Accesso libero

Study of the Effect of Chemical Pollution with Coal-Fired Power Plant on the Fish of Lake Kenon (Trans-Baikal Territory, Russia)

INFORMAZIONI SU QUESTO ARTICOLO

Cita

Afshan S., Ali S., Ameen S., Farid M., Bharwana A.S., Hannan F., Ahmad R., 2014. Effect of different heavy metal pollution on fish. Research Journal of Chemical and Environmental Sciences 2(1): 35–40. AfshanS. AliS. AmeenS. FaridM. BharwanaA.S. HannanF. AhmadR. 2014 Effect of different heavy metal pollution on fish Research Journal of Chemical and Environmental Sciences 2 1 35 40 Search in Google Scholar

Alekseenko V.A., Alekseenko L.P., 2003. Geochemical barriers (in Russian). Logos, Moscow: 137. AlekseenkoV.A. AlekseenkoL.P. 2003 Geochemical barriers (in Russian) Logos Moscow 137 Search in Google Scholar

Alimov A.F., 2000. On the theory of water ecosystem operation (in Russian). Nauka, St Petersburg: 147. AlimovA.F. 2000 On the theory of water ecosystem operation (in Russian) Nauka St Petersburg 147 Search in Google Scholar

Alimov A.F., Bogatov V.V, Golubkov S.M., 2013. Production hydrobiology (in Russian). Nauka, St Petersburg: 339. AlimovA.F. BogatovV.V GolubkovS.M. 2013 Production hydrobiology (in Russian) Nauka St Petersburg 339 Search in Google Scholar

Ayllon F., Garcia-Vazquez E., 2000. Induction of micronuclei and other nuclear abnormalities in European minnow Phoxinus phoxinus and mollie Poecilia latipinna: An assessment of the fish micronucleus test. Mutation Research/Genetic Toxicology and Environmental Mutagenesis 467(2): 177–186. DOI: 10.1016/S1383-5718(00)00033-4. AyllonF. Garcia-VazquezE. 2000 Induction of micronuclei and other nuclear abnormalities in European minnow Phoxinus phoxinus and mollie Poecilia latipinna: An assessment of the fish micronucleus test Mutation Research/Genetic Toxicology and Environmental Mutagenesis 467 2 177 186 10.1016/S1383-5718(00)00033-4 Open DOISearch in Google Scholar

Bazarova B.B., 2013. Chemical element contents in charaphyta of the Lake Kenon (the Transbaikal region) (in Russian). Water: Chemistry and Ecology 11(65): 54–60. BazarovaB.B. 2013 Chemical element contents in charaphyta of the Lake Kenon (the Transbaikal region) (in Russian) Water: Chemistry and Ecology 11 65 54 60 Search in Google Scholar

Bury N.R., Walker P.A., Glover C.N., 2003. Nutritive metal uptake in teleost fish. Journal of Experimental Biology 206: 11–23. DOI: 10.1242/jeb.00068. BuryN.R. WalkerP.A. GloverC.N. 2003 Nutritive metal uptake in teleost fish Journal of Experimental Biology 206 11 23 10.1242/jeb.00068 Open DOISearch in Google Scholar

Cardwell A.J., Hawker D.W., Greenway M., 2002. Metal accumulation in aquatic macrophytes from southeast Queensland, Australia. Chemosphere 48(7): 653–663. DOI: 10.1016/S0045-6535(02)00164-9. CardwellA.J. HawkerD.W. GreenwayM. 2002 Metal accumulation in aquatic macrophytes from southeast Queensland, Australia Chemosphere 48 7 653 663 10.1016/S0045-6535(02)00164-9 Open DOISearch in Google Scholar

Chale F.M.M., 2002. Trace metal concentration in water, sediments and fish tissues from Lake Tanganyika. Science of Total Environment 299(1–3): 155–161. DOI: 10.1016/s0048-9697(02)00252-8. ChaleF.M.M. 2002 Trace metal concentration in water, sediments and fish tissues from Lake Tanganyika Science of Total Environment 299 1–3 155 161 10.1016/s0048-9697(02)00252-8 Open DOISearch in Google Scholar

