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Biogenesis of Magnetite Nanoparticles Using Shewanella Species Isolated from Diverse Regions

机译:磁铁矿纳米粒子的生物发生,使用不同地区分离的肺乳菌物种

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The objective of this study was to synthesize magnetite (Fe3O4) nanoparticles using diverse Shewanella species isolated from different environments. Magnetite formation experiments were performed with 11 species of Shewanella using akaganeite (beta-FeOOH) as an electron acceptor and lactate (C3H6O3) as an electron donor under a N-2 atmosphere at room temperature. Magnetites and other products formed by the bacteria were characterized by XRD and TEM-EDS analyses. In this study, all the strains of Shewanella species produced magnetite nanoparticles with 2.5 to 20 nm in size. However, the size of the magnetite varied with the species of Shewanella, and a few species formed Fe(III) oxide as secondary minerals such as goethite and lepidocrocite. These results indicate that different species of iron-reducing bacteria belonging to the genus Shewanella exhibit different rates of Fe(III) reduction resulting in magnetite nanocrystals of varying size and formation of secondary mineral species.
机译:本研究的目的是利用不同环境中分离的不同肺坦物种合成磁铁矿(Fe3O4)纳米颗粒。 使用Akaganeite(β-FeOOH)作为电子受体和乳酸盐(C3H6O3),在室温下的N-2气氛下作为电子供体进行11种Shewanella用11种肺切割物进行。 通过XRD和TEM-EDS分析表征由细菌形成的磁纤干和其他产品的特征。 在这项研究中,所有肺坦加物种菌株生产的磁铁矿纳米颗粒的尺寸为2.5至20nm。 然而,磁铁矿的尺寸随着沉肠种类而变化,并且几种物种形成Fe(III)氧化物作为脱晶矿物,例如霉菌和鳞片。 这些结果表明,属于Shewanella属的不同种类的铁还原细菌表现出不同的Fe(III)的速率,从而产生不同尺寸和二次矿物质的形成的磁铁矿纳米晶体。

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