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Bacterial production of vanadium ferrite spinet (Fe,V)(3)O-4 nanoparticles

机译:钒铁素体纺丝夹(Fe,V)(3)O-4纳米粒子的细菌生产

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摘要

Biogenic nanoscale vanadium magnetite is produced by converting V(V)-bearing ferrihydrites through reductive transformation using the metal-reducing bacterium Geobacter sulfurreducens. With increasing vanadium in the ferrihydrite, the amount of V-doped magnetite produced decreased due to V-toxicity which interrupted the reduction pathway ferrihydrite-magnetite, resulting in siderite or goethite formation. Fe L-2,L-3 and V L-2,L-3 X-ray absorption spectra and data from X-ray magnetic circular dichroism analysis revealed the magnetite to contain the V in the Fe(III) Oh site, predominately as V(III) but always with a component of V(VI), present a consistent V(IV)/V(III) ratio in the range 0.28 to 0.33. The bacteriogenic production of V-doped magnetite nanoparticles from V-doped ferrihydrite is confirmed and the work reveals that microbial reduction of contaminant V(V) to V(III)/V(IV) in the environment will occur below the Fe-redox boundary where it will be immobilised in biomagnetite nanoparticles.
机译:生物纳米级钒磁铁矿由使用金属还原细菌的细菌硫化琥珀素通过还原转化转换V(v) - bearing ferrihydrate来生产。随着Ferrihydrite中的增加钒,由于V毒性而产生的V掺杂磁铁矿的量减少,其中断了减少途径Ferrihydite-磁铁矿,导致含有潮热的或可啮合的形成。 Fe L-2,L-3和V L-2,L-3 X射线吸收光谱和来自X射线磁性圆形二色性分析的数据显示,磁铁矿在Fe(III)oh网站中含有V的v,主要是V(III)但总是具有V(VI)的组分,呈现在0.28至0.33范围内的一致V(IV)/ V(III)比。从V掺杂的Ferrihydrite的V掺杂磁铁矿纳米粒子的细菌产生得到证实,并且该工作表明,在Fe-Redox边界下方将发生环境中的污染物V(v)至V(III)/ v(iv)的微生物减少它将固定在生物镀锡纳米粒子中。

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