Chanchal V., Sangeeta M., Hussain A., 2016. Heavy metal contamination of groundwater due to fly ash disposal of coal-fired thermal power plant, Parichha, Jhansi, India. Cogent Engineering 3(1): 1179243. DOI: 10.1080/23311916.2016.1179243. ChanchalV. SangeetaM. HussainA. 2016 Heavy metal contamination of groundwater due to fly ash disposal of coal-fired thermal power plant, Parichha, Jhansi, India Cogent Engineering 3 1 1179243. 10.1080/23311916.2016.1179243 Open DOISearch in Google Scholar

Craig J.F., 1978. A study of the food and feeding of perch, Perca fluviatilis L., in Windermere. Freshwater Biology 8: 59–68. DOI: 10.1111/j.1365-2427.1978.tb01426.x. CraigJ.F. 1978 A study of the food and feeding of perch, Perca fluviatilis L., in Windermere Freshwater Biology 8 59 68 10.1111/j.1365-2427.1978.tb01426.x Open DOISearch in Google Scholar

Czarnowska L., Frangopoulos C.A., 2012. Dispersion of pollutants, environmental externalities due to a pulverized coal power plant and their effect on the cost of electricity. Energy 41(1): 212–219. DOI: 10.1016/j.energy.2011.08.004. CzarnowskaL. FrangopoulosC.A. 2012 Dispersion of pollutants, environmental externalities due to a pulverized coal power plant and their effect on the cost of electricity Energy 41 1 212 219 10.1016/j.energy.2011.08.004 Open DOISearch in Google Scholar

David I.G., Matache M.L., Tudorache A., Chisamera G., Rozylowicz L., Radu G.L., 2012. Food chain biomagnification of heavy metals in samples from the lower Prut floodplain natural park. Environmental Engineering and Management Journal 11(1): 69–73. DavidI.G. MatacheM.L. TudoracheA. ChisameraG. RozylowiczL. RaduG.L. 2012 Food chain biomagnification of heavy metals in samples from the lower Prut floodplain natural park Environmental Engineering and Management Journal 11 1 69 73 10.30638/eemj.2012.010 Search in Google Scholar

Dobrovolsky V.V., 2003. Fundamentals of biogeochemistry. Publishing Center “Academy”, Moscow: 400. DobrovolskyV.V. 2003 Fundamentals of biogeochemistry Publishing Center “Academy” Moscow 400 Search in Google Scholar

Dörner H., Berg S., Jacobsen L., Hülsmann S., Brojerg M., Wagner A., 2003. The feeding behaviour of large perch Perca fluviatilis (L.) in relation to food availability: A comparative study. Hydrobiologia 506(1–3): 427–434. DOI: 10.1023/B:HYDR.0000008608.22869.99. DörnerH. BergS. JacobsenL. HülsmannS. BrojergM. WagnerA. 2003 The feeding behaviour of large perch Perca fluviatilis (L.) in relation to food availability: A comparative study Hydrobiologia 506 1–3 427 434 10.1023/B:HYDR.0000008608.22869.99 Open DOISearch in Google Scholar

Duan D., Ran Y., Cheng H., Chen J., Wan G., 2014. Contamination trends of trace metals and coupling with algal productivity in sediment cores in Pearl River Delta, South China. Chemosphere 103: 35–43. DOI: 10.1016/j.chemosphere.2013.11.011. DuanD. RanY. ChengH. ChenJ. WanG. 2014 Contamination trends of trace metals and coupling with algal productivity in sediment cores in Pearl River Delta, South China Chemosphere 103 35 43 10.1016/j.chemosphere.2013.11.011 24290302 Open DOISearch in Google Scholar

Ebrahimpour M., Pourkhabbaz A., Baramaki R. et al., 2011. Bioaccumulation of heavy metals in freshwater fish species, Anzali, Iran. Bulletin of Environmental Contamination and Toxicology 87(4): 386–392. DOI: 10.1007/s00128-011-0376-y. EbrahimpourM. PourkhabbazA. BaramakiR. 2011 Bioaccumulation of heavy metals in freshwater fish species, Anzali, Iran Bulletin of Environmental Contamination and Toxicology 87 4 386 392 10.1007/s00128-011-0376-y Open DOISearch in Google Scholar

