Effects of temperature on oil refinery waste toxicity
被引:0
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作者:
Reynolds, J.H.
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机构:
Dept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United StatesDept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United States
Reynolds, J.H.
[1
]
Middlebrooks, E.J.
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h-index: 0
机构:
Dept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United StatesDept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United States
Middlebrooks, E.J.
[1
]
Porcella, D.B.
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h-index: 0
机构:
Dept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United StatesDept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United States
Porcella, D.B.
[1
]
Grenney, W.J.
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h-index: 0
机构:
Dept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United StatesDept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United States
Grenney, W.J.
[1
]
机构:
[1] Dept. Civ. Environm. Engin., Utah State Univ., Logan, Ut., United States
来源:
Journal of the Water Pollution Control Federation
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1975年
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47卷
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11期
关键词:
ALGAL CULTURES;
D O I:
暂无
中图分类号:
学科分类号:
摘要:
A continuous flow kinetic model was developed to describe and predict the effects of temperature on the toxicity of a specific oil refinery waste to the green alga, Selenastrum capricornutum. The model is based on Michaelis-Menten enzyme inhibition kinetics, with ammonium nitrogen-limited, continuous flow algal cultures between 20 degree and 28 degree C. Phenol is the controlling inhibitor. The model was applied to continuous flow algal cultures exposed to an actual oil refinery waste. 73 refs.