【注意事項】
* 生態影響に係る有害性情報更新日が2019年9月以前はRead-acrossデータに○を記載しておらず、被験物質が標記の物質ではない可能性がある。
**各情報源における信頼性評価スコアの定義は下記のとおりである。
生物種 | 学名 | 影響内容 | エンドポイント | 暴露期間(値) | 暴露期間(単位) | 毒性値 | 毒性値(単位) | 毒性値(単位)種別 | 試験中の 被験物質 濃度測定 あり:○ なし:× |
情報源 | 情報源による 信頼性評価** |
著者 | タイトル | 記載誌 | 発行年 | 情報更新日 | |||
---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
subject type | scientific name | effect | endpoint | exposure duration value |
exposure duration unit |
toxicity value | toxicity unit | toxicity unit type | Read-across* | QSAR | GLP | measurement of the test material |
original work type | original work reliability rank |
author | title | referenced journal | publication year | Information update date |
藻類 | Pseudokirchneriella subcapitata | Population | IC50 | 3 | days | 0.5 | μmol/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2): 419-429 | 1998 | 2017/03/15 | ||||||
藻類 | Pseudokirchneriella subcapitata | Population | IC50 | 3 | days | 1.05 | μmol/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2): 419-429 | 1998 | 2017/03/15 | ||||||
藻類 | Pseudokirchneriella subcapitata | Population | IC50 | 3 | days | 0.5 | μmol/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2): 419-429 | 1998 | 2016/03/25 | ||||||
藻類 | Pseudokirchneriella subcapitata | Population | IC50 | 3 | days | 1.05 | μmol/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2): 419-429 | 1998 | 2016/03/25 | ||||||
藻類 | Pseudokirchneriella subcapitata | Population/Population changes, general | IC50 | 72 | hours | 1.05 | μmol/L | × | 16 ECOTOX | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2) | 2020/11/12 | ||||||
藻類 | Pseudokirchneriella subcapitata | Population/Biomass | IC50 | 72 | hours | 0.5 | μmol/L | × | 16 ECOTOX | Errecalde,O., M. Seidl, and P.G.C. Campbell | Influence of a Low Molecular Weight Metabolite (Citrate) on the Toxicity of Cadmium and Zinc to the Unicellular Green Alga Selenastrum capricornutum | Water Res.32(2) | 2020/11/12 | ||||||
藻類 | Skeletonema costatum | growth rate | NOEC | 14 | days | 50 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Malnes D & Jensen A | Heavy metal tolerance of marine phytoplankton. IV. combined effect of zinc and cadmium on growth and uptake in some marine diatoms. | J Exp Marine Biol & Ecol 42 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 14 | days | 500 | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | ||||||||
藻類 | Skeletonema costatum | growth rate | NOEC | 15 | days | 25 | ○ | 12 ECHA Information on Registered Substances | Jensen A, Rystad B & Melsom S | Heavy metal tolerance of marine phytoplankton. 1. The tolerance of three algal species to zinc in coastal sea | J Exp Marine Biol & Ecol 15/2 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 14 | days | 500 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Malnes D & Jensen A | Heavy metal tolerance of marine phytoplankton. IV. combined effect of zinc and cadmium on growth and uptake in some marine diatoms. | J Exp Marine Biol & Ecol 42 | 2021/03/02 | |||||||
藻類 | Skeletonema costatum | growth rate | NOEC | 14 | days | 50 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Malnes D & Jensen A | Heavy metal tolerance of marine phytoplankton. IV. combined effect of zinc and cadmium on growth and uptake in some marine diatoms. | J Exp Marine Biol & Ecol 42 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 12 | days | 4800 | ○ | 12 ECHA Information on Registered Substances | Wikfors, G.H. and R. Ukeles | Growth and adaptation of estuarine unicellular algae in media with excess copper, cadmium or zinc, and effects of metal-contaminated algal food on Crassostrea virginica larvae | Mar. Ecol. Prog. Ser. 7 | 2021/03/02 | |||||||
藻類 | Skeletonema costatum | growth rate | LOEC | 14 | days | 100 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 14 | days | 500 | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | ||||||||
藻類 | Chlorella sp. | growth rate | EC10 | 48 | hours | 105 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wilde K. L. , Stauber J.L., Markich, S.J., Franklin N. M. and Brown, P.L. | The effect of pH on the uptake and toxicity of copper and zinc in a tropical freshwater alga (Chlorella sp. ) | Arch. Environm. Contam. Toxic. 51 | 2021/03/02 | ||||||
藻類 | Skeletonema costatum | growth rate | LOEC | 14 | days | 100 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 12 | days | 4800 | ○ | 12 ECHA Information on Registered Substances | Wikfors, G.H. and R. Ukeles | Growth and adaptation of estuarine unicellular algae in media with excess copper, cadmium or zinc, and effects of metal-contaminated algal food on Crassostrea virginica larvae | Mar. Ecol. Prog. Ser. 7 | 2021/03/02 | |||||||
