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Acute Toxicity and Hazardous Concentrations of Zinc to Native Freshwater Organisms Under Different pH Values in China
by
Feng, C L
, Chen, J K
, Liu, D Q
, Wu, F C
, Li, X F
, Wang, P F
in
Acute toxicity
/ Aquatic organisms
/ Bioavailability
/ Freshwater organisms
/ Heavy metals
/ Indigenous species
/ pH effects
/ Quality assessment
/ Risk assessment
/ Sensitivity
/ Toxicity
/ Trophic levels
/ Water quality
/ Zinc
2019
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Acute Toxicity and Hazardous Concentrations of Zinc to Native Freshwater Organisms Under Different pH Values in China
by
Feng, C L
, Chen, J K
, Liu, D Q
, Wu, F C
, Li, X F
, Wang, P F
in
Acute toxicity
/ Aquatic organisms
/ Bioavailability
/ Freshwater organisms
/ Heavy metals
/ Indigenous species
/ pH effects
/ Quality assessment
/ Risk assessment
/ Sensitivity
/ Toxicity
/ Trophic levels
/ Water quality
/ Zinc
2019
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While trying to remove the title from your shelf something went wrong :( Kindly try again later!
Do you wish to request the book?
Acute Toxicity and Hazardous Concentrations of Zinc to Native Freshwater Organisms Under Different pH Values in China
by
Feng, C L
, Chen, J K
, Liu, D Q
, Wu, F C
, Li, X F
, Wang, P F
in
Acute toxicity
/ Aquatic organisms
/ Bioavailability
/ Freshwater organisms
/ Heavy metals
/ Indigenous species
/ pH effects
/ Quality assessment
/ Risk assessment
/ Sensitivity
/ Toxicity
/ Trophic levels
/ Water quality
/ Zinc
2019
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Acute Toxicity and Hazardous Concentrations of Zinc to Native Freshwater Organisms Under Different pH Values in China
Journal Article
Acute Toxicity and Hazardous Concentrations of Zinc to Native Freshwater Organisms Under Different pH Values in China
2019
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Overview
Zinc bioavailability to aquatic organisms varies greatly under different pH values. In the present study, five native species in China and four common international test species were selected to investigate the influence of changing pH on acute zinc toxicity. The results showed that the higher trophic levels exhibited increasing sensitivity to zinc as pH decreased. However, when the pH value was between 8 and 11, the acute toxicity of zinc was relatively constant. In addition, by using a species-sensitivity distribution (SSD) method, the short-term hazardous concentrations of zinc at different pH values (based on the 5th percentiles of the pH-specific SSDs) were determined to be 17.26 µg/L (pH 4), 48.31 µg/L (pH 5), 80.34 µg/L (pH 6) and 230.6 µg/L (pH 7), respectively. The present study provides useful information for deriving water quality criteria and assessing the risks of metals in the near future.
Publisher
Springer Nature B.V
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