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Influence of Decreasing Supplementation to Transformation of Chemical Forms of Ni, Zn and Cu During Composting of Sewage Sludge

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This paper pertains to the influence of decreasing supplementation to transformation of chemical forms of Ni. Zn and Cu during composting of sewage sludge. A universally used supplementing material constituting a rich source of organic carbon is straw. Addition of straw to sewage sludge is aimed at increasing C/N proportion up to at least 15 due to the risk of formation of toxic forms of nitrogen, concentration of which in sewage sludge is exceptionally high. We have presented in this paper the results of speciation research of three elements applying Tessier’s sequential extraction. It’s been proven that decreasing of straw share in the composted mixture with sewage sludge down to the level of C/N value below the admissible value, has a beneficial effect on the allocation of tested heavy metals towards the forms that are permanently bound in compost matrix. A systematic increase of organic (IV) and residual (V) fractions share and decrease of mobile forms of heavy metals content in bioavailable fractions i.e. ion-exchange (I) and carbonate (II) has been ascertained.
Słowa kluczowe
Rocznik
Tom
Strony
580--593
Opis fizyczny
Bibliogr. 22 poz., rys., tab.
Twórcy
  • Koszalin University of Technology, Poland
  • Koszalin University of Technology, Poland
  • PhD Student
  • Koszalin University of Technology, Poland
  • Municipal Heat Supply Company llc. Koszalin, Poland
Bibliografia
  • Carrizo, M. E., Alesso, C. A., Cosentino, D. & Imhoff, S. (2015). Aggregation agents and structural stability in soils with different texture and organic carbon content. Scientia Agricola, 72(1), 75-82. DOI: 10.1590/0103-9016-2014-0026
  • Curtis, M. J., & Claassen, V. P. (2009). Regenerating topsoil functionality in four drastically disturbed soil types by compost incorporation. Restoration Ecology, 17(1), 24-32. DOI: 10.1111/j.1526-100X.2007.00329.x
  • Doublet, J., Francou, F., Poitrenaud, M. & Houot, S. (2010). Sewage sludge composting: Influence of initial mixtures on organic matter evolution and N availability in the final composts. Waste Management, 30(10), 1922-1930. DOI: 10.1016/j.wasman.2010.04.032.
  • Głąb, T., Żabiński A., Sadowska, U., Gondek, K., Kopeć, M., Mierzwa-Hersztek, M. & Taborc, S. (2018). Effects of co-composted maize, sewage sludge, and biochar mixtures on hydrological and physical qualities of sandy soil. Geoderma, 315, 27-35. DOI: 10.1016/j.geoderma.2017.11.034.
  • Gonzalez, D., Colon, J., Gabriel, D. & Sanchez, A. (2019). The effect of the composting time on the gaseous emissions and the compost stability in a full-scale sewage sludge composting plant. Science of the Total Environment, 654, 311-323. DOI: 10.1016//j.scitoenv.2018.11.081.
  • Hamoda, M. F., Abu Qdais, H. A. & Newham,. J. (1998). Evaluation of municipal solid waste composting kinetics. Resources, Conservation and Recycling, 23, 209-223. DOI: 10.1016/S0921-3449(98)00021-4
  • Janowska, B. & Szymański, K. (2009). Transformation of selected trace elements during the composting process of sewage sludge and municipal solid waste. Fresenius Environmental Bulletin, 18(7), 1110-1117.
  • Kacprzak, K., Neczaj, E., Fijałkowski, K., Grobelaka, A., Grosser, A., Worwag, M., Rorat, A., Brattebo, H., Almas, A. & Singh, B. R.. (2017). Sewage sludge disposal strategies for sustainable development. Environmental Research, 156, 39-46. DOI: 10.1016/j.envers.2017.03.010
  • Kulikowska, D. & Sindrewicz, S. (2018). Effect of barley straw and coniferous bark on humification process during sewage sludge composting. Waste Management, 79, 207-213. DOI: 10.1016/j.wasman.2018.07.042.