藻類 | Dunaliella tertiolecta | growth rate | NOEC | 96 | hours | 3278 | μg/L | ○ | 12 ECHA Information on Registered Substances | Miao A-J, Wang W-X & Juneau P | Comparison of Cd, Cu, And Zn toxic effects on four marine phytoplankton by Pulse-Amplitude-Modulated Fluorometry | Environmental Toxicology and Chemistry 24 (10) | 2021/03/02 | ||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 15 | days | 10000 | ○ | 12 ECHA Information on Registered Substances | Jensen A, Rystad B & Melsom S | Heavy metal tolerance of marine phytoplankton. 1. The tolerance of three algal species to zinc in coastal sea | J Exp Marine Biol & Ecol 15/2 | 2021/03/02 | |||||||
藻類 | Skeletonema costatum | growth rate | EC10 | 14 | days | 77.5 | μg/L | ○ | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | ||||||
藻類 | Skeletonema costatum | growth rate | NOEC | 15 | days | 25 | ○ | 12 ECHA Information on Registered Substances | Jensen A, Rystad B & Melsom S | Heavy metal tolerance of marine phytoplankton. 1. The tolerance of three algal species to zinc in coastal sea | J Exp Marine Biol & Ecol 15/2 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 12 | days | 4800 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wikfors, G.H. and R. Ukeles | Growth and adaptation of estuarine unicellular algae in media with excess copper, cadmium or zinc, and effects of metal-contaminated algal food on Crassostrea virginica larvae | Mar. Ecol. Prog. Ser. 7 | 2021/03/02 | ||||||
藻類 | Skeletonema costatum | growth rate | EC10 | 14 | days | 77.5 | μg/L | ○ | 12 ECHA Information on Registered Substances | Braek GS, Jensen A & Mohus A | Heavy metal tolerance of marine phytoplankton. III. Combined effects of copper and zinc ions on cultures of four common species. | J Exp Marine Biol & Ecol 25 | 2021/03/02 | ||||||
藻類 | Chlorella sp. | growth rate | EC10 | 48 | hours | 5.9 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wilde K. L. , Stauber J.L., Markich, S.J., Franklin N. M. and Brown, P.L. | The effect of pH on the uptake and toxicity of copper and zinc in a tropical freshwater alga (Chlorella sp. ) | Arch. Environm. Contam. Toxic. 51 | 2021/03/02 | ||||||
藻類 | Dunaliella tertiolecta | growth rate | NOEC | 96 | hours | 0.63 | μmol/L | ○ | 12 ECHA Information on Registered Substances | Miao A-J, Wang W-X & Juneau P | Comparison of Cd, Cu, And Zn toxic effects on four marine phytoplankton by Pulse-Amplitude-Modulated Fluorometry | Environmental Toxicology and Chemistry 24 (10) | 2021/03/02 | ||||||
藻類 | Chlorella sp. | growth rate | EC10 | 48 | hours | 350 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wilde K. L. , Stauber J.L., Markich, S.J., Franklin N. M. and Brown, P.L. | The effect of pH on the uptake and toxicity of copper and zinc in a tropical freshwater alga (Chlorella sp. ) | Arch. Environm. Contam. Toxic. 51 | 2021/03/02 | ||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 14 | days | 500 | ○ | 12 ECHA Information on Registered Substances | Braek GS, Malnes D & Jensen A | Heavy metal tolerance of marine phytoplankton. IV. combined effect of zinc and cadmium on growth and uptake in some marine diatoms. | J Exp Marine Biol & Ecol 42 | 2021/03/02 | |||||||
藻類 | Phaeodactylum tricornutum | growth rate | NOEC | 15 | days | 10000 | ○ | 12 ECHA Information on Registered Substances | Jensen A, Rystad B & Melsom S | Heavy metal tolerance of marine phytoplankton. 1. The tolerance of three algal species to zinc in coastal sea | J Exp Marine Biol & Ecol 15/2 | 2021/03/02 | |||||||
藻類 | Chlorella sp. | growth rate | EC10 | 48 | hours | 16 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wilde K. L. , Stauber J.L., Markich, S.J., Franklin N. M. and Brown, P.L. | The effect of pH on the uptake and toxicity of copper and zinc in a tropical freshwater alga (Chlorella sp. ) | Arch. Environm. Contam. Toxic. 51 | 2021/03/02 | ||||||
藻類 | Chlorella sp. | growth rate | EC10 | 48 | hours | 93 | μg/L | ○ | 12 ECHA Information on Registered Substances | Wilde K. L. , Stauber J.L., Markich, S.J., Franklin N. M. and Brown, P.L. | The effect of pH on the uptake and toxicity of copper and zinc in a tropical freshwater alga (Chlorella sp. ) | Arch. Environm. Contam. Toxic. 51 | 2021/03/02 | ||||||
藻類 | Pseudokirchneriella subcapitata 元の記載名:Kirchneriella subcapitata | Emergence, Growth | NOEC | 2 | weeks | 95 | μg/L Zn | nominal | × | 7 EU Risk Assessment Report (EUリスク評価書) | Dragos, N. et al. | Toxic effects of zinc, cadmium and their mixtures on the growth of two unicellular green algae | Rev. Roum. Biol. - Biol. V‚g‚t. 33 | 2021/04/02 | |||||
甲殻類 | Daphnia magna | Mortality | 1 | days | 500 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2017/03/15 | |||||||
甲殻類 | Daphnia magna | Mortality | 18 | hours | 1000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2017/03/15 | |||||||
