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ACUTE TOXICITY OF NANOSIZED TiO_2 TO DAPHNIA MAGNA UNDER UVA IRRADIATION

机译:紫外线辐照下纳米TiO_2对水蚤的急性毒性

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The production and use of nanoparticles (NPs), especially those of titanium dioxide (TiO_2) have increased steadily within the last decade. Common knowledge of photoactive nanosized TiO_2 (nTiO_2) effects on freshwater organisms is largely limited to acute toxicity tests without taking into consideration solar ultraviolet-A (UVA) irradiation. The authors' approach in the present study, based on a combination of a standardized ecotoxicology method (Organization for Economic Cooperation and Development [OECD] test 202) and the expected solar UVA contribution, will allow a more realistic understanding of the toxicity of TiO_2 to Daphnia magna. The results show that the contribution of UVA to TiO_2 toxicity cannot be ignored. The half-maximal effective concentration values (median effective concentration [EC50], immobilization as the endpoint) using Organization for Standardization (ISO) test water as well as river water decreased from 29.7 to 33.6mg/L under dark conditions to 1.2 to 3.4mg/L TiO_2 after exposure to 0.56mW/cm~2 UVA radiation. The authors also discuss possible mechanisms of NPs toxicity and the accuracy of results in terms of problems observed, such as solubilization and sedimentation of NPs, in ecotoxicological testing of nTiO_2.
机译:在过去的十年中,纳米颗粒(NPs),特别是二氧化钛(TiO_2)的生产和使用稳步增长。在不考虑太阳紫外线A(UVA)辐射的情况下,光活性纳米TiO_2(nTiO_2)对淡水生物的影响的常识在很大程度上仅限于急性毒性试验。在本研究中,作者的方法基于标准化的生态毒理学方法(经济合作与发展组织[OECD]测试202)和预期的太阳UVA贡献的结合,将使人们更现实地了解TiO_2对水蚤。结果表明,UVA对TiO_2毒性的贡献不可忽视。使用标准化组织(ISO)测试水和河水的最大有效浓度值的一半(中值有效浓度[EC50],固定为终点)在黑暗条件下从29.7降低至33.6mg / L,降至1.2至3.4mg暴露于0.56mW / cm〜2 UVA辐射后的/ L TiO_2。作者还根据nTiO_2的生态毒理学测试中观察到的问题(例如NP的增溶和沉淀),讨论了NPs毒性的可能机理和结果的准确性。

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