EPA (Environmental Protection Agency), 2002. Quality Criteria for Water. Washington, 440(9): 76–123. Online: www.epa.gov/sdwa/drinking-water-regulations-and-contaminants (accessed 23 December 2020). EPA (Environmental Protection Agency) 2002 Quality Criteria for Water. Washington 440 9 76 123 Online: www.epa.gov/sdwa/drinking-water-regulations-and-contaminants (accessed 23 December 2020). Search in Google Scholar

Ergene S., Cavaş T., Celik A., Köleli N., Kaya F., Karahan A., 2007. Monitoring of nuclear abnormalities in peripheral erythrocytes of three fish species from the Goksu Delta (Turkey): Genotoxic damage in relation to water pollution. Ecotoxicology 16(4): 385–391. DOI: 10.1007/s10646-007-0142-4. ErgeneS. CavaşT. CelikA. KöleliN. KayaF. KarahanA. 2007 Monitoring of nuclear abnormalities in peripheral erythrocytes of three fish species from the Goksu Delta (Turkey): Genotoxic damage in relation to water pollution Ecotoxicology 16 4 385 391 10.1007/s10646-007-0142-4 Open DOISearch in Google Scholar

Friant S.L., 1979. Trace metal concentrations in selected biological, sediment and water column samples in a northern New England river. Water, Air and Soil Pollution. 11: 455–465. DOI: 10.1007/BF00283437. FriantS.L. 1979 Trace metal concentrations in selected biological, sediment and water column samples in a northern New England river Water, Air and Soil Pollution 11 455 465 10.1007/BF00283437 Open DOISearch in Google Scholar

Gileva T.A., Zinivjev E.A., Kostitsyna N.V., 2014. Heavy metals content in organs and tissues of fish inhabiting different type reservoirs of the Perm Region (in Russian). Agrarian Bulletin of the Urals 8(126): 73–77. GilevaT.A. ZinivjevE.A. KostitsynaN.V. 2014 Heavy metals content in organs and tissues of fish inhabiting different type reservoirs of the Perm Region (in Russian) Agrarian Bulletin of the Urals 8 126 73 77 Search in Google Scholar

Gorlacheva E.P., Afonin A.V., 2017. Silver Crucian Carp Carassius Auratus Gibelio (Bloch, 1782) as an indicator of ecosystem health in Lake Kenon (in Russian). Scholarly Notes of Transbaikal State University 12(1): 6–12. GorlachevaE.P. AfoninA.V. 2017 Silver Crucian Carp Carassius Auratus Gibelio (Bloch, 1782) as an indicator of ecosystem health in Lake Kenon (in Russian) Scholarly Notes of Transbaikal State University 12 1 6 12 10.18411/2500-1701-2017-12-1-6-12 Search in Google Scholar

Hashim R., Song T.H., Muslim N.Z.M., Yen T.P., 2014. Determination of heavy metal levels in fishes from the lower reach of the Kelantan River, Kelantan, Malaysia. Tropical Life Sciences Research 25(2): 21–39. HashimR. SongT.H. MuslimN.Z.M. YenT.P. 2014 Determination of heavy metal levels in fishes from the lower reach of the Kelantan River, Kelantan, Malaysia Tropical Life Sciences Research 25 2 21 39 Search in Google Scholar

Heath A.G., 2002. Water Pollution and Fish Physiology. Lewis Publishers: Boca Raton, Florida. HeathA.G. 2002 Water Pollution and Fish Physiology Lewis Publishers Boca Raton, Florida Search in Google Scholar

Heaven S., Ilyushenko M.A., Tanton T.W., Ullrich S.M., Yanin E.P., 2000. Mercury in the River Nura and its flood-plain, Central Kazakhstan: I. River sediments and water. Science of the Total Environment 260(1–3): 35–44. DOI: 10.1016/S0048-9697(00)00540-4. HeavenS. IlyushenkoM.A. TantonT.W. UllrichS.M. YaninE.P. 2000 Mercury in the River Nura and its flood-plain, Central Kazakhstan: I. River sediments and water Science of the Total Environment 260 1–3 35 44 10.1016/S0048-9697(00)00540-4 Open DOISearch in Google Scholar

Huang X., Hu J., Qin F., Quan W., Cao R., Fan M., Wu X., 2017. Heavy metal pollution and ecological assessment around the Jinsha coal-fired power plant (China). International Journal of Environmental Research and Public Health 14(12): 1589. DOI: 10.3390/ijerph14121589. HuangX. HuJ. QinF. QuanW. CaoR. FanM. WuX. 2017 Heavy metal pollution and ecological assessment around the Jinsha coal-fired power plant (China) International Journal of Environmental Research and Public Health 14 12 1589 10.3390/ijerph14121589 575100629258250 Open DOISearch in Google Scholar

