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References
Оглавление1 American Public Health Association, American Water Works Association, Water Environment Federation. (2017). Standard Methods for the Examination of Water and Wastewater, 23e. Baltimore, MD: American Public Health Association, American Water Works Association, Water Environment Federation.
2 Anderson, D.M., Cembella, A.D. and Hallegraeff, G.M. (2012). Progress in understanding harmful algal blooms: paradigm shifts and new technologies for research, monitoring, and management. Annual Review of Marine Science 4: 143–176.
3 Authman, M.M. (2015). Use of fish as bio‐indicator of the effects of heavy metals pollution. Journal of Aquaculture Research and Development 6(4). doi:10.4172/2155‐9546.1000328.
4 Bartucca, M., Mimmo, T., Cesco, S. et al. (2016). Nitrate removal from polluted water by using vegetated floating system. Science of the Total Environment 542: 803–808.
5 Clean Water Team. (2002). Electrical Conductivity/Salinity Fact Sheet. Fact Sheet 3.1.3.0. Clean Water Team Guidance Compendium for Watershed Monitoring and Assessment State Water Resources Control Board, Version 2.0. Sacramento, CA: California State Water Resources Control Board.
6 Clements, J.C. and Chopin, T. (2017). Ocean acidification and marine aquaculture in North America: potential impacts and mitigation strategies. Reviews in Aquaculture 9: 326–341.
7 Dorantes‐Aranda, J.J., Seger, A., Mardones, J.I. et al. (2015). Progress in understanding algal bloom‐mediated fish kills: the role of superoxide radicals, phycotoxins and fatty acids. PLOS One 10(7): e0133549.
8 Francis‐Floyd, R. (2003). Sanitation Practices for Aquaculture Facilities. VM87. Gainsville, FL: Florida Cooperative Extension Service, IFAS, University of Florida.
9 Fulton, M., Key, P., and Delorenzo, M. (2013). Insecticide toxicity in fish. Fish Physiology 33: 309–368.
10 Hallegraeff, G., Dorantes Aranda, J.J., Mardones, J. et al. (2017). Review of progress in our understanding of fish‐killing microalgae: implications for management and mitigation. In: Marine and Fresh‐Water Harmful Algae. Proceedings of the 17th International Conference on Harmful Algae. International Society for the Study of Harmful Algae and Intergovernmental Oceanographic Commission of UNESCO 2017. (ed. L.A.O. Proença and G.M. Hallegraeff), 148–153. ISBN 9788799082766 (2017) (eds). Helsinki: International Society for the Study of Harmful Algae.
11 Heuer, R.M., and Grosell, M. (2014). Physiological impacts of elevated carbon dioxide and ocean acidification on fish. American Journal of Physiology‐Regulatory, Integrative and Comparative Physiology 307: R1061–R1084.
12 Hostovsky, M., Blahova, J., Plhalova, L. et al. (2014). Effects of the exposure of fish to triazine herbicides. Neuro Endocrinology Letters 35(Suppl 2): 3–25.
13 Jensen, F.B. (2003). Nitrite disrupts multiple physiological functions in aquatic animals. Comparative Biochemistry and Physiology Part A Molecular and Integrative Physiology 135: 9–24.
14 Kennedy, C. (2011). The toxicology of metals in fishes. In: Encyclopedia of Fish Physiology: From gemone to environment. (ed. A.P. Farrell), 2061–2068. London: Academic Press.
15 Kroupova, H., Machova, J. and Svobodova, Z. (2005). Nitrite influence on fish: a review. Veterinarni Medicina – UZPI (Czech Republic) 50: 461–471.
16 Landsberg, J.H. (2002). The effects of harmful algal blooms on aquatic organisms, Reviews in Fisheries Science 10: 113–390.
17 Malbrouck, C. and Kestemont, P. (2006). Effects of microcystins on fish. Environmental Toxicology and Chemistry 25: 72–86.
18 Miller, R.L., Bradford, W.L. and Peters, N.E. (1988). Specific Conductance: Theoretical considerations and application to analytical quality control. US Geological Survey Water‐Supply Paper 2311. Denver, CO: United States Government Printing Office.
19 Myers, G.S. (1949). Salt‐tolerance of Fresh‐water Fish Groups in Relation to Zoogeographical Problems. Early Classics in Biogeography, Distribution and Diversity Studies to 1950. http://people.wku.edu/charles.smith/biogeog/MYER1949.htm (accessed 14 June 2021).
20 Nelson, N. and Siegel, D. (2014). Chromophoric dissolved organic matter (CDOM) in the global ocean. [Presentation]. http://www.ioccg.org/training/SLS‐2014/Siegel_CDOM_Nelson.pdf (Accessed 19 April 2021).
21 Panakorn, S. (2016). H2S toxicity: the silent killer, Aquaculture‐Asia Pacific, 12(2): 14.
22 Roberts, V.A., Vigar, M., Backer, L. et al. (2020). Surveillance for harmful algal bloom events and associated human and animal illnesses: one health harmful algal bloom system, United States, 2016–2018. MMWR Morb Mortal Wkly Rep 2020; 69: 1889–1894.