甲殻類 | Daphnia magna | Mortality | 1 | days | 500 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2016/03/25 | |||||||
甲殻類 | Daphnia magna | Biochemical | 3 | days | 10~1000 | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Fan,W.H., G. Tang, C.M. Zhao, Y. Duan, and R. Zhang | Metal Accumulation and Biomarker Responses in Daphnia magna Following Cadmium and Zinc Exposure | Environ. Toxicol. Chem.28(2): 305-310 | 2009 | 2016/03/25 | ||||||||
甲殻類 | Daphnia magna | Mortality | LD50 | 1 | days | 2000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2016/03/25 | ||||||
甲殻類 | Daphnia magna | Mortality | 18 | hours | 1000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2016/03/25 | |||||||
甲殻類 | Daphnia magna | Biochemical | 10~1000 | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Fan,W.H., G. Tang, C.M. Zhao, Y. Duan, and R. Zhang | Metal Accumulation and Biomarker Responses in Daphnia magna Following Cadmium and Zinc Exposure | Environ. Toxicol. Chem.28(2): 305-310 | 2009 | 2016/03/25 | ||||||||||
甲殻類 | Daphnia magna | Accumulation | 3 | days | 10~1000 | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Fan,W.H., G. Tang, C.M. Zhao, Y. Duan, and R. Zhang | Metal Accumulation and Biomarker Responses in Daphnia magna Following Cadmium and Zinc Exposure | Environ. Toxicol. Chem.28(2): 305-310 | 2009 | 2016/03/25 | ||||||||
甲殻類 | Daphnia magna | Mortality | 10~1000 | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Fan,W.H., G. Tang, C.M. Zhao, Y. Duan, and R. Zhang | Metal Accumulation and Biomarker Responses in Daphnia magna Following Cadmium and Zinc Exposure | Environ. Toxicol. Chem.28(2): 305-310 | 2009 | 2016/03/25 | ||||||||||
甲殻類 | Daphnia magna | Mortality | LD50 | 1 | days | 750 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82:695-711 | 1995 | 2016/03/25 | ||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 259 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 120 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 2140 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 1.6 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 1.8 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 5.2 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 660 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 1.7 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC100 | 48 | hours | 32 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 2 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 123 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 2.5 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 1.4 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 48 | hours | 1.4 | mg/L | ○ | 12 ECHA Information on Registered Substances | Blinova I, Ivask A Heinlaan M, Mortimer M and Kahru A. | Ecotoxicity of nanoparticles of CuO and ZnO in natural water. | Environmental pollution 158 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 131 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 101 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 101 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 962 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 120 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | mortality | LC50 | 48 | hours | 123 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH , acclimation and heavy metals on acute and chronic toxicity of ceriodaphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia pulex | not specified | LC50 | 48 | hours | 107 | μg/L | ○ | 12 ECHA Information on Registered Substances | Mount DI and Norberg TJ | A seven-day life cycle cladoceran toxicity test | Environm. Toxicol. & Chemistry Vol 3 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | not specified | LC50 | 48 | hours | 68 | μg/L | ○ | 12 ECHA Information on Registered Substances | Mount DI and Norberg TJ | A seven-day life cycle cladoceran toxicity test | Environm. Toxicol. & Chemistry Vol 3 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC50 | 24 | hours | 23.7 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | NOEC | 48 | hours | 3.2 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | EC10 | 48 | hours | 2.6 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 530 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 1060 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | not specified | LC50 | 48 | hours | 76 | μg/L | ○ | 12 ECHA Information on Registered Substances | Mount DI and Norberg TJ | A seven-day life cycle cladoceran toxicity test | Environm. Toxicol. & Chemistry Vol 3 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 601 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | mobility | EC10 | 24 | hours | 4.5 | mg/L | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | |||||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 457 | μg/L | ○ | 12 ECHA Information on Registered Substances | Barata C, Baird D, Markisch S. | Influence of genetic and environmental factors on the tolerance of Daphnia magna Straus to essential and non-essential metals | Aquatic toxicology 42 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | Mortality/Mortality | NR-ZERO | 24 | hours | 0.5 | mg/L | × | 16 ECOTOX | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82 | 2020/11/12 | ||||||
