Environmental monitoring of Lake Baikal

Condition of surface waters of the River

Ecological assessment of water objects according to the data of Roshydromet local agencies is given below.

Ecological assessment of surface waters of Selenga River for specified parameters from 2010-2012. at the main-stream station (mg/dm3)*
Table 1.4.1
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Ecological assessment of surface waters of Selenga River for specified parameters from  2010-2012. at the main-stream station (mg/dm3)*
Note: *FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet.
FSBI «Hydrochemical Institute» of Roshydromet. red colour - excess of MPC;





Ecological assessment of surface waters in Barguzin River for specified parameters from 2010-2012 at the main-stream station (mg/dm3)*
Table 1.4.2
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Ecological assessment of surface waters in Barguzin River for specified parameters from 2010-2012 at the main-stream station (mg/dm3)*
Note: *FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.
red colour - excess of MPC





Ecological assessment of surface waters in the Turka River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Table 1.4.3
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Ecological assessment of surface waters in the Turka River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Note: *FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.
red colour - excess of MPC;





Ecological assessment of surface waters in Verkhnaya Angara River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Table 1.4.4
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Ecological assessment of surface waters in Verkhnaya Angara River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Note: *FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.
red colour - excess of MPC;





Ecological assessment of surface waters in the Tya River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Table 1.4.5
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Ecological assessment of surface waters in the Tya River for specified parameters from 2010-2012 at the main-stream station (mg/dm3, mg/dm3 for copper and zinc)*
Note: *FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.
red colour - excess of MPC;





Yearly aqueous run-off to the lake Baikal*
Table 1.4.6
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Yearly aqueous run-off to the lake Baikal*
Note: *Data are given by FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.




Aggregate quantity of dissolved mineral substances and suspended substances, coming to the lake Baikal with water if main inflowing streams*
Table 1.4.7
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Aggregate quantity of dissolved mineral substances and suspended substances, coming to the lake Baikal with water if main inflowing streams*
Note: *Data are given by FSBI «Buryatsky Center of hydrometeorology and monitoring of environment» branch of FSBI «Zabaikalsky Territorial Administration for Hydrometeorological and Environmental Monitoring» of Roshydromet; FSBI «Hydrochemical Institute» of Roshydromet.




Aggregate quantity of organic substances, coming to the lake Baikal with water of main inflowing streams
Table 1.4.8
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Aggregate quantity of organic substances, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of petrochemicals, coming to the lake Baikal with water of main inflowing streams
Table 1.4.9
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Aggregate quantity of petrochemicals, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of synthetic surfactants, coming to the lake Baikal with water of main inflowing streams
Table 1.4.10
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Aggregate quantity of synthetic surfactants, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of volatile phenols, coming to the lake Baikal with water of main inflowing streams
Table 1.4.11
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Aggregate quantity of volatile phenols, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of resins and asphaltenes, coming to the lake Baikal with water of main inflowing streams
Table 1.4.12
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Aggregate quantity of resins and asphaltenes, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of copper compounds, coming to the lake Baikal with water of main inflowing streams
Table 1.4.13
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Aggregate quantity of copper compounds, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of mineral nitrogen, coming to the lake Baikal with water of main inflowing streams
Table 1.4.14
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Aggregate quantity of mineral nitrogen, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of total phosphorus, coming to the lake Baikal with water of main inflowing streams
Table 1.4.15
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Aggregate quantity of total phosphorus, coming to the lake Baikal with water of main inflowing streams





Aggregate quantity of Total Ferrum, coming to the lake Baikal with water of main inflowing streams
Table 1.4.16
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Aggregate quantity of Total Ferrum, coming to the lake Baikal with water of main inflowing streams





a) Content of Total Ferrum (а) and zinc compounds (b) in water of the Selenga River (main-stream station) b) Content of Total Ferrum (а) and zinc compounds (b) in water of the Selenga River (main-stream station)

Figure 1.4.1. Content of Total Ferrum (а) and zinc compounds (b) in water of the Selenga River (main-stream station)
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a) COD (а) and content of copper compounds (b) in water of Selenga River (main-stream station) b) COD (а) and content of copper compounds (b) in water of Selenga River (main-stream station)

Figure. 1.4.2. COD (а) and content of copper compounds (b) in water of Selenga River (main-stream station)
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a) Content of nitrites (а) and volatile phenoles (b) in water of the Selenga River(main-stream station) b) Content of nitrites (а) and volatile phenoles (b) in water of the Selenga River(main-stream station)

Figure. 1.4.3. Content of nitrites (а) and volatile phenoles (b) in water of the Selenga River(main-stream station)
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a) Content of Total Ferrum (а) and copper compounds (b) in water of the Barguzin River (main-stream station) b) Content of Total Ferrum (а) and copper compounds (b) in water of the Barguzin River (main-stream station)

Figure. 1.4.4. Content of Total Ferrum (а) and copper compounds (b) in water of the Barguzin River (main-stream station)
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a) Content of copper compounds (а) and COD (b) in water of the Barguzin River (main-stream station) b) Content of copper compounds (а) and COD (b) in water of the Barguzin River (main-stream station)

Figure. 1.4.5. Content of copper compounds (а) and COD (b) in water of the Barguzin River (main-stream station)
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a) Content of Total Ferrum (а) and copper compounds (b) in water of the Turka     b) Content of Total Ferrum (а) and copper compounds (b) in water of the Turka

Figure. 1.4.6. Content of Total Ferrum (а) and copper compounds (b) in water of the Turka
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a) Content of zinc compounds (а) and volatile phenols (b) in water of the Turka River        b) Content of zinc compounds (а) and volatile phenols (b) in water of the Turka River

Figure. 1.4.7. Content of zinc compounds (а) and volatile phenols (b) in water of the Turka River
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a) Content of Total Ferrum (а) and copper compounds (b) in water of the Verkhnaya Angara River       b) Content of Total Ferrum (а) and copper compounds (b) in water of the Verkhnaya Angara River

Figure. 1.4.8. Content of Total Ferrum (а) and copper compounds (b) in water of the Verkhnaya Angara River
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a) Content of zinc compounds (а) and volatile phenols (b) in water of the Verkhnaya Angara River      b) Content of zinc compounds (а) and volatile phenols (b) in water of the Verkhnaya Angara River

Figure. 1.4.9. Content of zinc compounds (а) and volatile phenols (b) in water of the Verkhnaya Angara River
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a) Content of Total Ferrum (а) and copper compounds (b) in water of the Tya River         b) Content of Total Ferrum (а) and copper compounds (b) in water of the Tya River

Figure. 1.4.10. Content of Total Ferrum (а) and copper compounds (b) in water of the Tya River
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a) Content of zinc compounds (а) and petrochemicals (b) in water of the Tya River        b) Content of zinc compounds (а) and petrochemicals (b) in water of the Tya River

Figure. 1.4.11. Content of zinc compounds (а) and petrochemicals (b) in water of the Tya River
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