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THE TUUL RIVER WATER QUALITY AND POLLUTION

원문정보

초록

영어
It shows that the longitudinal water quality changes observed along the Tuul River that can be demonstrated by the changes of the concentration of mineralization and ammonium nitrogen. The main pollution source is effluent discharge from the Central Waste Water Treatment Plant (CWWTP) of Ulaanbaatar that can be shown by monthly comparative investigations in the Tuul River in the upstream of Ulaanbaatar (Terelj) and waste water from CWWTP discharges to the Tuul River (Songino) and diurnal study in the discharge from the CWWTP. At Sta MO8, the ammonium nitrogen concentration was highest in April (after snow melting) and lowest in July between 2005 and 2008, which might be related to dilution due to rain events in July. At Sta. M05, the ammonium nitrogen concentration was low throughout the period of investigation. Despite this seasonal variability, the concentrations of ammonium nitrogen and conductivity at Sta. M08 were generally much higher than those at Sta. M05. Moreover there was a very large change in water quality during a day. Ammonium concentration was very high and variable, being correlated with conductivity. There was very little dissolved oxygen at night. This is because of the microbial consumption of oxygen. High ammonium concentration and low dissolved oxygen is very bad (toxic) for fish. Therefore, it seems that Ulaanbaatar is a significant source of pollutants regardless of season in the Tuul River.

목차

Introduction
 Material and Method
 Method
 Results and discussions
 Conclusions
 Acknowledgements
 References
 Abstract

저자

  • Javzan.Ch [ Mongolian Academy of Sciences, Institute of Geoecology ]
  • Tsengelmaa. B [ Mongolian Academy of Sciences, Institute of Geoecology) ]
  • Saulegul.A [ Mongolian Academy of Sciences, Institute of Geoecology ]
  • Tomorsukh, D [ Mongolian Academy of Sciences, Institute of Geoecology ]

참고문헌

자료제공 : 네이버학술정보

    간행물 정보

    • 간행물
      동중앙아시아연구(구 한몽경상연구) [Journal of East and Central Asian Studies]
    • 간기
      연3회
    • pISSN
      2288-2219
    • 수록기간
      1997~2025
    • 십진분류
      KDC 320 DDC 330