Itigilova M.Ts., Chechel A.P., Zamana L.V. et al., 1998. Ecology of an inner-city water body (in Russian). Publishing House SB RAS, Novosibirsk: 237. ItigilovaM.Ts. ChechelA.P. ZamanaL.V. 1998 Ecology of an inner-city water body (in Russian) Publishing House SB RAS Novosibirsk 237 Search in Google Scholar

Jezierska B., Witeska M., 2001. Summary of metal-induced disturbances in fish organism. In: Metal Toxicity to Fish. Wydawnictvo Akademii Podlaskej, Siedlce: 214–243. JezierskaB. WiteskaM. 2001 Summary of metal-induced disturbances in fish organism In: Metal Toxicity to Fish Wydawnictvo Akademii Podlaskej Siedlce 214 243 Search in Google Scholar

Kabata-Pendias A., Mukherjee A.B., 2007. Trace elements from soil to human. Springer, Berlin: 550. Kabata-PendiasA. MukherjeeA.B. 2007 Trace elements from soil to human Springer Berlin 550 10.1007/978-3-540-32714-1 Search in Google Scholar

Kolker A., Senior C.L., Quick J.C., 2006. Mercury in coal and the impact of coal quality on mercury emissions from combustion systems. Applied Geochemistry 21(11): 1821–1836. DOI: 10.1016/j.apgeochem.2006.08.001. KolkerA. SeniorC.L. QuickJ.C. 2006 Mercury in coal and the impact of coal quality on mercury emissions from combustion systems Applied Geochemistry 21 11 1821 1836 10.1016/j.apgeochem.2006.08.001 Open DOISearch in Google Scholar

Komov V.T., Stepanova I.K., Gremyachikh V.A., 2004. Mercury content in fish muscles from water bodies of the North-West of Russia: Causes of intensive accumulation and assessment of the negative effect on human health. In: B.A.Flerov (ed), Actual problems of aquatic toxicology. IBI RAS, Borok: 99–123. KomovV.T. StepanovaI.K. GremyachikhV.A. 2004 Mercury content in fish muscles from water bodies of the North-West of Russia: Causes of intensive accumulation and assessment of the negative effect on human health In: FlerovB.A. (ed), Actual problems of aquatic toxicology IBI RAS Borok 99 123 Search in Google Scholar

Mataphonov P.V., Shoydokov A.B., 2020. Toxic pollution assessment of Chita TPP-1 cooling reservoir by applying the method of head capsule morphological deformations in Chironomid larvae. Amurian Zoological Journal 12(2): 201–210. DOI: 10.33910/2686-9519-2020-12-2-201-210. MataphonovP.V. ShoydokovA.B. 2020 Toxic pollution assessment of Chita TPP-1 cooling reservoir by applying the method of head capsule morphological deformations in Chironomid larvae Amurian Zoological Journal 12 2 201 210 10.33910/2686-9519-2020-12-2-201-210 Open DOISearch in Google Scholar

McConnell J.R., Edwards R., 2008. Coal burning leaves toxic heavy metal legacy in the Arctic. PNAS 105(34): 12140–12144. DOI: 10.1073/pnas.0803564105. McConnellJ.R. EdwardsR. 2008 Coal burning leaves toxic heavy metal legacy in the Arctic PNAS 105 34 12140 12144 10.1073/pnas.0803564105 252916518711138 Open DOISearch in Google Scholar

Moiseenko T.I., Kudryavtseva L.P., Gashkina N.A., 2005. Assessment of the geochemical background and anthropogenic load by bioaccumulation of microelements in fish. Water Resources 32:640–652. DOI: 10.1007/s11268-005-0081-5. MoiseenkoT.I. KudryavtsevaL.P. GashkinaN.A. 2005 Assessment of the geochemical background and anthropogenic load by bioaccumulation of microelements in fish Water Resources 32 640 652 10.1007/s11268-005-0081-5 Open DOISearch in Google Scholar

