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Iron nanoparticles for plant nutrition: Synthesis, transformation, and utilization by the roots of Cucumis sativus

机译:用于植物营养的铁纳米颗粒:黄瓜根系的合成、转化和利用

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摘要

Nanotechnology has been evolving in the past decades as an alternative to conventional fertilizers. Ferrihydrite nanoparticles that model the available Fe pool of soils are proposed to be used to recover Fe deficiency of plants. Nevertheless, ferrihydrite aqueous suspensions are known to undergo slow transformation to a mixture of goethite and hematite, which may influence its biological availability. Several nanocolloid suspensions differing in the surfactant type were prepared for plant treatment and fully characterized by transmission electron microscopy and Fe-57 Mossbauer spectroscopy supported by magnetic measurements. The rate of transformation and the final mineral composition were revealed for all the applied surfactants. Nanomaterials at different stages of transformations were the subject of plant physiological experiments aiming at comparing the behavior and plant accessibility of the manufactured suspensions of nanoscale iron(III) oxide and oxide-hydroxide particles.
机译:在过去的几十年里,纳米技术一直在发展,成为传统肥料的替代品。建议使用模拟土壤中可用铁库的铁氢石纳米颗粒来恢复植物的铁缺乏。然而,已知铁氢溶石水悬浮液会缓慢转变为针铁矿和赤铁矿的混合物,这可能会影响其生物可用性。制备了几种不同表面活性剂类型的纳米胶体悬浮液用于植物处理,并通过透射电子显微镜和磁性测量支持的Fe-57 Mossbauer光谱进行了充分表征。揭示了所有应用表面活性剂的转化速率和最终矿物成分。处于不同转化阶段的纳米材料是植物生理学实验的主题,旨在比较纳米级氧化铁(III)和氧化物-氢氧化物颗粒的制造悬浮液的行为和植物可及性。

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