References
- M. Cimochowicz-Rybicka, Sewage Sludge Mass Minimization
Technology-From Legislation to Application, A. Pawłowski,
M.R. Dudzińska, L. Pawłowski, Environmental Engineering
IV, Proceedings of The Conference on Environ. Eng. IV, Lublin,
Poland, 3–5 Sept. 2012, CRC Press, Balkema, 2013, pp. 167–171.
- K. Kołecka, M. Gajewska, H. Obarska-Pempkowiak,
D. Rohde, Integrated dewatering and stabilization system
as an environmentally friendly technology in sewage sludge
management in Poland, Ecol. Eng., 98 (2017) 346–353.
- G. Zhen, X. Lu, H. Kato, Y. Zhao, Y.-Y. Li, Overview of
pretreatment strategies for enhancing sewage sludge
disintegration and subsequent anaerobic digestion: current
advances, full-scale application and future perspectives,
Renewable Sustainable Energy Rev., 69 (2017) 559–577.
- N. Lambert, P.V. Aken, I. Smets, L. Appels, R. Dewil,
Performance assessment of ultrasonic sludge disintegration
in activated sludge wastewater treatment plants under
nutrient-deficient conditions, Chem. Eng. J., 431 (2022) 133979,
doi: 10.1016/j.cej.2021.133979.
- M. Zubrowska-Sudol, J. Podedworna, K. Sytek-Szmeichel,
A. Bisak, P. Krawczyk, A. Garlicka, The effects of mechanical
sludge disintegration to enhance full-scale anaerobic digestion
of municipal sludge, Therm. Sci. Eng. Prog., 5 (2018) 289–295.
- E. Zielewicz, Effects of ultrasonic disintegration of excess
sewage sludge, Appl. Acoust., 103 (2016) 182–189.
- K. Szymański, New solutions in biogas production according to
MT-ENERGIE technology, Rocznik Ochr Srod, 12 (2011) 249–262.
- J.B. Bien, G. Malina, J.D. Bien, L. Wolny, Enhancing anaerobic
fermentation of sewage sludge for increasing biogas generation,
J. Environ. Sci. Health. Part A Toxic/Hazard. Subst. Environ.
Eng., 39 (2004) 939–949.
- E. Zielewicz, Effects of ultrasonic disintegration of excess
sewage sludge, Top. Curr. Chem., 374 (2016) 67, doi: 10.1007/s41061-016-0068-5.
- C.P. Chu. B.-V. Chang, G.S. Liao, D.S. Jean, D.J. Lee, Observations
on changes in ultrasonically treated
waste-activated sludge,
Water Res., 35 (2001) 1038–1046.
- G. Mancuso, M. Langone, R. Di Maggio, A. Toscano, G. Andreottola,
Effect of hydrodynamic cavitation on flocs structure in
sewage sludge to increase stabilization for efficient and safe
reuse in agriculture, Biorem. J., 26 (2022) 41–52
- P.R. Gogate, P.N. Patil, Sonochemical reactors, Top. Curr. Chem.,
374 (2016) 61,
doi: 10.1007/s41061-016-0064-9.
- A. Śliwiński, Ultrasound and Its Application, WNT, Warszawa,
2001.
- A. Tiehm, K. Nickel, U. Neis, The use of ultrasound to accelerate
the anaerobic digestion of sewage sludge, Water Sci. Technol.,
36 (1997) 121–128.
- A. Tiehm, K. Nickel, M. Zellhorn, U. Neis, Ultrasonic waste
activated sludge disintegration for improving anaerobic
stabilization, Water Res., 35 (2001) 2003–2009.
- F. Hogan, S. Mormede, P. Clark, M. Crane, Ultrasonic sludge
treatment for enhanced anaerobic digestion, Water Sci. Technol.,
50 (2004) 25–32.
- H. Carrère, C. Dumas, A. Battimelli, D.J. Batstone, J.P. Delgenès,
J.P. Steyer, I. Ferrer, Pretreatment methods to improve sludge
anaerobic degradability: a review, J. Hazard. Mater., 183 (2010)
1–15.