Moiseenko T.I., Gashkina N.A., 2020. Distribution and bio-accumulation of heavy metals (Hg, Cd and Pb) in fish: Influence of the aquatic environment and climate. Environmental Research Letters 15: 115013. DOI: 10.1088/1748-9326/abbf7c. MoiseenkoT.I. GashkinaN.A. 2020 Distribution and bio-accumulation of heavy metals (Hg, Cd and Pb) in fish: Influence of the aquatic environment and climate Environmental Research Letters 15 115013 10.1088/1748-9326/abbf7c Open DOISearch in Google Scholar

Nazyrov A.D., 2003. Biaccumulation of heavy metalls, dioxins and influence on hematological and biochemical indicators of hydrobionts river Ufa (in Russian). Abstract of the dissertation. Academic Press, Ufa. NazyrovA.D. 2003 Biaccumulation of heavy metalls, dioxins and influence on hematological and biochemical indicators of hydrobionts river Ufa (in Russian) Abstract of the dissertation. Academic Press Ufa Search in Google Scholar

Nikanorov A.M., Zhulidov A.V., 1991. Biomonitoring of metals in freshwater ecosystems. Gidrometeoizdat, Leningrad: 310. NikanorovA.M. ZhulidovA.V. 1991 Biomonitoring of metals in freshwater ecosystems Gidrometeoizdat Leningrad 310 Search in Google Scholar

Nyukkanov À.N., 1996. The content of mercury compounds, lead and cadmium in fish from freshwater waterbody Yakutia. Abstract of the dissertation. RRIVM, Pokrov: 22. Online: https://dlib.rsl.ru/01000330389 (accessed 20 Desember 2019). NyukkanovÀ.N. 1996 The content of mercury compounds, lead and cadmium in fish from freshwater waterbody Yakutia Abstract of the dissertation. RRIVM Pokrov 22 Online: https://dlib.rsl.ru/01000330389 (accessed 20 Desember 2019). Search in Google Scholar

Nzeve J.K., Njuguna S.G., Kitur E.C., 2014. Bioaccumulation of heavy metals in Clarias gariepinus and Oreochromis spirulus Niger from Masinga Reservoir, Kenya. IOSR Journal of Environmental Science, Toxicology and Food Technology 8(10): 58–63. NzeveJ.K. NjugunaS.G. KiturE.C. 2014 Bioaccumulation of heavy metals in Clarias gariepinus and Oreochromis spirulus Niger from Masinga Reservoir, Kenya IOSR Journal of Environmental Science, Toxicology and Food Technology 8 10 58 63 10.9790/2402-081015863 Search in Google Scholar

Pandey G., Madhuri S., 2014. Heavy metals causing toxicity in animals and fishes. Research Journal of Animal, Veterinary and Fishery Sciences 2(2): 17–23. PandeyG. MadhuriS. 2014 Heavy metals causing toxicity in animals and fishes Research Journal of Animal, Veterinary and Fishery Sciences 2 2 17 23 Search in Google Scholar

Pastukhov M.V., 2012. Ecological aspects of mercury accumulation by hydrobionts of the Baikal-Angarsk water system. Online: static.freereferats.ru/_avtoreferats/01005484084.pdf (accessed 10 February 2019). PastukhovM.V. 2012 Ecological aspects of mercury accumulation by hydrobionts of the Baikal-Angarsk water system Online: static.freereferats.ru/_avtoreferats/01005484084.pdf (accessed 10 February 2019). Search in Google Scholar

Peňaz M., Kokeš J., 1981. Notes on the diet, growth and reproduction of Carassius auratus gibelio in two localities in southern Slovakia. Folia Zoologica 30(1), 83–94. PeňazM. KokešJ. 1981 Notes on the diet, growth and reproduction of Carassius auratus gibelio in two localities in southern Slovakia Folia Zoologica 30 1 83 94 Search in Google Scholar

Popov P.A., 2002. Assessment of the ecological status of water bodies using ichthyoindication methods. Novosibirsk National Research State University Press, Novosibirsk: 270. PopovP.A. 2002 Assessment of the ecological status of water bodies using ichthyoindication methods Novosibirsk National Research State University Press Novosibirsk 270 Search in Google Scholar

