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首页> 外文期刊>Journal of Petroleum & Environmental Biotechnology >Phytotoxicity of Metal Oxide Nanoparticles is Related to Both Dissolved Metals Ions and Adsorption of Particles on Seed Surfaces
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Phytotoxicity of Metal Oxide Nanoparticles is Related to Both Dissolved Metals Ions and Adsorption of Particles on Seed Surfaces

机译:金属氧化物纳米粒子的植物毒性与溶解的金属离子和种子表面上的粒子吸附有关

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摘要

This study assesses the biological effects of nanoparticles (NPs) based on seed germination and root elongation tests. Lettuce, radish and cucumber seeds were incubated with various metal oxide NPs (CuO, NiO, TiO2, Fe2O3, Co3O4), of which only CuO and NiO showed deleterious impacts on the activities of all three seeds. The measured EC50 for seed germinations were: lettuce seed (NiO: 28 mg/L; CuO: 13 mg/L), radish seed (NiO: 401 mg/L; CuO: 398 mg/L), and cucumber seed (NiO: 175 mg/L; CuO: 228 mg/L). Phytotoxicity of TiO2, Fe2O3 and Co3O4 to the tested seeds was not significant, while Co3O4 NP solution (5 g/L) was shown to improve root elongation of radish seedling. Metal oxide NPs tended to adsorb on seed surfaces in the aqueous medium and released metal ions near the seeds. Therefore, metal oxide NPs had higher phytotoxicity than free metal ions of the equivalent concentrations. Further, the surface area-to-volume ratio of seeds may also affect NPs phytotoxicity, whereby small seeds (i.e., lettuce) were the most sensitive to CuO and NiO NPs in our experiments.
机译:这项研究基于种子发芽和根伸长测试评估了纳米颗粒(NPs)的生物效应。将生菜,萝卜和黄瓜种子与各种金属氧化物NPs(CuO,NiO,TiO2,Fe2O3,Co3O4)一起孵育,其中只有CuO和NiO对所有三种种子的活性均具有有害影响。测量的种子发芽EC50为:生菜种子(NiO:28 mg / L; CuO:13 mg / L),萝卜种子(NiO:401 mg / L; CuO:398 mg / L)和黄瓜种子(NiO: 175 mg / L; CuO:228 mg / L)。 TiO2,Fe2O3和Co3O4对被测种子的植物毒性不显着,而Co3O4 NP溶液(5 g / L)被证明可以改善萝卜幼苗的根伸长。金属氧化物NP倾向于吸附在水性介质的种子表面上,并在种子附近释放金属离子。因此,金属氧化物NPs具有比同等浓度的游离金属离子更高的植物毒性。此外,种子的表面积/体积比也可能影响NP的植物毒性,因此在我们的实验中,小的种子(即生菜)对CuO和NiO NP最敏感。

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