甲殻類 | Daphnia magna | Mortality/Mortality | LD50 | 24 | hours | 2 | mg/L | × | 16 ECOTOX | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82 | 2020/11/12 | ||||||
甲殻類 | Daphnia magna | Mortality/Mortality | NR-LETH | 18 | hours | 1 | mg/L | × | 16 ECOTOX | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82 | 2020/11/12 | ||||||
甲殻類 | Daphnia magna | mobility | LC50 | 48 | hours | 330 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | Mortality/Mortality | LD50 | 24 | hours | 0.75 | mg/L | × | 16 ECOTOX | Tomasik,P., C.H.D. Magadza, S. Mhizha, and A. Chirume | The Metal-Metal Interactions in Biological Systems. Part III. Daphnia magna | Water Air Soil Pollut.82 | 2020/11/12 | ||||||
甲殻類 | Daphnia magna | reproduction | LOEC | 3 | weeks | 1000 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 84 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 100 | μg/L | ○ | 12 ECHA Information on Registered Substances | Münzinger A. and Monicelli F. | A comparison of the sensitivity of three Dapnia magna populations under chronic heavy metal stress | Ecotoxicology and Environmental safety 22 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 33 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 31 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 48 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 244 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 74 | μg/L | ○ | 12 ECHA Information on Registered Substances | Biesinger et al | Effects of metal salt mixtures on Daphnia magna reproduction | Ecotox. Environm. Safety 11 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 7 | days | 50 | μg/L | ○ | 12 ECHA Information on Registered Substances | Masters J.A. , Lewis, M.A., Davidson, D.H. and Bruce, R.D. | Validation of a four-day Ceriodaphnia test and statistical considerations in data analysis | Environ. Toxicol. Chem. 10 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 143 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 33 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 152 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 155 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 156 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 100 | μg/L | ○ | 12 ECHA Information on Registered Substances | Münzinger A. and Monicelli F. | A comparison of the sensitivity of three Dapnia magna populations under chronic heavy metal stress | Ecotoxicology and Environmental safety 22 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 100 | μg/L | ○ | 12 ECHA Information on Registered Substances | Münzinger A. and Monicelli F. | A comparison of the sensitivity of three Dapnia magna populations under chronic heavy metal stress | Ecotoxicology and Environmental safety 22 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | survival | LOEC | 3 | weeks | 1000 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 251 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 50 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 7 | days | 100 | μg/L | ○ | 12 ECHA Information on Registered Substances | Masters J.A. , Lewis, M.A., Davidson, D.H. and Bruce, R.D. | Validation of a four-day Ceriodaphnia test and statistical considerations in data analysis | Environ. Toxicol. Chem. 10 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 310 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 21 | days | 42 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 25 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 136 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 21 | days | 43 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | survival and emergence | EC10 | 3 | weeks | 420 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 21 | days | 97 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 82 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 29 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | EC10 | 3 | weeks | 420 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 35 | μg/L | ○ | 12 ECHA Information on Registered Substances | Biesinger K.E. and Christensen G.M. | Effects of various metals on survival, growth, reproduction, and metabolism of daphnia magna | Journal of the Fisheries research board of Canada, Vol 29, nr 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 168 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | survival | NOEC | 3 | weeks | 310 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 95 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 50 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 143 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 45 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 54 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 208 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 155 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 4 | days | 50 | μg/L | ○ | 12 ECHA Information on Registered Substances | Masters J.A. , Lewis, M.A., Davidson, D.H. and Bruce, R.D. | Validation of a four-day Ceriodaphnia test and statistical considerations in data analysis | Environ. Toxicol. Chem. 10 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 48 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 83 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 161 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 50 | days | 159 | μg/L | ○ | 12 ECHA Information on Registered Substances | Palauskis J.D. and Winner R.W. | effects of water hardness and humic acid on zinc toxicity to Daphnia magna Straus | Aquatic Toxicologhy 12 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 133 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 73 | μg/L | ○ | 12 ECHA Information on Registered Substances | De Schamphelaere K.A.C., Lofts, S. and Janssen C.R. | Bioavailability models for predicting acute and chronic toxicity of zinc to algae, Daphnids and fish in natural surface waters. | Environm. Toxicol. & Chemistry 24 nr 5 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 92 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 79 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 4 | days | 14 | μg/L | ○ | 12 ECHA Information on Registered Substances | Masters J.A. , Lewis, M.A., Davidson, D.H. and Bruce, R.D. | Validation of a four-day Ceriodaphnia test and statistical considerations in data analysis | Environ. Toxicol. Chem. 10 | 2021/03/02 | ||||||
甲殻類 | Ceriodaphnia dubia | reproduction | NOEC | 1 | weeks | 40 | μg/L | ○ | 12 ECHA Information on Registered Substances | Belanger SE and Cherry DS | Interacting effects of pH acclimation, pH, and heavy metals on acute and chronic toxicity to ceriodphnia dubia (cladocera) | Journal of crustacean biology 10(2) | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 117 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 39 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | growth | NOEC | 3 | weeks | 37 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | growth | LOEC | 3 | weeks | 120 | μg/L | ○ | 12 ECHA Information on Registered Substances | Enserink E.L., Maas-Diepeveen J.L. and Van Leeuwen C.J. | Combined effects of metals: an ecotoxicological evaluation. | Wat. Res. Vol 25, No 6 | 2021/03/02 | ||||||
甲殻類 | Daphnia magna | reproduction and survival | NOEC | 3 | weeks | 143 | μg/L | ○ | 12 ECHA Information on Registered Substances | study report | 2021/03/02 | ||||||||
甲殻類 | Daphnia magna | reproduction | NOEC | 3 | weeks | 154 | μg/L | ○ | 12 ECHA Information on Registered Substances | Heijerick D.G, De Schamphelaere K.A.C. Van Sprang P.A. and Janssen C.R. | Development of a chronic biotic zinc biotic ligand model for Daphnia magna | ecotoxicology and environmental safety 62 | 2021/03/02 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality/Mortality | LT50 | 168 | hours | 2000 | μg/L | × | 16 ECOTOX | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1) | 2020/11/12 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 1 | days | 14300 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2017/03/15 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 2 | days | 9300 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 1.04 | days | 10000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 1.5 | days | 6000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 4 | days | 7800 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 7 | days | 2000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 20 | hours | 12000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 9 | hours | 13000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 18 | hours | 9000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 20 | hours | 8000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 18 | hours | 11000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 11 | hours | 10000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 10 | hours | 14000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2017/03/15 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | 280 | days | 58.6 | ppm | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Satoh,S., T. Takeuchi, and T. Watanabe | Availability to Rainbow