  • Li, S., Li, D., Li, J., Li, G. & Zhan, B. (2017). Evaluation of humic substances during co-composting of sewage sludge and corn stalk under different aeration rates. Bioresource Technology, 245, 1299-1302. DOI: 10.1016/j.biortech.2017.08.177.
  • Pinasseau, A., Zerger, B., Roth, J., Canova, M. & Roudier, S. (2018). Best Available Techniques (BAT) Reference Document for Waste treatment Industrial Emissions Directive 2010/75/EU (Integrated Pollution Prevention and Control). EUR 29362 EN. Publications Office of the European Union. Luxembourg. ISBN 978-92-79-94038-5. DOI: 10.2760/407967.JRC113018.
  • Regulation EU 2019/1009 of the European Parliament and of the Council of 5 June 2019 laying down rules on the making available on the market of EU fertilizing products and amending Regulations (EC) No 1069/2009 and (EC) No 1107/2009 and repealing Regulation (EC) No 2003/2003 (Text with EEA relevance). http://data.europa.eu/eli/reg/2019/1009/oj
  • Sidełko, R., Janowska, B., Walendzik, B. & Siebielska, I. (2010). Two composting phases running in different process conditions timing relationship. Bioresources Technology, 101, 6692-6698. DOI: 10.1016/j.biortech.2010.03.092
  • Sidełko, R., Seweryn, K. & Walendzik, B. (2011). Optymalizacja procesu kompostowania w warunkach rzeczywistych. Rocznik Ochrona Środowiska, 13, 681-692.
  • Sidełko, R., Siebielska, I., Janowska, B. & Skubała, A. (2017). Assessment of biological stability of organic waste processed under aerobic conditions. Journal of Cleaner Production, 164, 1563-1570. DOI: 10.1016/j.jclepro.2017.07.035
  • Sidełko, R., Walendzik, B., Smuga-Kogut, M., Janowska, B., Szymański, K., Głowacka, A. & Leśniańska, A. (2020). Impact of reduced straw content on the sewage sludge composting process. Archives of Environmental Protection, 46(4), 70-77. DOI: 10.24425/aep.2020.135766
  • STEP, Sludge Technological Ecological Progress – increasing the quality and reuse of sewage sludge. Project no. STHB.02.02.00-32-0110/17. Available: https://www.stepinterreg.eu/pl/
  • Szymański, K., Janowska, B. & Sidełko, R. (2005). Estimation of bioavailability of copper. lead and zinc in municipal solid waste and compost. Asian Journal of Chemistry, 17(3), 1646-1660.
  • Świerczek, L., Cieślik, B. M. & Konieczka, P. (2018). The potential of raw sewage sludge in construction industry – A review. Journal of Cleaner Production, 200, 342-356. DOI: 10.1016/j.jclepro.2018.07.188
  • Zhang, J., Gao, D., Chen, T. B., Zheng, G .D., Chen, J., Ma, C., Guo, S. L. & Du, W. (2010). Simulation of substrate degradation in composting of sewage sludge. Waste Management, 30, 1931-1938. DOI: 10.1016/j.wasman.2010.04.004
  • Zheng, G., Wang, T., Niu, M., Chen, X., Liu, Ch., Wang, Y. & Chen, T. (2018). Biodegradation of nonylphenol during aerobic composting of sewage sludge under two intermittent aeration treatments in a full-scale plant. Environmental Pollution, 238, 783-791. DOI: 10.1016/j.envpol.2018.03.112
  • Zhu, N.M., Li, Q., Guo, X. J., Zhang, H. & Deng,Y. (2014). Sequential extraction of anaerobic digestate sludge for the determination of partitioning of heavy metals. Ecotoxicology and Environmental Safety, 102, 18-24. DOI: 10.1016/j.ecoenv.2013.12.033
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-bb5a3649-90fe-4109-94c7-b77a28da184d
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