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克拉斯诺雅尔斯克水库底泥中的水生微生物生长力学及其数学模拟
作者姓名:Nadezda  Degermendzhy
作者单位:Krasnoyarsk Medical Academy, ul. Zelezniak, l, Krasnoyarsk, 660022, Russia
基金项目:This work was supported by grants from the Siberian Branch of Russian Academy of Sciences (Integrative program, project N10) and the Russian Federal Program of Integrating of Higher Education and Science (Integrative program, project N73:"Assessment, Monitoring, Forecast of Water Quality and Medicative Properties of Siberian Shira Lake").
摘    要:The ecological forecasting of microorganisms and water quality dynamics in Krasnoyarsk Reservoir is based on knowledge of dependence of specific growth rate (SGR) on limiting substrata. It investigated the influence of soil extract on the growth autochtonic (bacterioplankton of Krasnoyarsk Reservoir. The maximum SGR and Michaelis-Menten constant (on chemical oxidation decomposition (COD)-permanganate) is determined. These parameters are used in eco-model of Krasnoyarsk Reservoir and the Yenisei River to estimate the payojf of self-purification.

关 键 词:soil  extract  bacterioplankton  of  Krasnoyarsk  Reservoir  growth  kinetics  prediction
收稿时间:1997/2/25 0:00:00
修稿时间:1998/3/27 0:00:00

Growth Kinetics of Aquatic Microorganisms on Soil Extracts in Krasnoyarsk Reservoir and Mathematical Modelling
Nadezda Degermendzhy.Growth Kinetics of Aquatic Microorganisms on Soil Extracts in Krasnoyarsk Reservoir and Mathematical Modelling[J].Journal of Lake Science,1998,10(S1):411-419.
Authors:Nadezda Degermendzhy
Institution:Krasnoyarsk Medical Academy, ul. Zelezniak, l, Krasnoyarsk, 660022, Russia
Abstract:The ecological forecasting of microorganisms and water quality dynamics in Krasnoyarsk Reservoir is based on knowledge of dependence of specific growth rate (SGR) on limiting substrata. It investigated the influence of soil extract on the growth autochtonic (bacterioplankton of Krasnoyarsk Reservoir. The maximum SGR and Michaelis-Menten constant (on chemical oxidation decomposition (COD)-permanganate) is determined. These parameters are used in eco-model of Krasnoyarsk Reservoir and the Yenisei River to estimate the payojf of self-purification.
Keywords:soil extract  bacterioplankton of Krasnoyarsk Reservoir  growth kinetics  prediction
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