论文标题

去除甲基蓝色染料的ZnO和α-FE2O3的缺陷和特性的变化

Variation in defects and properties in composite of ZnO and α-Fe2O3 for methyl blue dye removal

论文作者

Wareppam, Boris, Singh, K. Priyananda, Singh, N. Joseph, Ghosh, Subrata, Aomoa, Ng., Garg, V. K., Oliveira, A. C., Singh, L. Herojit

论文摘要

暴露于〜2000°C后的ZnO和α-FE2O3(ZF-W)的等离子体沉积壁涂层复合材料(ZF-W),主要被视为废物材料并从沉积单元中清除,在300、500和1000°C的退火中进行了退火,以操纵结构性。缺陷状态以及结构变化的演变已被确定为退火温度的变化。结果,发现ZnFe2O4的不稳定状态在500°C下稳定,Zn从ZnO迁移会导致相位从α-FE2O3到ZnFe2O4的相变。虽然实施了用于甲基蓝色的吸附/降解,而没有任何外部来源的影响,但在300°C,500°C和1000°C下退火的降解分别为84%,68%和82%。与退火结构相比,原始ZF-W的甲基蓝色吸附效率为86%。吸附/降解特性的变化与在不同温度下退火时的缺陷和结构特性的同时演变。提出了甲基与复合材料在吸附/降解上相互作用的合理机制。这些发现清楚地表明了在混合金属氧化物复合材料中存在缺陷的重要性,以获得可持续废水处理的高性能降解/吸附特性。

The plasma deposition wall coated composite of ZnO and α-Fe2O3 (ZF-W) after exposure to ~ 2000 °C, mostly considered as waste-materials and cleaned out from the deposition unit, was subjected to anneal at 300, 500 and 1000 °C to manipulate the structural properties. An evolution of defect states along with the structural changes has been identified as annealing temperature was varied. As a consequence, an unstable state of ZnFe2O4 was found to be stabilized at 500 °C and migration of Zn from ZnO causes the phase transformation from the α-Fe2O3 to ZnFe2O4. While implemented for methyl blue adsorption/degradation without the effect of any external sources, the degradation for ZF-W annealed at 300 °C, 500 °C and 1000 °C were 84%, 68% and 82%, respectively. Compared to annealed structures, pristine ZF-W delivered the highest methyl blue adsorption efficiency of 86%. The changes in adsorption/degradation properties have been correlated with the simultaneous evolution of defects and structural properties of ZF-W as annealed at different temperatures. The plausible mechanism on the interaction of methyl blue with the composites on the adsorption/degradation is proposed. These findings give a clear indication on the importance of defects presence in the mixed metal oxide composite to obtain high-performance degradation/adsorption properties for sustainable wastewater treatment.

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