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Nanotechnological Application Based on CoFe2O4 Nanoparticles and Electromagnetic Exposure on Agrotechnical Plant Growth

机译:基于COFE2O4纳米粒子的纳米技术应用及电磁暴露于农业技术植物生长

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This study is focused on the bioeffects of nano-particulate metallic matter and electromagnetic exposure on agrotechnical plant cultures, designed in the general context of soil, water and air pollution. Nanotechnological procedure was carried out to yield magnetic nanoparticles (MNPs) similar to those used for various biomedical purposes for human life improvement but finally leading to MNPs delivery in the waste waters and consequently loading soil with metal ions. CoFe2O4 MNPs were synthesized by chemical route and suspended in deionized water. Microstructural and magnetic properties were evidenced by investigations through standard solid state methods. Equal volumes of 80 μl/l MNP suspension equivalent to 10~(16) MNPs/ml were supplied to Helianthus annum seedlings for 12 days. Identical sample array was exposed also to low power density microwaves for 1-2-4 hours daily. Plant response was observed using measurements of assimilatory pigment contents in green tissues of seedlings.
机译:本研究专注于纳米颗粒金属物质和电磁暴露对农业技术植物培养物的电磁暴露,设计在土壤,水和空气污染的一般背景下。进行纳米技术程序以产生磁性纳米颗粒(MNP),其类似于用于人类生活改善的各种生物医学目的的那些,但最终导致废水中的MNP递送,因此用金属离子装载土壤。通过化学途径合成COFE2O4 MNP并悬浮在去离子水中。通过标准固态方法的研究证明了微观结构和磁性。等同量为80μl/ l MnP悬浮液,其当量为10〜(16)mnps / ml,供给Helianthus幼苗12天。相同的样品阵列也暴露于每天1-2-4小时的低功率密度微波。使用幼苗绿色组织中的同化颜料含量的测量观察植物反应。

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