCHT Publishing, 2009. ISBN 978-80-7080-701-9. (in Czech). GeoConference on Energy and Clean Technologies

  3. MALÝ J., HLAVÍNEK P. Industrial wastewater treatment. 1 st edition, NOEL 2000, 1996. (in Czech).

  4. NOVÁK J. Physical chemistry II. 1st edition, Prague: VŠCHT, 2001. (in Czech).

  5. BARTOVSKÁ L., ŠIŠKOV Á M. Physical chemistry of surfaces a nd colloids. 5th edition. Prague: VŠCHT , 2005. (in Czech).

  6. KNAPP. Characteristics of ash from wood combustion . Biom.cz. [online, 08- 03-2013]. Available at . (in Czech).

  7. VÁŇA, J. Environmental aspects of biomass combustion . Biom.cz [online, 08- 03-2013]. Available at . ISSN: 1801-2655. (in Czech).

  8. VÁŇA, J. Application of ash from biomass combustion. Biom.cz [online, 08-03- 2013]. Available at . (in Czech).

  9. VÁŇA, J.: Biomass for energy and technical applications . Biom.cz [online 24- 02-2011]. Available at . (in Czech).

  10. NARODOSLAWSKY, M., OBERNBERGER, I. From waste to raw material – the route from biomass to wood ash for cadmium and other heavy metals. Journal of Hazardous Materials. 1996.

  11. PERUCCI P., MONACI E., ONOFRI A., VISCHETTI C., CASUCCI C. Changes in physico-chemical and biochemical parameters of soil following addition of wood ash: A field experiment; Journal of Agronomy. 2008.

  12. VOUNDI NKANA J.C., DEMEYER A., VERLOO M.G. Effect of wood ash application on soil solution chemistry of tropical acid soils : incubation study; Bioresource Technology. 2002.

  13. S. MOHAN, R. GANDHIMATHI. Removal of heavy metal ions from municipal solid waste leachate using coal fly ash as an adsorbent. Journal of Hazardous Materials. India. 2009. [online, 21-03 -2013], Available at .

  14. HEECHAN CHO , DALYOUNG OH, KWANHO KIM . A study on removal characteristics of heavy metals from aqueous solution by fly ash . Journal of Hazardous Materials. Republic of Korea. 2005. [online, 24-03-2013]. Available at .

  15. GITARI, W. M.; et al. Utilization of fly ash for treatment of coal mines wastewater: Solubility controls on major inorganic contaminants. Fuel 2008, 87, 2450 – 2460.

  16. KLIKORKA, J., HÁJEK, B., VOTINSKÝ, J., General and inorganic chemistry. 2nd edition. Prague: SNTL, 1989. (in Czech).

  17. HEVIÁNKOVÁ, S., BESTOVÁ, I., DAXNER, J., VÁCLAVÍK, V., 2010. Reagent on the base of plant biomass combustion residue. Patent No. 303549, (in Czech).

  18. SISCA O. LESMANA , NOVIE FEBRIANA , FELYCIA E. SOETAREDJO , JAKA SUNARSO, SURYADI ISMADJI. Studies on potential applications of biomass for the separation of heavy metals from water and wastewater . Biochemical Engineering Journal . Australia. 2009. [online, 24-03-2013]. Available at .

  19. PITTER, P. Hydrochemistry. 4 th edition, Pra gue: VŠCHT Publishing, 2009. ISBN 978-80-7080-701-9. (in Czech). GeoConference on Energy and Clean Technologies

  20. MALÝ J., HLAVÍNEK P. Industrial wastewater treatment. 1 st edition, NOEL 2000, 1996. (in Czech).

  21. NOVÁK J. Physical chemistry II. 1st edition, Prague: VŠCHT, 2001. (in Czech).

  22. BARTOVSKÁ L., ŠIŠKOV Á M. Physical chemistry of surfaces a nd colloids. 5th edition. Prague: VŠCHT , 2005. (in Czech).

  23. KNAPP. Characteristics of ash from wood combustion . Biom.cz. [online, 08- 03-2013]. Available at . (in Czech).

  24. VÁŇA, J. Environmental aspects of biomass combustion . Biom.cz [online, 08- 03-2013]. Available at . ISSN: 1801-2655. (in Czech).

  25. VÁŇA, J. Application of ash from biomass combustion. Biom.cz [online, 08-03- 2013]. Available at . (in Czech).

  26. VÁŇA, J.: Biomass for energy and technical applications . Biom.cz [online 24- 02-2011]. Available at . (in Czech).

  27. NARODOSLAWSKY, M., OBERNBERGER, I. From waste to raw material – the route from biomass to wood ash for cadmium and other heavy metals. Journal of Hazardous Materials. 1996.

  28. PERUCCI P., MONACI E., ONOFRI A., VISCHETTI C., CASUCCI C. Changes in physico-chemical and biochemical parameters of soil following addition of wood ash: A field experiment; Journal of Agronomy. 2008.

  29. VOUNDI NKANA J.C., DEMEYER A., VERLOO M.G. Effect of wood ash application on soil solution chemistry of tropical acid soils : incubation study; Bioresource Technology. 2002.

  30. S. MOHAN, R. GANDHIMATHI. Removal of heavy metal ions from municipal solid waste leachate using coal fly ash as an adsorbent. Journal of Hazardous Materials. India. 2009. [online, 21-03 -2013], Available at .

  31. HEECHAN CHO , DALYOUNG OH, KWANHO KIM . A study on removal characteristics of heavy metals from aqueous solution by fly ash . Journal of Hazardous Materials. Republic of Korea. 2005. [online, 24-03-2013]. Available at .

  32. GITARI, W. M.; et al. Utilization of fly ash for treatment of coal mines wastewater: Solubility controls on major inorganic contaminants. Fuel 2008, 87, 2450 – 2460.

  33. KLIKORKA, J., HÁJEK, B., VOTINSKÝ, J., General and inorganic chemistry. 2nd edition. Prague: SNTL, 1989. (in Czech).

  34. HEVIÁNKOVÁ, S., BESTOVÁ, I., DAXNER, J., VÁCLAVÍK, V., 2010. Reagent on the base of plant biomass combustion residue. Patent No. 303549, (in Czech).

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