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首页> 外文期刊>Separation and Purification Technology >Rapid photodegradation of methyl blue on magnetic Zn_(1-x)Co_xFe2O4 nanoparticles synthesized by hydrothermal process
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Rapid photodegradation of methyl blue on magnetic Zn_(1-x)Co_xFe2O4 nanoparticles synthesized by hydrothermal process

机译:水热法合成磁性Zn_(1-x)Co_xFe2O4纳米粒子上甲基蓝的快速光降解

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摘要

Zinc cobalt ferrite Zn_(1-x)Co_xFe2O4 (x = 0-1.0) nanoparticles with magnetic separation ability from photo-catalysis system were synthesized by hydrothermal method. Effects of zinc content on the microstruc-ture, surface alkaline-acidic behavior and photocatalytic property of the nanoparticles were studied. The oxidation-reduction potential of the nanoparticles in photocatalysis condition was obviously negative and decreased with the increase in Co content. The photodegradation rate of methyl blue aqueous solution on the nanoparticles increased as the increase of Co content under sunlight. The variations of the oxidation-reduction potential and photocatalytic rate with Co content were discussed on basis of the light absorbance, microstructure, and physicochemical characteristics of the nanoparticles. The ferrite nanoparticles all showed a ferromagnetic behavior with the saturation magnetization of ~39.7-65.9 emu/g, which can ensure magnetic separable performance of the nanoparticles from the photodegradation systems.
机译:采用水热法合成了具有光分离能力的光催化分离锌钴铁氧体Zn_(1-x)Co_xFe2O4(x = 0-1.0)纳米粒子。研究了锌含量对纳米粒子的微观结构,表面碱酸行为和光催化性能的影响。纳米粒子在光催化条件下的氧化还原电位明显为负,并随着Co含量的增加而降低。在阳光下,甲基蓝水溶液在纳米粒子上的光降解速率随着Co含量的增加而增加。根据纳米粒子的吸光度,微观结构和理化特性,探讨了氧化还原电位和光催化速率随Co含量的变化。铁氧体纳米粒子均表现出铁磁行为,饱和磁化强度约为〜39.7-65.9 emu / g,这可以确保纳米粒子与光降解系统的磁可分离性能。

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