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Engineering Iron Oxide Nanocatalysts by a Microwave-Assisted Polyol Method for the Magnetically Induced Degradation of Organic Pollutants

机译:通过微波辅助多元醇法工程氧化铁纳米催化剂用于有机污染物的磁血液诱导降解

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摘要

Advanced oxidation processes constitute a promising alternative for the treatment of wastewater containing organic pollutants. Still, the lack of cost-effective processes has hampered the widespread use of these methodologies. Iron oxide magnetic nanoparticles stand as a great alternative since they can be engineered by different reproducible and scalable methods. The present study consists of the synthesis of single-core and multicore magnetic iron oxide nanoparticles by the microwave-assisted polyol method and their use as self-heating catalysts for the degradation of an anionic (acid orange 8) and a cationic dye (methylene blue). Decolorization of these dyes was successfully improved by subjecting the catalyst to an alternating magnetic field (AMF, 16 kA/m, 200 kHz). The sudden temperature increase at the surface of the catalyst led to an intensification of 10% in the decolorization yields using 1 g/L of catalyst, 0.3 M H2O2 and 500 ppm of dye. Full decolorization was achieved at 90 °C, but iron leaching (40 ppm) was detected at this temperature leading to a homogeneous Fenton process. Multicore nanoparticles showed higher degradation rates and 100% efficiencies in four reusability cycles under the AMF. The improvement of this process with AMF is a step forward into more sustainable remediation techniques.
机译:先进的氧化方法构成有希望的替代含有有机污染物废水的替代方案。尽管如此,缺乏成本效益的流程阻碍了这些方法的广泛使用。氧化铁磁性纳米粒子作为一种伟大的替代方案,因为它们可以通过不同的可再现和可扩展的方法设计。本研究包括通过微波辅助多元醇法合成单芯和多芯磁性氧化铁纳米颗粒及其作为自加热催化剂的用途,用于降解阴离子(酸橙8)和阳离子染料(亚甲基蓝色) )。通过使催化剂进行交替磁场(AMF,16ka / m,200kHz)来成功地改善了这些染料的脱色。催化剂表面的突然温度升高导致使用1g / L催化剂,0.3M H 2 O 2和500ppm的染料在脱色产率中引起10%的强化。在90℃下实现全脱色,但在该温度下检测到铁浸出(40ppm),导致均匀的Fenton方法。多核纳米颗粒在AMF下的四个可重用性循环中显示出更高的降解率和100%效率。随着AMF的改进是进入更可持续的修复技术的一步。

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