Popov P.A., Androsova N.V., 2008. Indication of the ecological state of water bodies of Siberia from the content of heavy metals in fishes. Geography and Natural Resources 3: 36–41. PopovP.A. AndrosovaN.V. 2008 Indication of the ecological state of water bodies of Siberia from the content of heavy metals in fishes Geography and Natural Resources 3 36 41 Search in Google Scholar

Popov P.A, Androsova N.V., 2014. Metal content in the muscular tissue of fish the Ob River. Tomsk State University Journal of Biology 4(28): 108–122. DOI: 10.17223/19988591/28/7. PopovP.A AndrosovaN.V. 2014 Metal content in the muscular tissue of fish the Ob River Tomsk State University Journal of Biology 4 28 108 122 10.17223/19988591/28/7 Open DOISearch in Google Scholar

Rahman M.S., Molla A.H., Saha N., Rahman A., 2012. Study on heavy metals levels and its risk assessment in some edible fishes from Bangshi River, Savar, Dhaka, Bangladesh. Food Chemistry 134:1847–1854. RahmanM.S. MollaA.H. SahaN. RahmanA. 2012 Study on heavy metals levels and its risk assessment in some edible fishes from Bangshi River, Savar, Dhaka, Bangladesh Food Chemistry 134 1847 1854 10.1016/j.foodchem.2012.03.099 Search in Google Scholar

Sani U., 2011. Determination of some heavy metals concentration in the tissues of Tilapia and Catfishes. Biokemistri. 23(2): 73–80. SaniU. 2011 Determination of some heavy metals concentration in the tissues of Tilapia and Catfishes Biokemistri 23 2 73 80 Search in Google Scholar

Shipunov A.B., Baldin E.M., Volkova P.A., Korobeinikov A.I., Nazarova S.A., Petrov S.V., Sufiyanov V.G., 2014. Visual statistics, we use R! (in Russian) DMK Press, Moscow. ShipunovA.B. BaldinE.M. VolkovaP.A. KorobeinikovA.I. NazarovaS.A. PetrovS.V. SufiyanovV.G. 2014 Visual statistics, we use R! (in Russian) DMK Press Moscow Search in Google Scholar

Scheffer M., van Nes E.H., 2007. Shallow lakes theory revisited: various alternative regimes driven by climate, nutrients, depth and lake size. In: Gulati R.D., Lammens E., De Pauw N., Van Donk E. (eds) Shallow Lakes in a Changing World. Developments in Hydrobiology, vol 196. Springer, Dordrecht. https://doi.org/10.1007/978-1-4020-6399-2_41. SchefferM. van NesE.H. 2007 Shallow lakes theory revisited: various alternative regimes driven by climate, nutrients, depth and lake size In: GulatiR.D. LammensE. De PauwN. Van DonkE. (eds) Shallow Lakes in a Changing World Developments in Hydrobiology, 196 Springer Dordrecht https://doi.org/10.1007/978-1-4020-6399-2_41. 10.1007/978-1-4020-6399-2_41 Search in Google Scholar

Sikhynbaeva J.S., Shakirov B.S., Zholdasbekova K.A., Ashitova N.Zh., 2014. Some questions about the impact of energy on the environment. International Journal of Sciences: Basic and Applied Research 3(2): 89–90. SikhynbaevaJ.S. ShakirovB.S. ZholdasbekovaK.A. AshitovaN.Zh. 2014 Some questions about the impact of energy on the environment International Journal of Sciences: Basic and Applied Research 3 2 89 90 Search in Google Scholar

Spry D.J., Wiener T.G., 1991. Metal bioavailability and toxicity to fish from low-alkalinity lakes: A critical review. Environmental Pollution 71(2–4): 243–304. DOI: 10.1016/0269-7491(91)90034-T. SpryD.J. WienerT.G. 1991 Metal bioavailability and toxicity to fish from low-alkalinity lakes: A critical review Environmental Pollution 71 2–4 243 304 10.1016/0269-7491(91)90034-T Open DOISearch in Google Scholar

Sunda W.G., Guillard R.R.L., 1976. The relationship between cupric ion activity and the toxicity of copper to phytoplankton. Journal of Marine Research 34: 511–529. SundaW.G. GuillardR.R.L. 1976 The relationship between cupric ion activity and the toxicity of copper to phytoplankton Journal of Marine Research 34 511 529 10.1575/1912/1275 Search in Google Scholar

