【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 | Desmodesmus subspicatus | growth rate | EC50 | 72 | hours | 32.7 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1989 | 2016/03/04 | ||||||
藻類 | Desmodesmus subspicatus | growth rate | EC10 | 72 | hours | 15.1 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1989 | 2016/03/04 | ||||||
甲殻類 | Daphnia magna | EC50 | 48 | hours | 108.82 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1987 | 2016/03/04 | |||||||
甲殻類 | Daphnia magna | EC100 | 48 | hours | 250 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1987 | 2016/03/04 | |||||||
甲殻類 | Daphnia magna | EC0 | 48 | hours | 62.5 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1987 | 2016/03/04 | |||||||
魚類 | Carassius auratus (Goldfish) | Mortality | LC50 | 4 | days | 210000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bridie,A.L., C.J.M. Wolff, and M. Winter | The Acute Toxicity of Some Petrochemicals to Goldfish | Water Res.13(7): 623-626 | 1979 | 2016/03/25 | ||||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC50 | 4 | days | 2520000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Brooke,L.T., D.J. Call, D.L. Geiger, and C.E. Northcott | Acute Toxicities of Organic Chemicals to Fathead Minnows (Pimephales promelas), Vol. 1 | Center for Lake Superior Environmental Studies, University of Wisconsin-Superior, Superior, WI:414 p. | 1984 | 2016/03/25 | ||||||
魚類 | Carassius auratus (Goldfish) | Mortality | LC50 | 1 | days | 220000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bridie,A.L., C.J.M. Wolff, and M. Winter | The Acute Toxicity of Some Petrochemicals to Goldfish | Water Res.13(7): 623-626 | 1979 | 2016/03/25 | ||||||
魚類 | Carassius auratus (Goldfish) | Mortality | LC50 | 1 | days | >5000000 | μg/L | 16 US EPA AQUIRE (AQUatic toxicity Information REtrieval) | Bridie,A.L., C.J.M. Wolff, and M. Winter | The Acute Toxicity of Some Petrochemicals to Goldfish | Water Res.13(7): 623-626 | 1979 | 2016/03/25 | ||||||
魚類 | Leuciscus idus (Orfe) | LC50 | 96 | hours | >1000 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | study report | 1987 | 2016/03/04 | |||||||
魚類 | Carassius auratus (Goldfish) | LC50 | 210 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | Bridie AL et al. | The acute toxicity of some petrochemicals to goldfish | Water Research | 1979 | 2016/03/04 | |||||||
魚類 | Pimephales promelas (Fathead minnow) | LC50 | 96 | hours | 2520 | mg/L | × | 12 ECHA Information on Registered Substances | 2 | publication | 1984 | 2016/03/04 | |||||||
魚類 | Leuciscus idus (Orfe) | LC50 | 96 | hours | 215~464 | × | 12 ECHA Information on Registered Substances | 2 | study report | 1987 | 2016/03/04 | ||||||||
魚類 | Pimephales promelas (Fathead minnow) | Mortality | LC50 | 96 | hours | 2540 | mg/L | 17 Aquatic OASIS (OECD QSAR Toolbox) | Russom, C.L., Bradbury, S.P., Broderius, S.J., Drummond, R.A. and Hammermeister, D.E. | PREDICTING MODES OF TOXIC ACTION FROM CHEMICAL STRUCTURE: ACUTE TOXICITY IN THE FATHEAD MINNOW (PIMEPHALES PROMELAS) | 1997 | 2016/02/08 | |||||||
魚類 | Poecilia reticulata (Guppy) | Mortality | LC50 | 96 | hours | 2490 | mg/L | 17 Aquatic OASIS (OECD QSAR Toolbox) | Raevsky, O.A., and Dearden, J.C. | Creation of predictive models of aquatic toxicity of environmental pollutants with different mechanisms of action on the basis of molecular similarity and hybot descriptors. | 2004 | 2016/02/08 |