23 Sabra, F. and Mehana, S.D. (2015). Pesticides toxicity in fish with particular reference to insecticides. Asian Journal of Agriculture and Food Sciences. 3: 40–60.
24 Scannell, P.W. and Jacobs, L.L. (2001). Effects of Total Dissolved Solids on Aquatic Organisms: A literature review. Alaska Department of Fish and Game, Division of Habitat and Restoration. Technical Report 01‐06.
25 Sfakianakis, D., Renieri, E., Kentouri, M. et al. (2015). Effect of heavy metals on fish larvae deformities: a review. Environmental Research 137: 246–255.
26 Sommer, K., and Spitzer, P. (2004). Session H: Ocean Salinity. Plenary lecture presented at the WMO‐BIPM WS Geneva 30 March–1 April.
27 Soni, R. and Verma, S.K. (2018). Acute toxicity and behavioral responses in Clarias batrachus (Linnaeus) exposed to herbicide pretilachlor. Heliyon, 4(12): e01090.
28 Stamper, M.A. (2015). Microbes and the Aquarium. Proceedings of the International Association for Aquatic Animal Medicine Conference, April 6–11, 2015, Chicago, IL.
29 Stehr, C.M., Linbo, T.L., Baldwin, D.H. et al. (2009). Evaluating the effects of forestry herbicides on fish development using rapid phenotypic screens. North American Journal of Fisheries Management 29: 975–984.
30 Svendsen, E., Dahle, S.W., Hagemann, A. et al. (2017). Effect of ultrasonic cavitation on small and large organisms for water disinfection during fish transport. Aquaculture Research 49: 1166–1175.
31 Svobodova, Z. and Kolarova, J. (2004). A review of the diseases and contaminant related mortalities of tench (Tinca tinca L.). Veterinarni Medicina 49: 19–34.
32 Svobodova, Z., Machova, J., Poleszczuk, G. et al. (2005). Nitrite poisoning of fish in aquaculture facilities with water‐recirculating systems: three case studies. Acta Veterinaria Brno 74: 129–137.
33 Tepper, J.M. (2000). A phytoremedial device for koi ponds. IAAAM 2000: Proceedings of the International Association for Aquatic Animal Medicine Conference, Spring 2000, New Orleans, LA. https://www.vin.com/apputil/content/defaultadv1.aspx?pId=11125&meta=generic&id=3980412 (accessed 19 April 2021).
34 Tepper, J.M. (2019). Water biology for healthy freshwater aquasystems. Proceedings of the World Small Animal Veterinary Association Congress Proceedings, 2019 July 16–19, 2019, Toronto, Canada. https://www.vin.com/apputil/content/defaultadv1.aspx?pId=24437&catId=137405&id=9382753&ind=301&objTypeID=17 (accessed 19 April 2021).
35 Tillitt, D.E., Papoulias, D M., Whyte, J.J. et al. (2014). Atrazine Reduces Reproduction in Fathead Minnow (Pimephales promelas): Raw data report. Data Series 805. Reston, VA: US Geological Survey.
36 Timmons, M.B., Guerdat, T. and Vinci, B.J. (2018). Recirculating Aquaculture. 4e. New York, NY: Ithaca Publishing Company.
37 Tucker, C.S. (1984). Carbon dioxide. For Fish Farmers. Mississippi Cooperative Extension Service Newsletter 84(2).
38 Turley C., Blackford J.C., Widdicombe, W. et al. (2006). Reviewing the impact of increased atmospheric CO2 on oceanic pH and the marine ecosystem. In: Avoiding Dangerous Climate Change. (ed. H.J. Schellnhuber, W. Cramer, N. Nakicenovic et al.), 65–69. Cambridge University Press.
39 US Environmental Protection Agency. (2012). 5.9 Conductivity. In Water: Monitoring and Assessment. https://www.epa.gov/national‐aquatic‐resource‐surveys/indicators‐conductivity (accessed 14 June 2021).
40 Wagner, R.J., BoulgerJr., R.W., Oblinger, C.J. et al. (2006). Guidelines and Standard Procedures for Continuous Water‐Quality Monitors: Station operation, record computation, and data reporting. Techniques and Methods 1‐D3. Reston, VA: US Geological Survey.
41 Wessel, N., Martin, S., Badou, A. et al. (2018). Effect of CO2‐induced ocean acidification on the early development and shell mineralization of the European abalone (Haliotis tuberculata). Journal of Experimental Marine Biology and Ecology 508: 52–63.
42 Wildgoose, W. (ed.) (2001). BSAVA Manual of Ornamental Fish, 2e. Chichester, UK: Wiley.
43 Wood, S.A., Puddick, J., Borges, H. et al. (2015). Potential effects of climate change on cyanobacterial toxin production. In: Climate Change and Marine and Freshwater Toxins (ed. L.M. Botana, C. Louzao and N. Vilariño), pp. 155–180. Berlin: De Gruyter.