DRYING AND ENERGY RECOVERY OF SLUDGE
DOI:
https://doi.org/10.24193/subbchem.2021.4.19Keywords:
wastewater, wastewater treatment plants, sludge, waste, drying tunnel, dry mud, resource.Abstract
This paper presents some of the results of research on the introduction of the operation of drying sludge from wastewater treatment in treatment plants. Graphical representations of the experimentally determined values demonstrate the possibility of continuing the process of decreasing the humidity of dehydrated sludge, by mechanical means. Sludge drying is presented as a simple operation that can be easily introduced into the sludge treatment process. The second part of the paper presents a machine that could be executed with relatively small amounts in each treatment plant in order to achieve the drying of dehydrated sludge. The paper presents characteristics of dehydrated sludges in Cluj and Sălaj counties as well as chemical analyzes performed on dehydrated sludges. In conclusion, the paper argues that dry sludge can be removed from the waste and turned into a material resource.References
B. Lyes, A. Patricia, L. Angélique, Review on fundamental aspect of application of drying process to wastewater sludge, Renewable and Sustainable Energy Reviews, Elsevier, 2013, 30, 29–43.
M. Henze, P. Harremoes, J. Jes LaCour Jansen, E. Arvin, Wastewater treatment: biological and chemical processes, Springer Berlin Heidelberg, Germany, 2001, 1-422.
T. Rusu, Technologies and equipment for water treatment and purification, U.T. Pres, Cluj-Napoca, România, 2008, Vol. I.
D. Mamais, D. Jenkins, Water Res., 1993, 27, 195–197.
P. Tudor, D. Florin, H. Anca, Ventilation and air conditioning installations, U.T. Pres, Cluj-Napoca, România, 2010, Vol. 1, 1-348.
G. Olsson, B. Newell, Wastewater treatment systems: modelling, diagnosis and control, IWA publishing, London, United Kingdom, 1999, 1-750.
B. Rao, L. Cao, J. Agric. Eng., 2012, 28, 184–188.
A. Reyes, M. Eckholt, F. Troncoso, G. Efremov, J. Drying Technol., 2004, 22, 35–50.
B. Lyes, Renewable and Sustainable Energy Reviews, 2012, 16, 1061–1073.
I. Vădan, A. C. Cziker, Modern energy conversion systems, U.T. Pres, Cluj-Napoca, România, 2017, 1-505.
“ÖWAV-Arbeitsausschuss "Thermische Behandlung und Verwertung", 2006, 1-4.
Horst Müller, ÖWAV-Klärschlammtagung, 2018, 1-60.
B.C O’Kelly, J. Air Waste Manag. Assoc., 2005, 765.
V.L. Mathioudakis, A.G. Kapagiannidis, E. Athanasoulia, V.I. Diamantis, P. Melidis, A. Aivasidis, Desalination, 2009, 248 (1–3), 733-739.
I. Leonard, M. Dumitru, V. Nicoleta, D. M. Motelică, T. Veronica, Methodology for using urban sludge in agriculture, Ed. Solness, Timișoara, România, 2007, pp 1-193.
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