References
- E.W. Low, H.A. Chase, Reducing production of excess biomass
during wastewater treatment, Water Res., 33 (1999) 1119–1132.
- H. Ma, S. Zhang, X. Lu, B. Xi, X. Guo, H. Wang, J. Duan, Excess
sludge reduction using pilot-scale lysis-cryptic growth system
integrated ultrasonic/alkaline disintegration and hydrolysis/
acidogenesis pretreatment, Bioresour. Technol., 116 (2012)
441–447.
- M. Barański, M. Małkowski, L. Wolny, Impact of physical
disintegration of excess sludge on anaerobic stabilization
process, Eng. Environ. Prot., 17 (2014) 315–324 (in Polish).
- I. Zawieja, Conventional and Hybrid Methods of Excess Sludge
Disintegration, Monographs No. 305, Czestochowa University
of Technology Publishing House, Czestochowa, 2015 (in Polish).
- S. Myszograj, Methane fermentation of thermochemically
hydrolyzed sewage sludge, Eng. Environ. Prot., 10 (2007) 141–
152 (in Polish).
- W. Bednarski, J. Fiedurka, Basics of Industrial Biotechnology,
Scientific and Technical Publishers, Warsaw, 2007 (in Polish).
- T. Marcinkowski, Alkaline Stabilization of Municipal Sewage
Sludge, Wroclaw University of Technology Publishing House,
Wroclaw, 2004 (in Polish).
- T. Wojciechowski, Influence of Stabilization and Hygienisation
Processes of Municipal Sewage Sludge Used in Agriculture on
Soil Quality, Ph.D. Dissertation, University of Technology and
Life Sciences J.J. Śniadeckich in Bydgoszcz, Bydgoszcz, 2017 (in
Polish).
- I. Zawieja, P. Wolski, The influence of chemical and thermal
modification of excessive sludge on the generation of volatile
fatty acids in the methane fermentation process, Rocz. Ochr.
Srod., 15 (2013) 2054–2070.
- E. Zielewicz, Ultrasonic Disintegration of Excess Sludge
in Obtaining Volatile Fatty Acids, Silesian University of
Technology, Gliwice, 2007 (in Polish).
- J. Kim, C. Park, T.H. Kim, M. Lee, S. Kim, S.W. Kim, J. Lee, Effects
of various pretreatments for enhanced anaerobic digestion with
waste activated sludge, J. Biosci. Bioeng., 95 (2003) 271–275.
- W. Saktaywin, H. Tsuno, H. Nagare, T. Soyama,
J. Weerapakkaroon, Advanced sewage treatment process with
excess sludge reduction and phosphorus recovery, Water Res.,
39 (2005) 902–910.
- A.A. Salyers, D.D. Whitt, Microbiology, State Scientific
Publisher, Warsaw, 2012.
- T.H. Kim, S.R. Lee, Y.K. Nam, J. Yang, Ch. Parkc, M. Lee,
Disintegration of excess activated sludge by hydrogen peroxide
oxidation, Desalination, 246 (2009) 275–284.
- ENVOLAB Information Materials – www.envolab.pl,
30.04.2018.
- H. Bering, 100 years of peracetic acid, an old substance with
new perspectives, Asepsis, 2 (2003) 15–17 (in Polish).
- T. Onyeche, O. Schlafer, H. Bormann, C. Schroder, M. Sievers,
Ultrasonic cell disruption of stabilised sludge with subsequent
anaerobic digestion, Ultrasonics, 40 (2002) 31–35.
- A. Gallipoli, C.M. Braguglia, High-frequency ultrasound
treatment of sludge: combined effect of surfactants removal and
floc disintegration, Ultrason. Sonochem., 19 (2012) 864–871.
- S. Pilli, P. Bhunia, S. Yan, R.J. LeBlanc, R.D. Tyagi,
R.Y. Surampalli, Ultrasonic pretreatment of sludge: a review,
Ultrason. Sonochem., 18 (2011) 1–18.
- M. Worwąg, A. Grosser, E. Neczaj, T. Kamizela, Impact of
ultrasonic pretreatment on the anaerobic fermentation of dairy
waste activated sludge, Rocz. Ochr. Srod., 20 (2018) 512–527.
- C. Bougrier, C. Albasi, J.P. Delgenés, Solubilisation of wasteactivated
sludge by ultrasonic treatment, Chem. Eng. J., 106
(2005) 163–169.
- L. Roy-Arcand, F. Archibald, Selective removal of resin and
fatty acids from mechanical pulp effluents by ozone, Water
Res., 30 (1996) 1269–1279.
- Y. Zhongtang, W.W. Mohn, Bioaugmentation with resin acid
degrading bacteria enhances resin acid removal in sequencing
batch reactors treating pulp mill effluents, Water Res., 35 (2001)
883–890.
- L. Appels L., A. Van Assche, K. Willems, J. Degreve, J. Van
Impe, R. Dewil, Peracetic acid oxidation as an alternative pretreatment
for the anaerobic digestion of waste activated sludge,
Bioresour. Technol., 102 (2011) 4124–4130.
- A. Tiehm, K. Nickel, M. Zellhorn, U. Neis, Ultrasonic waste
activated sludge disintegration for improving anaerobic
stabilization, Water Res., 35 (2001), 2003–2009
- A. Fleck, The Investigation of Peracetic Acid-Oxidized Loblolly
Pine by Pyrolysis–Gas Chromatography–Mass Spectrometry,
The Institute of Paper, 1975 (in polish).
- G. Buraczewski, B. Bartoszek, Biogas - Production and Use,
State Scientific Publisher, Warsaw, 1990 (in Polish).
- K. Iskra, S. Miodoński, Disintegration of Excessive Sludge
- Good Practice or Necessity? Materials from EKO-DOK
Conference, 2014, pp. 326–336 (in polish).
- J. Bień, I. Zawieja, M. Worwąg, Start-up experiments in the
operation of digesters in a large wastewater treatment plant,
Exploator’s Forum, 5 (2009) 50–54 (in Polish).