References
- X. Li, M. Xing, J. Yang, X. Dai, Earthworm eco-physiological
characteristics and quantification of earthworm feeding in
vermifiltration system for sewage sludge stabilization using
stable isotopic natural abundance, J. Hazard. Mater., 276 (2014)
353–361.
- Y. Liu, Simultaneous Sludge Minimization and Nutrients
Removal in Activated Sludge Process, The University of Utah,
2008.
- T. Hendrickx, H. Temmink, H. Elissen, C. Buisman, Aquatic
worms eat sludge: mass balances and processing of worm
faeces, J. Hazard. Mater., 177 (2010) 633–638.
- X. Li, M. Xing, J. Yang, Z. Huang, Compositional and functional
features of humic acid-like fractions from vermicomposting
of sewage sludge and cow dung, J. Hazard. Mater., 185 (2011)
740–748.
- C. Lazcano, M. Gómez-Brandón, J. Domínguez, Comparison
of the effectiveness of composting and vermicomposting for
the biological stabilization of cattle manure, Chemosphere,
72 (2008) 1013–1019.
- I. Białobrzewski, M. Mikš-Krajnik, J. Dach, M. Markowski,
W. Czekała, K. Głuchowska, Model of the sewage sludgestraw
composting process integrating different heat generation
capacities of mesophilic and thermophilic microorganisms,
Waste Manage., 43 (2015) 72–83.
- J. Doublet, C. Francou, M. Poitrenaud, S. Houot, Influence of
bulking agents on organic matter evolution during sewage
sludge composting; consequences on compost organic matter
stability and N availability, Bioresour. Technol., 102 (2011)
1298–1307.
- M. Finstein, F. Miller, J. Hogan, P.F. Strom, Analysis of EPA
guidance on composting sludge. Part I: biological heat generation
and temperature, BioCycle: J Waste Recycl., 28 (1987) 20–26.
- Y. Chen, Sewage sludge aerobic composting technology
research progress, AASRI Proc., 1 (2012) 339–343.
- B. Platt, N. Goldstein, C. Coker, S. Brown, State of Composting
in the US, Institute for Local Self-Reliance, 2014.
- H. Carrère, C. Dumas, A. Battimelli, D. Batstone, J. Delgenès,
J. Steyer, I. Ferrer, Pretreatment methods to improve sludge
anaerobic degradability: a review, J. Hazard. Mater., 183 (2010)
1–15.
- X. Tian, C. Wang, A.P. Trzcinski, L. Lin, W.J. Ng, Interpreting
the synergistic effect in combined ultrasonication–ozonation
sewage sludge pre-treatment, Chemosphere, 140 (2015) 63–71.
- C. Bougrier, C. Albasi, J.-P. Delgenès, H. Carrère, Effect
of ultrasonic, thermal and ozone pre-treatments on waste
activated sludge solubilisation and anaerobic biodegradability,
Chem. Eng. Process. Process Intensif., 45 (2006) 711–718.
- G.U. Semblante, F.I. Hai, D.D. Dionysiou, K. Fukushi, W.E. Price,
L.D. Nghiem, Holistic sludge management through ozonation:
a critical review, J. Environ. Manage., 185 (2017) 79–95.
- C.-J. Cheng, P.A. Hong, C.-F. Lin, Improved solubilization of
activated sludge by ozonation in pressure cycles, Chemosphere,
87 (2012) 637–643.
- L. Chu, J. Wang, B. Wang, X.-H. Xing, S. Yan, X. Sun, B. Jurcik,
Changes in biomass activity and characteristics of activated
sludge exposed to low ozone dose, Chemosphere, 77 (2009)
269–272.
- M. Carballa, G. Manterola, L. Larrea, T. Ternes, F. Omil,
J.M. Lema, Influence of ozone pre-treatment on sludge anaerobic
digestion: removal of pharmaceutical and personal care
products, Chemosphere, 67 (2007) 1444–1452.
- A. Apha, WEF, 2005, Standard Methods for the Examination
of Water and Wastewater, Vol. 21, 2005, pp. 258–259.
- W. Thompson, P. Leege, P. Millner, M. Watson, Test Methods
for the Examination of Composting and Compost, The United
States Composting Council Research and Education Foundation,
The United States Department of Agriculture, 2001.
- A. Jouraiphy, S. Amir, M. El Gharous, J.-C. Revel, M. Hafidi,
Chemical and spectroscopic analysis of organic matter
transformation during composting of sewage sludge and green
plant waste, Int. Biodeterior. Biodegrad., 56 (2005) 101–108.
- D. Kulikowska, Z.M. Gusiatin, Sewage sludge composting in
a two-stage system: carbon and nitrogen transformations and
potential ecological risk assessment, Waste Manage, 38 (2015)
312–320.
- M.L. Jackson, P. Barak, Soil Chemical Analysis: Advanced
Course, UW-Madison Libraries Parallel Press, 2005.
- American Public Health Association, Standard Methods for the
Examination of Water and Wastewater, American Public Health
Association, Washington, D.C., 1995.
