STUDY REGARDING THE PRESENCE OF SOME HEAVY METALS (CHROMIUM, COPPER, MANGANESE AND ZINC) IN THE GREEN WASTE COMPOST

Authors

  • Irina SMICAL Department of Engineering of Mineral Resources, Materials and Environment, North University Centre of Baia Mare, Technical University, Cluj-Napoca, , Baia Mare, Romania. Email: irina.smical@cunbm.utcluj.ro. https://orcid.org/0000-0002-2406-2420
  • Adriana MUNTEAN Maramureș Water Management System, Someș-Tisa Basinal Water Administration, Baia Mare, Romania. Corresponding author: irina.smical@yahoo.com.
  • Valer MICLE Department of Environmental Engineering and Sustainable Development Entrepreneurship, Faculty of Materials and Environmental Engineering, Technical University, Cluj-Napoca, Romania Email: valer.micle@imadd.utcluj.ro. https://orcid.org/0000-0003-1102-4537
  • Zoltán TÖRÖK Faculty of Environmental Science and Engineering, Babeş-Bolyai University; ISUMADECIP Institute, Cluj-Napoca, Romania. Email: zoltan.torok@ubbcluj.ro. https://orcid.org/0000-0002-4625-6525

DOI:

https://doi.org/10.24193/subbchem.2019.1.05

Abstract

Composting is one of the most effective recycling method of green waste. The presence of some heavy metals, such as chromium, copper, manganese and zinc may influence the compost quality. The bioavailable and unavailable metal forms for plants determined by sequential analysis showed similarities in relation to the percentages of extracted forms. The lowest percentages were recorded for the bioavailable metal forms for plants uptake. Thus, the succession F6>F5>F4>F3>(F1+F2) is characteristic for chromium, the succession F5>F6>F4>F3>(F1+F2) is characteristic for copper and zinc and the succession F5>F4>F6>F3>(F1+F2) is characteristic to zinc and manganese. Thus, by adding some organic additives, like manure, the micronutrients and heavy metals regime is influenced.

References

J. Martinho, B. Campos, I. Brás, E. Silva, Environment Protection Engineering, 2015, 41, 2, 57.

G. Chen, G. Zeng, C. Du, D. Huang, L. Tang, G. Wang Land Shen, Journal of Hazardous Materials, 2010, 181, 211.

J. Singh, A. S. Kalamdhad, International Research Journal of Environment Sciences, 2013, 2, 4, 59.

P. Castaldi, L. Santona, P. Melis, Fresenius Environmental Bulletin, 2006, 15, 9b, 1133.

K.G. Scheckel, R.L. Chaney, N.T. Basta, J.A. Ryan, Advances in Agronomy Elsevier, 2009, 104, 52.

M. Vukobratović, Z. Vukobratović, Z. Lončarić, D. Kerovac, Acta Horticulturae 1034: International Symposium on Growing Media and Soilless Cultivation, 2014, 75, 591.

I. Smical, V. Hotea, V. Oros, J. Juhasz, E. Pop, Environmental Engineering and Management Journal, 2008, 7, 5, 609.

A.K. Gupta, S. Sinha, Bioresource Technology, 2007, 98, 1788.

F. Ingelmo, M.J. Molina, M. Desamparados Soriano, A. Gallardo, L. Lapeña, Journal of Environmental Management, 2012, 95, 104.

J. Singh, A.S. Kalamdhad, Ecological Engineering, 2013, 52, 59.

I. Smical, A. Muntean, V. Micle, Environmental Engineering and Management Journal, 2016, 15, 5, 1041.

National Institute of Research-Development for Pedology, Agrochemistry and Environmental Protection – IRPA, Bucharest, Romania (NIRDPAEP-IRPA) 2014 Codes of good practices. Composting, (http://www.icpa.ro/Coduri/Compostarea.pdf), 6.

M. Ardelean, Academic Press Cluj Napoca, 2008.

M. Ahmed, A. Idris, S.R.S. Omar, Journal of Engineering Science and Technology, 2007, 2 81-94.

B. Manohara, S.L. Belagali, International Journal of Innovative Research in Science, Engineering and Technology, 2014, 3, 2, 9664.

Z. Y. Hseu, Bioresource Technology, 2004, 95, 53.

C. Bachert, W. Bidlingmaier, S. Wattanachira, Handbook on composting in uncovered piles (rows), European Compost Network ECN/ORBIT, 2008.

D. Davidescu, V. Davidescu, Romanian Academy Publishing House Bucharest, 1992, 133.

Federal Compost Quality Assurance Organisation (FCQAO) and Bundes-gütegemeinschaft Kompost e.V. (BGK), Federal Compost Quality Assurance Organisation (FCQAO) and Bundesgütegemeinschaft Kompost e.V. (BGK), 2003, 6.

Digestion Application Note DG-EN-04, Fly Ash, Milestone Microwave Laboratory System, 1.

G. Sposito, L.J. Lund, A.C. Chang, Soil Science Society of America Journal, 1982, 46, 260.

H.E. Qingsong, Y. Ren, I. Mohamed, M. Ali, W. Hassan, F. Zeng, Soil & Water Res., 2013, 8, 71.

Digestion Application Note DG-EN-08 – in accordance with USEPA Method 3051 1998 Microwave assisted acid digestion of sediments, sludge, soils, and oils, Washington, DC: U.S. Environmental Protection Agency Office of Wastewater Management, 1.

Downloads

Published

2019-03-29

How to Cite

SMICAL, I., MUNTEAN, A. ., MICLE, V. ., & TÖRÖK, Z. . (2019). STUDY REGARDING THE PRESENCE OF SOME HEAVY METALS (CHROMIUM, COPPER, MANGANESE AND ZINC) IN THE GREEN WASTE COMPOST. Studia Universitatis Babeș-Bolyai Chemia, 64(1), 63–78. https://doi.org/10.24193/subbchem.2019.1.05

Issue

Section

Articles