Research of nanosized iron oxide powder as a biologically active material

V. Kataev, M. A. Fedotov, N. A. Andreeva, A. Fomina, V. A. Volchenkova, A. A. Alpatov
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Abstract

A polydisperse nanopowder of iron oxide, consisting of hematite α-Fe2O3 and magnetite Fe3O4, was obtained by the method of solid-phase reduction of iron hydroxide Fe(OH)3. On the basis of the obtained iron oxide nanopowder, aqueous suspensions were prepared in the concentration range of 0.25 – 1.25 mg/l with a particle dispersion of 100 – 400 nm. To assess the biological activity of iron oxide nanopowder, pre-sowing treatment of corn seeds Zéa máys was carried out. It has been established that the treatment with nanoparticles has a stimulating effect on the development of the plant organism, making it possible to achieve an increase in germination by 15% and root mass by 23%. Determination of the quantitative content of iron in different parts of the plant was carried out using atomic emission and atomic absorption spectroscopy. It was shown that as a result of treatment of plants with iron nanoparticles, its accumulation in the root mass with subsequent redistribution to the leaves to stimulate the process of photosynthesis is observed.
纳米氧化铁粉作为生物活性材料的研究
采用氢氧化铁Fe(OH)3固相还原法制备了由赤铁矿α-Fe2O3和磁铁矿Fe3O4组成的多分散纳米氧化铁粉体。在得到氧化铁纳米粉的基础上,制备了浓度为0.25 ~ 1.25 mg/l,颗粒分散为100 ~ 400 nm的水相悬浮液。为评价氧化铁纳米粉的生物活性,对玉米种子z máys进行了播前处理。已经证实,纳米颗粒处理对植物有机体的发育有刺激作用,可以使发芽率增加15%,根质量增加23%。采用原子发射光谱法和原子吸收光谱法测定了该植物不同部位铁的定量含量。结果表明,铁纳米粒子处理植物后,其在根质量中积累,随后再分配到叶片,以刺激光合作用过程。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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