References
- Nanosafety in Europe 2015–2025: Towards Safe and Sustainable
Nanomaterials and Nanotechnology Innovations.
- M. Madeła, E. Neczaj, M. Worwąg, A. Grosser, Environmental
hazards of nanoparticles, Chem. Ind., 94 (2015) 2138–2141
(In Polish).
- E. Bae, H.J. Park, J. Lee, Y. Kim, J. Yoon, K. Park, J. Yi, Bacterial
cytotoxicity of the silver nanoparticle related to physicochemical
metrics and agglomeration properties, Environ. Toxicol. Chem.,
29 (2010) 2154–2160.
- Y. Liu, Z. Yan, J. Xia, K. Wang, X. Ling, B. Yan, Potential toxicity
in Crucian carp following exposure to metallic nanoparticles of
copper, chromium, and their mixtures: a comparative study,
Pol. J. Environ. Stud., 26 (2017) 2085–2094.
- G. Xia, T. Liu, Z. Wang, Y. Hou, L. Dong, J. Zhu, J. Qi, The effect
of silver nanoparticles on zebrafish embryonic development
and toxicology, Artif. Cell Nanomed. Biotechnol., 44 (2016)
1116–1121.
- M. Sajid, M. Ilyas, C. Basheer, M. Tariq, M. Daud, N. Baig, F.
Shehzad, Impact of nanoparticles on human and environment:
review of toxicity factors, exposures, control strategies, and
future prospects, Environ. Sci. Pollut. Res. Int., 22 (2015)
4122–4143.
- C.S. Yah, G.S. Simate, S.E. Iyuke, Nanoparticles toxicity and
their routes of exposures, Pak. J. Pharm. Sci., 25 (2012) 477–491.
- M. Madeła, E. Neczaj, A. Grosser, Fate of engineered
nanoparticles in wastewater treatment plant, Eng. Environ.
Protect., 19 (2016) 577–587.
- T.Y. Sun, F. Gottschalk, K. Hungerbühler, B. Nowack,
Comprehensive probabilistic modelling of environmental
emissions of engineered nanomaterials, Environ. Pollut.,
185 (2014) 69–76.
- G. Applerot, J. Lellouche, A. Lipovsky, Y. Nitzan, R. Lubart,
A. Gedanken, E. Banin, Understanding the antibacterial
mechanism of CuO nanoparticles: revealing the route of
induced oxidative stress, Small, 8 (2012) 3326–3337.
- J. Zhao, Z. Wang, Y. Dai, B. Xing, Mitigation of CuO nanoparticle
induced bacterial membrane damage by dissolved organic
matter, Water Res., 47 (2013) 4169–4178.
- F. Gottschalk, T. Sonderer, R.W. Scholz, B. Nowack, Modeled
environmental concentrations of engineered nanomaterials
(TiO2, ZnO, Ag, CNT, fullerenes) for different regions, Environ.
Sci. Technol., 43 (2009) 9216–9222.
- Z. Sheng, Y. Liu, Effects of silver nanoparticles on wastewater
biofilms, Water Res., 45 (2011) 6039–6050.
- G.A. Martinez-Castanon, N. Nino-Martinez, F. Martinez-Gutierrez, J.R. Martinez-Mendoza, F. Ruiz, Synthesis and
antibacterial activity of silver nanoparticles with different sizes,
J. Nanopart. Res., 10 (2008) 1343–1348.
- S.K. Brar, M. Verma, R.D. Tyagi, R.Y. Surampalli, Engineered
nanoparticles in wastewater and wastewater sludge – evidence
and impacts, Waste Manage., 30 (2010) 504–520.
- K.L. Garner, A.A. Keller, Emerging patterns for engineered
nanomaterials in the environment: a review of fate and toxicity
studies, J. Nanopart. Res., 16 (2014) 1–28.
- L. Miao, C. Wang, J. Hou, P. Wang, Y. Ao, Y. Li, G. You,
Aggregation and removal of copper oxide (CuO) nanoparticles
in wastewater environment and their effects on the microbial
activities of wastewater biofilms, Bioresour. Technol., 216 (2016)
537–544.
- M.A. Kiser, H. Ryu, H. Jang, K. Hristovski, P. Westerhoff,
Biosorption of nanoparticles to heterotrophic wastewater
biomass, Water Res., 44 (2010) 4105–4114.