- E. Zielewicz, Ultrasonic Disintegration of Excess Sludge
for Receiving of VFA, Monography, Silesian University of
Technology, Gliwice, 2007.
- Ł. Skórkowski, E. Zielewicz, A. Kawczyński, B. Gil, Assessment
of excess sludge ultrasonic, mechanical and hybrid pretreatment
in relation to the energy parameters, Water, 10 (2018) 551,
doi: 10.3390/w10050551.
- D. Hilligardt, E. Hoffmann, Particle size analysis and
sedimentation properties of activated sludge flocs, Water Sci.
Technol., 36 (1997) 167–175.
- S.M. Glover, Y.-d. Yan, G.J. Jameson, S. Biggs, Bridging
flocculation studied by light scattering and settling, Chem. Eng.
J., 80 (2000) 3–12.
- M. Simonetti, G. Rossi, V. Cabbai, V. Goi, Tests on the effect of
ultrasonic treatment on two different activated sludge waste,
Environ. Prot. Eng., 40 (2014) 23–33.
- L. Smoczyński, H. Ratnaweera, M. Kosobucka, M. Smoczyński,
Image analysis of sludge aggregates, Sep. Purif. Technol.,
122 (2014) 412–420.
- M. Bizi, G. Baudet, Contribution of static light scattering to
the textural characterization of large aggregates, J. Colloid
Interface Sci., 300 (2006) 200–209.
- A. Bieganowski, G. Łagód, M. Ryżak, A. Montusiewicz,
M. Chomczyńska, A. Sochan, Measurement of activated sludge
particle diameters using laser diffraction method, Ecol. Chem.
Eng. S, 19 (2012) 597–608.
- E. Molinaroli, G. De Falco, G.G. Matteucci, S. Guerzoni,
Sedimentation and time-of-transition techniques for measuring
grain-size distributions in lagoonal flats: comparability of
results, Sedimentology, 58 (2011) 1407–1413.
- J.I. Houghton, J.E. Burgess, T. Stephenson, Off-line particle size
analysis of digested sludge, Water Res., 36 (2002) 4643–4647.
- V. Chaignon, B.S. Lartiges, A. El Samrani, C. Mustin, Evolution
of size distribution and transfer of mineral particles between
flocs in activated sludges: an insight into floc exchange
dynamics, Water Res., 36 (2002) 676–684.
- B. Zhu, P. Zhang, H. Wang, J. Ye, Conditioning of sewage sludge
via combined ultrasonication-flocculation-skeleton building to
improve sludge dewaterability, Ultrason. Sonochem., 40 (2018)
353–360.
- Ł. Skórkowski, E. Zielewicz, The influence of energy input on
the particle size of disintegrated excess sludge in the ultrasonic
disintegration process, Water Sci. Technol., 2017 (2018) 679–685.
- Malvern Mastersizer 3000 User Manual MAN0474-07-EN-00
November 2015.
- APHA, Standard Methods for the Examination of Water and
Wastewater, American Public Health Association (APHA),
Washington D.C., USA, 2005.
- J.-H. Ahn, S.G. Shin, S. Hwang, Effect of microwave irradiation
on the disintegration and acidogenesis of municipal secondary
sludge, Chem. Eng. J., 153 (2009) 145–150.
- P. Kampas, S.A. Parsons, P. Pearce, S. Ledoux, P. Vale, J. Churchley,
E. Cartmell, Mechanical sludge disintegration for the
production of carbon source for biological nutrient removal,
Water Res., 41 (2007) 1734–1742.
- M. Zubrowska-Sudol, J. Walczak, Effects of mechanical
disintegration of activated sludge on the activity of nitrifying
and denitrifying bacteria and phosphorus accumulating
organisms, Water Res., 61 (2014) 200–209.
- M.A. Gladchenko, S.D. Razumovskii, D.A. Kovalev,
V.P. Murygina, E.G. Raevskaya, S.D. Varfolomeev, Effect of
cavitational disintegration of surplus activated sludge on
methane generation in the process of anaerobic conversion,
Russ. J. Phys. Chem. B, 10 (2016) 496–503.