- M.D. Krom, Spectrophotometric determination of ammonia:
a study of a modified Berthelot reaction using salicylate and
dichloroisocyanurate, Analyst (Lond), 105 (1980) 305–316.
- APHA, AWWA, Standard methods for the examination of water
and wastewater, American Public Health Association Inc.,
Washington, D.C., 1998.
- A. Konsowa, Decolorization of wastewater containing direct
dye by ozonation in a batch bubble column reactor, Desalination,
158 (2003) 233–240.
- G. Zhang, J. Yang, H. Liu, J. Zhang, Sludge ozonation:
disintegration, supernatant changes and mechanisms,
Bioresour. Technol., 100 (2009) 1505–1509.
- W. Xuejiang, C. Ling, X. Siqing, Z. Jianfu, Changes of Cu, Zn,
and Ni chemical speciation in sewage sludge co-composted
with sodium sulfide and lime, J. Environ. Sci., 20 (2008) 156–160.
- J.B. Carbajo, A.L. Petre, R. Rosal, A. Berná, P. Leton, E. García-Calvo, J.A. Perdigón-Melón, Ozonation as pre-treatment
of activated sludge process of a wastewater containing
benzalkonium chloride and NiO nanoparticles, Chem. Eng. J.,
283 (2016) 740–749.
- K. Park, J. Lee, K. Song, K. Ahn, Ozonolysate of excess sludge as
a carbon source in an enhanced biological phosphorus removal
for low strength wastewater, Bioresour. Technol., 102 (2011)
2462–2467.
- A. Yadav, V. Garg, Industrial wastes and sludges management
by vermicomposting, Rev. Environ. Sci. Biotechnol., 10 (2011)
243–276.
- G. Silvestre, B. Ruiz, M. Fiter, C. Ferrer, J. Berlanga, S. Alonso,
A. Canut, Ozonation as a pre-treatment for anaerobic digestion
of waste-activated sludge: effect of the ozone doses, Ozone Sci.
Eng., 37 (2015) 316–322.
- M. Weemaes, H. Grootaerd, F. Simoens, W. Verstraete,
Anaerobic digestion of ozonized biosolids, Water Res., 34 (2000)
2330–2336.
- J. Pei, H. Yao, H. Wang, D. Shan, Y. Jiang, L. Ma, X. Yu, Effect
of ultrasonic and ozone pre-treatments on pharmaceutical
waste activated sludge’s solubilisation, reduction, anaerobic
biodegradability and acute biological toxicity, Bioresour.
Technol., 192 (2015) 418–423.
- L.-B. Chu, S.-T. Yan, X.-H. Xing, A.-F. Yu, X.-L. Sun, B. Jurcik,
Enhanced sludge solubilization by microbubble ozonation,
Chemosphere, 72 (2008) 205–212.
- N. Soobhany, R. Mohee, V.K. Garg, Comparative assessment
of heavy metals content during the composting and vermicomposting
of municipal solid waste employing Eudrilus
eugeniae, Waste Manage, 39 (2015) 130–145.
- S. Amir, M. Hafidi, G. Merlina, H. Hamdi, A. Jouraiphy,
M. El Gharous, J.-C. Revel, Fate of phthalic acid esters during
composting of both lagooning and activated sludges, Process
Biochem., 40 (2005) 2183–2190.
- J. Zhang, F. Lü, L. Shao, P. He, The use of biochar-amended
composting to improve the humification and degradation of
sewage sludge, Bioresour. Technol., 168 (2014) 252–258.
- S. Amir, M. Hafidi, G. Merlina, J.-C. Revel, Sequential extraction
of heavy metals during composting of sewage sludge,
Chemosphere, 59 (2005) 801–810.
- A.A. Zorpas, D. Arapoglou, K. Panagiotis, Waste paper
and clinoptilolite as a bulking material with dewatered
anaerobically stabilized primary sewage sludge (DASPSS) for
compost production, Waste Manage, 23 (2003) 27–35.
- R. Zbytniewski, B. Buszewski, Characterization of natural
organic matter (NOM) derived from sewage sludge compost.
Part 1: chemical and spectroscopic properties, Bioresour.
Technol., 96 (2005) 471–478.
- Y. Li, W. Li, C. Wu, K. Wang, New insights into the interactions
between carbon dioxide and ammonia emissions during sewage
sludge composting, Bioresour. Technol., 136 (2013) 385–393.
- Z.-z. Zeng, X.-l. Wang, J.-f. Gou, H.-f. Zhang, H.-c. Wang,
Z.-r. Nan, Effects on Ni and Cd speciation in sewage sludge
during composting and co-composting with steel slag, Waste
Manage. Res., 32 (2014) 179–185.
- C. Garcia, T. Hernandez, F. Costa, Characterization of humic
acids from uncomposted and composted sewage sludge by
degradative and non-degradative techniques, Bioresour.
Technol., 41 (1992) 53–57.
- N. Senesi, Composted materials as organic fertilizers, Sci. Total
Environ., 81 (1989) 521–542.
- M. Gómez-Brandón, C. Lazcano, J. Domínguez, The evaluation
of stability and maturity during the composting of cattle
manure, Chemosphere, 70 (2008) 436–444.