Szczerbowski J.A., Szczerbowski A., 1996. Karasie [The genus Carassius]. IRŚ, Olsztyn, 45–88. SzczerbowskiJ.A. SzczerbowskiA. 1996 Karasie [The genus Carassius] IRŚ Olsztyn 45 88 Search in Google Scholar

Tsybekmitova G.Ts., 2016. Filtration water quality of ash dump TPP-1 and possible ways of their stream into the Kenon Lake (Zabaikalsky Krai) (in Russian). Water: Chemistry and Ecology 2: 11–17. TsybekmitovaG.Ts. 2016 Filtration water quality of ash dump TPP-1 and possible ways of their stream into the Kenon Lake (Zabaikalsky Krai) (in Russian) Water: Chemistry and Ecology 2 11 17 Search in Google Scholar

Tsybekmitova G.Ts., Kuklin A.P., Tsyganok V.I., 2019. Heavy metals in bottom sediments of Lake Kenon (The Trans-Baikal Territory, Russia). Bulletin of Environmental Contamination and Toxicology 103: 286–291. DOI: 10.1007/s00128-019-02645-7. TsybekmitovaG.Ts. KuklinA.P. TsyganokV.I. 2019 Heavy metals in bottom sediments of Lake Kenon (The Trans-Baikal Territory, Russia) Bulletin of Environmental Contamination and Toxicology 103 286 291 10.1007/s00128-019-02645-7 31190164 Open DOISearch in Google Scholar

Tulonen T., Pihlström M., Arvola L., Rask M., 2006. Concentrations of heavy metals in food web components of small, boreal lakes. Boreal Environment Research 11: 185–194. DOI: 10.12691/jephh-1-1-1. TulonenT. PihlströmM. ArvolaL. RaskM. 2006 Concentrations of heavy metals in food web components of small, boreal lakes Boreal Environment Research 11 185 194 10.12691/jephh-1-1-1 Open DOISearch in Google Scholar

Usmanova L.I., Zamana L.V., Usmanov M.T., 2018. Geochemistry of underground and surface water in the zone of influence of the ash daump of Chita TPP-1. International Research Journal 11(77): 91–95. DOI: 10.31554/978-5-7925-0536-0-2018-379-382. UsmanovaL.I. ZamanaL.V. UsmanovM.T. 2018 Geochemistry of underground and surface water in the zone of influence of the ash daump of Chita TPP-1 International Research Journal 11 77 91 95 10.31554/978-5-7925-0536-0-2018-379-382 Open DOISearch in Google Scholar

Van der Oost R., Beyer J., Vermeulen N.P.E., 2003. Fish bioaccumulation and biomarkers in environmental risk assessment: a review. Environmental Toxicology and Pharmacology 13: 57–149. DOI: 10.1016/S1382-6689(02)00126-6. Van der OostR. BeyerJ. VermeulenN.P.E. 2003 Fish bioaccumulation and biomarkers in environmental risk assessment: a review Environmental Toxicology and Pharmacology 13 57 149 10.1016/S1382-6689(02)00126-6 Open DOISearch in Google Scholar

Vetrov V.A., Kornakova E.F., Kuznetsova A.I., Korobeinikova L.G., 1989. Metal Content in Baikal Fish. In: Israel Yu.A. (Ed.) Problems of Ecological Monitoring and Ecosystem Modelling. Gidrometeoizdat, Leningrad: 88–100. VetrovV.A. KornakovaE.F. KuznetsovaA.I. KorobeinikovaL.G. 1989 Metal Content in Baikal Fish In: IsraelYu.A. (Ed.) Problems of Ecological Monitoring and Ecosystem Modelling Gidrometeoizdat Leningrad 88 100 Search in Google Scholar

Vinodhini R., Narayanan M., 2009. Heavy metal induced histopathological alterations in selected organs of the Cyprinus carpio L. (Common Carp). International Journal of Environmental Research 3(1): 95–100. DOI: 10.3906/vet-0711-18. VinodhiniR. NarayananM. 2009 Heavy metal induced histopathological alterations in selected organs of the Cyprinus carpio L. (Common Carp) International Journal of Environmental Research 3 1 95 100 10.3906/vet-0711-18 Open DOISearch in Google Scholar

