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NTIS 바로가기청정기술 = Clean technology, v.21 no.1, 2015년, pp.39 - 44
구본우 (영남대학교 환경공학과) , 이민경 (영남대학교 환경공학과) , 석우도 (영남대학교 환경공학과) , 공인철 (영남대학교 환경공학과)
This study investigated the effects of six metal oxide nanoparticles (NPs: CuO, NiO, TiO2, Fe2O3, Co3O4, ZnO) on seed germination and germination index (G.I) for five types of seeds: Brassica napus L., Malva verticillata L., Brassica olercea L., Brassica campestris L., Daucus carota L. NPs of CuO, Z...
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Kim, M. S., Choi, K. H., Kim, Y. H., and Yi, J. H., "Risk Assessment for Health and Environmental Hazards of Nanomaterials," Clean Technol., 13(3), 161-172 (2007).
Maeng, S. H., and Yu, I. J., "The Concepts of Nanotoxicology and Risk Assessment of the Nanoparticles," J. Toxicol. Pub. Health, 21(2), 87-98 (2005).
Oberdrster, G., Oberdrster, E., and Oberdrster, J., "Nanotoxicology: An Emerging Discipline Evolving from Studies of Ultrafine Particles," Environ. Health Perspect., 113, 823-839 (2005).
Kong, I. C., Kwon, H. J., and Ko, K. S., "Bioassessment and Comparison of Toxicity of Arsenics based on the Results of Various Bioassays," J. Kor. Soc. Environ. Eng., 32(8), 795-801 (2010).
Yang, L., and Watts, D. J., "Particle Surface Characteristics may play an Important role in Phytotoxicity of Alumina Nanoparticles," Toxicol. Lett., 158(2), 122-132 (2005)
Lin, D., and Xing, B., "Phytotoxicity of Nanoparticles: Inhibition of Seed Germination and Root Growth," Environ. Pollut., 150(2), 243-250 (2007)
US. EPA., "Ecological Effects Test Guidelines-Seed Germination/ Root Elongation Toxicity Test," 712-C-96-154(1996).
Liu, X., Zhang, S., Shan, X., and Zhu, Y-G., "Toxicity of Arsenate and Arsenite on Germination, Seedling Growth and Amylolytic Activity of Wheat," Chemosphere, 61, 293-301 (2005).
Kim, S., H., Jung, M., A. and Lee, I., S., "Size-dependent Toxicity of Metal Oxide Particles on the Soil Microbial Community and Growth of Zea Mays," J. Kor. Environ. Eng., 31(12), 1069-1074 (2009).
Kim, S. H., Baek, J. H., Song, Y. R., Sin, M. J., and Lee, I. S., "Characterization and Phytotoxicity of Zn, Zn Oxide Nanoparticles," J. Kor. Soc. Environ. Eng., 1129-1134 (2009).
Bang, S., H., Le, T., H., Lee, S., K., Kim, P., Kim, J., S., and Min, J., " Toxicity Assessment of Titanium (IV) Oxide Nanoparticles Using Daphnia magna (Water Flea)," Environ. Health Toxicol., 26, 14-19 (2011).
Mankiewicz-Boczek, J., Nalecz-Jawecki, G., Dro-bniewska, A., Kaza, M., Sumorok, B., Izydorczyk, K., Zalewski, M. and Sawicki, J., "Application of a Microbiotests Battery for Complete Toxicity Assessment of Rivers," Ecotox. Environ. Saf., 71, 830-836 (2008).
Kungolos, A., Emmanouil, C., Tsiridis, V., and Tsiropoulos, N., "Evaluation of Toxic and Interactive Toxic Effects of Three Agrochemicals and Copper Using a Battery of Microbiotests," Sci. Total Environ, 407, 4610-4615 (2009).
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