- Q. Xu, S. Li, Y. Wan, S. Wang, B. Ma, Z. She, J. Dong, Impacts of
silver nanoparticles on performance and microbial community
and enzymatic activity of a sequencing batch reactor, J. Environ.
Manage., 204 (2017) 667–673.
- Z. Zhang, P. Gao, M. Li, J. Cheng, W. Liu, Y. Feng, Influence
of silver nanoparticles on nutrient removal and microbial
communities in SBR process after long-term exposure, Sci. Total
Environ., 569 (2016) 234–243.
- J. Zhang, Q. Dong, Y. Liu, X. Zhou, H. Shi, Response to shock
load of engineered nanoparticles in an activated sludge
treatment system: insight into microbial community succession,
Chemosphere, 144 (2016) 1837–1844.
- X.H. Zhou, B.C. Huang, T. Zhou, Y.C. Liu, H.C. Shi, Aggregation
behavior of engineered nanoparticles and their impact on
activated sludge in wastewater treatment, Chemosphere,
119 (2015) 568–576.
- R. Ganesh, J. Smeraldi, T. Hosseini, L. Khatib, B.H. Olson,
D. Rosso, Evaluation of nanocopper removal and toxicity
in municipal wastewaters, Environ. Sci. Technol., 44 (2010)
7808–7813.
- L. Gu, Q. Li, X. Quan, Y. Cen, X. Jiang, Comparison of nanosilver
removal by flocculent and granular sludge and short-and longterm
inhibition impacts, Water Res., 58 (2014) 62–70.
- Standards, PN-EN 12879, Water and Sewage. Special Sludge
Tests. Determination of Water Content, Dry Matter, Organic
Matter and Mineral Substances in Sewage Sludge, Publishing
Standards, Warsaw (In Polish).
- Standards, PN-91 C-04540/05, Water and Sewage. PH, General
and Mineral Acidity, and Alkalinity in Urban Sewage Sludge,
Publishing Standards, Warsaw (In Polish).
- P. Madoni, A Sludge Biotic Index (SBI) for the evaluation of the
biological performance of activated sludge plants based on the
microfauna analysis, Water Res., 28 (1994) 67–75.
- F. Fiałkowska, J. Fyda, A. Pajdak-Stos, K. Wiackowski, Activated
Sludge - Biology and Microscopic Analysis, Publishing House
Seidel-Przywecki, Piaseczno, 2010 (In Polish).
- G. Qiu, K. Wirianto, Y. Sun, Y.P. Ting, Effect of silver
nanoparticles on system performance and microbial
community dynamics in a sequencing batch reactor, J. Cleaner
Prod.,130 (2016) 137–142.
- X. Quan, Y. Cen, F. Lu, L. Gu, J. Ma, Response of aerobic
granular sludge to the long-term presence to nanosilver
in sequencing batch reactors: reactor performance, sludge
property, microbial activity and community, Sci. Total Environ.,
506 (2015) 226–233.
- S. Wang, Z. Li, M. Gao, Z. She, B. Ma, L. Guo, F. Gao, Longterm
effects of cupric oxide nanoparticles (CuO NPs) on the
performance, microbial community and enzymatic activity
of activated sludge in a sequencing batch reactor, J. Environ.
Manage., 187 (2017) 330–339.
- A.L. Amaral, M. Motta, M.N. Pons, H. Vivier, E.C. Ferreira,
Survey of a wastewater treatment plant microfauna by image
analysis, Int. Chem. Eng., 8 (2001) 1137–1144.
- C. Zhang, Z. Liang, Z. Hu, Bacterial response to a continuous
long-term exposure of silver nanoparticles at sub-ppm silver
concentrations in a membrane bioreactor activated sludge
system, Water Res., 50 (2010) 350–358.
- R. Kaegi, A. Voegelin, B. Sinnet, S. Zuleeg, H. Hagendorfer,
M. Burkhardt, H. Siegrist, Behavior of metallic silver
nanoparticles in a pilot wastewater treatment plant, Environ.
Sci. Technol., 45 (2011) 3902–3908.
- H.J. Park, H.Y. Kim, S. Cha, C.H. Ahn, J. Roh, S. Park,
J. Yoon, Removal characteristics of engineered nanoparticles by
activated sludge, Chemosphere, 92 (2013) 524–528.
- Regulation of the Minister for the Environment of 18 November
2014 on the Conditions to be Met as Regards the Release of
Sewage into the Water or onto the Land and on the Substances
That are Particularly Harmful to the Aquatic Environment
(In Polish).