Trout of Zinc in White Fish Meal and of Various Zinc Compounds | Nippon Suisan Gakkaishi53(4): 595-599 | 1987 | 2016/03/25 | |||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | 280 | days | 50 | ppm | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Satoh,S., T. Takeuchi, and T. Watanabe | Availability to Rainbow Trout of Zinc in White Fish Meal and of Various Zinc Compounds | Nippon Suisan Gakkaishi53(4): 595-599 | 1987 | 2016/03/25 | |||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | 50 | days | 2750 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Haider,G., and W. Wunder | Experiments with Young Spawners of Rainbow Trout (Salmo gairdneri Rich.) to Evaluate Vertebral and Muscular Damage After Long-Time Exposure to Heavy Metals (Zinc) (Langzeit versuche mit Junglaichern der Regenbogenforelle | Zool. Anz.210(5-6): 296-314 | 1983 | 2016/03/25 | |||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 1.5 | days | 6000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 11 | hours | 10000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 18 | hours | 9000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 20 | hours | 8000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Cellular Effects | 72 | days | 62400 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Haider,G. | Histopathological Effects of Sublethal Poisoning by Heavy Metals upon the Lateral Line System in Rainbow Trout (Salmo gairdneri Rich.) (Histopathologische Veranderungen am Seitenliniensystem der Regenbogenforelle (Salmo | Zool. Anz.203(5-6): 378-391 | 1979 | 2016/03/25 | |||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 7 | days | 2000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 20 | hours | 12000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 1.04 | days | 10000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 9 | hours | 13000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 18 | hours | 11000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Gasterosteus aculeatus (Three-spined stickleback) | Mortality | 2.67 | hours | 0.03 | N | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Jones,J.R.E. | The Relative Toxicity of Salts of Lead, Zinc and Copper to the Stickleback (Gasterosteus aculeatus L.) and the Effect of Calcium on the Toxicity of Lead and Zinc Salts | J. Exp. Biol.15(3): 394-407 | 1938 | 2016/03/25 | |||||||
魚類 | Cyprinus carpio (Carp) | Accumulation | 0.61~17.4 | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Van Ginneken,L., M.J. Chowdhury, and R. Blust | Bioavailability of Cadmium and Zinc to the Common Carp, Cyprinus carpio, in Complexing Environments: A Test for the Validity of the Free Ion Activity | Environ. Toxicol. Chem.18(10): 2295-2304 | 1999 | 2016/03/25 | ||||||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 2 | days | 9300 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality | LT50 | 10 | hours | 14000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1): 115-117 | 1985 | 2016/03/25 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 1 | days | 14300 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2016/03/25 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Growth | 280 | days | 81.1 | ppm | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Satoh,S., T. Takeuchi, and T. Watanabe | Availability to Rainbow Trout of Zinc in White Fish Meal and of Various Zinc Compounds | Nippon Suisan Gakkaishi53(4): 595-599 | 1987 | 2016/03/25 | |||||||
魚類 | Cyprinus carpio (Carp) | Mortality | LC50 | 4 | days | 7800 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5): 445-448 | 1971 | 2016/03/25 | ||||||
魚類 | Pimephales promelas (Fathead minnow) | LC100 | 90 | days | 0.33 | mg Zn/L | 8 NITE 化学物質の初期リスク評価書 | Bengtsson, B.E. | The effects of zinc on the mortality and reproduction of the minnow, phoxinus phoxinus L. | Arch. Environ. Contam. Toxicol. | 1974 | 2016/03/10 | |||||||
魚類 | Cyprinus carpio (Carp) | LC50 | 96 | hours | 7.8 | mg Zn/L | 8 NITE 化学物質の初期リスク評価書 | Rehwoldt, R., Bida, G. and Nerrie, B. | Acute toxicity of copper, nickel and zinc ions to some Hudson River fish species. | Bull. Environ. Contam. Toxicol | 1971 | 2016/03/10 | |||||||
魚類 | Pimephales promelas (Fathead minnow) | LC50 | 96 | hours | 3.2 | mg Zn/L | 8 NITE 化学物質の初期リスク評価書 | Bengtsson, B.E. | The effects of zinc on the mortality and reproduction of the minnow, phoxinus phoxinus L. | Arch. Environ. Contam. Toxicol. | 1974 | 2016/03/10 | |||||||
魚類 | Clupea harengus | Development (ultrastructure of posterior gu | NOEC | 17 | days | 500 | μg/L | ○ | 12 ECHA Information on Registered Substances | Somasundaram B, King PE & Shackley S | The Effect of Zinc on the ultrastructure of the posterior gut and pronephric ducts of the larva of Clupea harengus L | Comp. Biochem. Physiol. 81C (1) | 2021/03/02 | ||||||