Vosylienė M.Z., Jankaitė A., 2006. Effect of heavy metal model mixture on rainbow trout biological parameters. Ekologija 4:12–17. Online: elibrary.lt/resursai/LMA/Ekologija/Eko64/Eko64_05.pdf (accessed 14 Desemder 2019). VosylienėM.Z. JankaitėA. 2006 Effect of heavy metal model mixture on rainbow trout biological parameters Ekologija 4 12 17 Online: elibrary.lt/resursai/LMA/Ekologija/Eko64/Eko64_05.pdf (accessed 14 Desemder 2019). Search in Google Scholar

Wang X., Chu Z., Zha F., Liu S., Liu G., Dong Z., 2015. Determination of heavy metals in water and tissues of Crucian Carp (Carassius auratus Gibelio) collected from subsidence pools in Huainan Coal Fields (China). Ananlytical Letters 48(5): 861–877. DOI: 10.1080/00032719.2014.961606. WangX. ChuZ. ZhaF. LiuS. LiuG. DongZ. 2015 Determination of heavy metals in water and tissues of Crucian Carp (Carassius auratus Gibelio) collected from subsidence pools in Huainan Coal Fields (China) Ananlytical Letters 48 5 861 877 10.1080/00032719.2014.961606 Open DOISearch in Google Scholar

Wood C.M., Farrell A.P., Brauner C.J., 2012. Homeostasis and toxicology of non-essential metals. Academic, New York: 67–123. WoodC.M. FarrellA.P. BraunerC.J. 2012 Homeostasis and toxicology of non-essential metals Academic New York 67 123 Search in Google Scholar

Younis E.M., Al-Asgah A.N., Abdel-Warith A-W.A, Al-Mutairi A.A., 2015. Seasonal variations in the body composition and bioaccumulation of heavy metals in Nile tilapia collected from drainage canals in Al-Ahsa, Saudi Arabia. Saudi Journal of Biological Sciences 22: 443–447. DOI: 10.1016/j.sjbs.2014.11.020. YounisE.M. Al-AsgahA.N. Abdel-WarithA-W.A Al-MutairiA.A. 2015 Seasonal variations in the body composition and bioaccumulation of heavy metals in Nile tilapia collected from drainage canals in Al-Ahsa, Saudi Arabia Saudi Journal of Biological Sciences 22 443 447 10.1016/j.sjbs.2014.11.020 448726126150751 Open DOISearch in Google Scholar

Zamana L.V., Strizhova T.A., Chechel L.P., 1998. Hydrochemical parameters of a lake and its catchment area (in Russian). In: Ecology of an inner-city water body. Publishing House Science SB RAS, Novosibirsk: 29–36. ZamanaL.V. StrizhovaT.A. ChechelL.P. 1998 Hydrochemical parameters of a lake and its catchment area (in Russian) In: Ecology of an inner-city water body Publishing House Science SB RAS Novosibirsk 29 36 Search in Google Scholar

Zamana L.V., Usmanova L.I., Usmanov M.T., 2011. Ecological and geochemical assessment of underground waters used by residents of the outskirts of Chita for decentralized supply (in Russian). Water: Chemistry and Ecology 12: 105–109. ZamanaL.V. UsmanovaL.I. UsmanovM.T. 2011 Ecological and geochemical assessment of underground waters used by residents of the outskirts of Chita for decentralized supply (in Russian) Water: Chemistry and Ecology 12 105 109 Search in Google Scholar

Zholobova Y.S., Kushchiy N.A., Savon D.Y., Safronov A.E., 2016. Minimization of ecological impact by application of new technologies of coal preparation and mining waste disposal (in Russian). Gornyi Zhurnal 5: 109–112. DOI: 10.17580/gzh.2016.05.18. ZholobovaY.S. KushchiyN.A. SavonD.Y. SafronovA.E. 2016 Minimization of ecological impact by application of new technologies of coal preparation and mining waste disposal (in Russian) Gornyi Zhurnal 5 109 112 10.17580/gzh.2016.05.18 Open DOISearch in Google Scholar

Zhuldybina T.V., 2010. Hydrochemical regime of water streams of Chita Oblast (in Russian). Geography and Natural Resources 1: 99–102. ZhuldybinaT.V. 2010 Hydrochemical regime of water streams of Chita Oblast (in Russian) Geography and Natural Resources 1 99 102 Search in Google Scholar

eISSN:
2081-6383
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Geosciences, Geography