References
- L. Appels, J. Baeyens, J. Degrève, R. Dewil, Principles and
potential of the anaerobic digestion of waste-activated sludge,
Prog. Energy Combust. Sci., 34 (2008) 755–781.
- D. Spuhler, UASB Reactor, SSWM (Sustainable Sanitation
and Water Management), Switzerland, 2015.
- A. Mudhoo, S. Kumar, Effects of heavy metals as stress factors
on anaerobic digestion processes and biogas production
from biomass, Int. J. Environ. Sci. Technol., 10 (2013) 1383.
- Y. Chen, J.J. Cheng, K.S. Creamer, Inhibition of anaerobic
digestion
process: a review, Bioresour. Technol., 10 (2008)
4044–4064.
- L. Altaş, Inhibitory effect of heavy metals on methane-producing
anaerobic granular sludge, J. Hazard. Mater., 162 (2009)
1551–1556.
- J.L. Chen, R. Ortiz, T.W.J. Steele, D.C. Stuckey, Toxicants inhibiting
anaerobic digestion: a review, Biotechnol. Adv., 32 (2014)
1523–1534.
- R. Selling, T. Hakansson, L. Bjornsson, Two-stage anaerobic
digestion enables heavy metal removal, Water Sci. Technol.,
57 (2008) 553–558.
- H. Cadillo-Quiroz, S. Bräuer, E. Yashiro, C. Sun, J. Yavitt,
S. Zinder, Vertical profiles of methanogenesis and methanogens
in two contrasting acidic peatlands in central New York State,
USA, Environ. Microbiol., 8 (2006) 1428–1440.
- T. Dokulilová, T. Koutný, T. Vítěz, Effect of zinc and copper
on anaerobic stabilization of sewage sludge, Acta Univ. Agric.
Silvic. Mendelianae Brun., 66 (2018) 357–363.
- B.A. Parra-Orobio, P. Torres-Lozada, L.F. Marmolejo-Rebellón,
Influence of the mixing ratio on the anaerobic co-digestion
of municipal biowaste with domestic wastewater sludge on
methane production, DYNA, 199 (2016) 86–93.
- W.C. Kuo-Dahab, P. Amirhor, M. Zona, D. Duest, C. Park,
Investigating anaerobic co-digestion of sewage sludge and
food waste using a bench-scale pilot study, Water Environ. Fed.,
509 (2014) 6291–6311.
- W.R. Eugene, B.B. Rodger, D.E. Andrew, S.C. Lenore, Standard
methods for the examination of water and wastewater, 22nd
ed., American Public Health Association (APHA), the American
Water Works Association (AWWA), and the Water Environment
Federation (WEF), 2012.
- Y.H. Feng, Y.B. Zhang, X. Quan, S. Chen, Enhanced anaerobic
digestion of waste activated sludge digestion by the addition
of zero valent iron, Water Res., 52 (2014) 242–250.
- D. Bolzonella, P. Pavan, M. Zanette, F. Cecchi, Two-phase
anaerobic digestion of waste activated sludge: effect of an
extreme thermophilic prefermentation, Ind. Eng. Chem. Res.,
46 (2007) 6650–6655.
- G.M. Figueroa-Torres, M.T. Certucha-Barragán, F.J. Almendariz-
Tapia, O. Monge-Amaya, E. Acedo-Félix, M.I. Pech-Canul,
A.L. Leal-Cruz, C.I. Villa Velázquez-Mendoza, Effect of copper
and iron on acidogenic biomass in an anaerobic packed bed
reactor, Adv. Biosci. Biotechnol., 5 (2014) 564–571.
- M. Sarioglu, S. Akkoyun, T. Bisgin, Inhibition effects of heavy
metals (copper, nickel, zinc, lead) on anaerobic sludge, Desal.
Wat. Treat., 23 (2010) 55–60.
- I.D. Barceló-Quintal, M.L. Salazar-Peláez, J. García-Albortante,
M.T. Garza-González, Performance of an UASB reactor at labscale
treating domestic wastewater with low concentrations
of copper, Br. J. Appl. Sci. Technol., 7 (2015) 456.
- L. Brunn, C. Dornack, B. Bilitewski, Application of laboratory
scale experiments to industrial scale in case of anaerobic waste
treatment, Fresenius Environ. Bull., 18 (2009) 196–203.
- H.H.P. Fang, H.H. Hui, Effect of heavy metals on the methanogenic
activity of starch-degrading granules, Biotechnol. Lett.,
16 (1994) 1091–1096.
- P. Chongrak, Organic Waste Recycling, Wiley, UK, 1996.
- B. Bilitewski, G. Haerdtle, K. Marek, Waste Management,
Springer-Verlag, Berlin Heidelberg, 1994.