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Ultrasound-assisted synthesis of nanosized zero-valent iron for metal cations extraction and wastewater treatment applications

机译:用于金属阳离子提取和废水处理应用的纳米零价铁的超声辅助合成

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Nanosized zero-valent iron has shown good results in wastewater treatment and activation of physicochemical processes. Its applications in modern industry are complicated by high production costs of nanomaterials produced via existing synthesis routes. Therefore there is a need of cheap and high-productive methods of nanosized zero-valent iron with advanced functional properties. Improvement of oxidative conditions with additions may find its place in extraction of rare-earth metals, where high cost of nanomaterials could be viable. In this paper we studied an effect of ultrasonic irradiation on specific surface area and particle size of nanosized zero-valent iron synthesized by methods of chemical precipitation with high-temperature reduction in hydrogen flow and sodium borohydride reduction. Obtained results showed significant decrease of particle size and differences in particles morphology depending on presence of ultrasonication during synthesis and on chosen method. For ultrasonic-assisted synthesis with 100 % amplitude, particle size calculated from specific surface area was 70 nm for sample synthesized by chemical precipitation with high-temperature reduction and 35 nm for borohydide reduction method compared to 63 nm for reference sample without ultrasonication.
机译:纳米化零价铁在废水处理和物理化学过程的激活方面表现出良好的结果。其在现代行业的应用是通过现有综合路线生产的纳米材料的高生产成本复杂化。因此,需要具有廉价和高效的纳米零价铁具有先进的功能性质。添加氧化条件的提高可以在稀土金属的提取中找到它的位置,其中纳米材料的高成本可能是可行的。本文研究了通过化学沉淀方法和硼氢化钠的高温降低的化学沉淀方法对纳米化零价铁的特定表面积和粒径的特定表面积和粒度的影响。得到的结果表明,根据合成期间的超声发生和选择的方法,粒度显着降低和颗粒形态的差异。对于具有100%幅度的超声辅助合成,通过具有高温降低的化学沉淀合成的样品为70nm,具有高温还原,对于硼氢化剂的35nm,与63nm用于参考样品而没有超声。

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