魚類 | Clupea harengus | larval development | LOEC | 27 | days | 50 | μg/L | ○ | 12 ECHA Information on Registered Substances | Somasundaram B, King PE & Shackley SE | Some morphological effects of zinc upon the yolk- sac larvae of Clupea harengus L. | J. Fish Biol 25 | 2021/03/02 | ||||||
魚類 | Clupea harengus | development | NOEC | 27 | days | 25 | μg/L | ○ | 12 ECHA Information on Registered Substances | Somasundaram B, King PE & Shackley SE | Some morphological effects of zinc upon the yolk- sac larvae of Clupea harengus L. | J. Fish Biol 25 | 2021/03/02 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality/Mortality | LC50 | 96 | hours | 7800 | μg/L | × | 16 ECOTOX | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5) | 2020/11/12 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality/Mortality | LC50 | 24 | hours | 14300 | μg/L | × | 16 ECOTOX | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5) | 2020/11/12 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality/Mortality | LT50 | 25 | hours | 10000 | μg/L | × | 16 ECOTOX | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1) | 2020/11/12 | ||||||
魚類 | Oncorhynchus mykiss (Rainbow trout) | Mortality/Mortality | LT50 | 36 | hours | 6000 | μg/L | × | 16 ECOTOX | Rombough,P.J. | The Influence of the Zona radiata on the Toxicities of Zinc, Lead, Mercury, Copper and Silver Ions to Embryos of Steelhead Trout Salmo gairdneri | Comp. Biochem. Physiol. C Comp. Pharmacol.82(1) | 2020/11/12 | ||||||
魚類 | Cyprinus carpio (Carp) | Mortality/Mortality | LC50 | 48 | hours | 9300 | μg/L | × | 16 ECOTOX | Rehwoldt,R., G. Bida, and B. Nerrie | Acute Toxicity of Copper, Nickel, and Zinc Ions to Some Hudson River Fish Species | Bull. Environ. Contam. Toxicol.6(5) | 2020/11/12 | ||||||
魚類 | Pimephales promelas | mortality | NOEC | 32 | days | 129 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | reproduction | NOEC | 8 | months | 78 | μg/L | ○ | 12 ECHA Information on Registered Substances | Benoit G.A. and Holcombe G.W. | Toxic effects of zinc on fathead minnows (Pimephales promelas) in soft water | J. Fish. Biol. 13 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | survival, hatchability of offspring, develo | NOEC | 8 | months | 145 | μg/L | ○ | 12 ECHA Information on Registered Substances | Benoit G.A. and Holcombe G.W. | Toxic effects of zinc on fathead minnows (Pimephales promelas) in soft water | J. Fish. Biol. 13 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | length | NOEC | 7 | days | 129 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | mortality | NOEC | 5 | days | 117 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | length | NOEC | 5 | days | 128 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | survival and growth | NOEC | 7 | days | 291 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | length | NOEC | 7 | days | 184 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg, T. J. and Mount, D.I. | A new fathead minnow (Pimephales promelas) subchronic toxicity test | Environm. Tox & Chem. Vol 4 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | mortality | NOEC | 7 | days | 85 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg, T. J. and Mount, D.I. | A new fathead minnow (Pimephales promelas) subchronic toxicity test | Environm. Tox & Chem. Vol 4 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | length | NOEC | 7 | days | 128 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | survival and growth | NOEC | 7 | days | 117 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | growth rate | NOEC | 8 | months | >575 | μg/L | ○ | 12 ECHA Information on Registered Substances | Benoit G.A. and Holcombe G.W. | Toxic effects of zinc on fathead minnows (Pimephales promelas) in soft water | J. Fish. Biol. 13 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | survival and growth | NOEC | 7 | days | 277 | μg/L | ○ | 12 ECHA Information on Registered Substances | Norberg-King T. | an evaluation of the fathead minnow seven-day subchronic test for estimating chronic toxicity | Environm. Tox. & Chem. vol 8 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | morphology | LOEC | 6 | days | 240 | μg/L | ○ | 12 ECHA Information on Registered Substances | Dawson, D.A., Stebler, E.F., Burks S.L. and Bantle J.A. | Evaluation of the developmental toxicity of metal contaminated sediment using short-term fathead minnow and frog embryo-larval assays. | Environm. Tox. & Chem. Vol 7 | 2021/03/02 | ||||||
魚類 | Pimephales promelas | mortality | NOEC | 8 | months | 295 | μg/L | ○ | 12 ECHA Information on Registered Substances | Benoit G.A. and Holcombe G.W. | Toxic effects of zinc on fathead minnows (Pimephales promelas) in soft water | J. Fish. Biol. 13 | 2021/03/02 |