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Ultra-sustainable Fe78Si9B13 metallic glass as a catalyst for activation of persulfate on methylene blue degradation under UV-Vis light

机译:超可持续的Fe78Si9B13金属玻璃作为催化剂,可在紫外-可见光下降解亚甲蓝时过硫酸盐的活化

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摘要

Stability and reusability are important characteristics of advanced catalysts for wastewater treatment. In this work, for the first time, sulfate radicals (SO4∙−) with a high oxidative potential (Eo = 2.5–3.1 V) were successfully activated from persulfate by a Fe78Si9B13 metallic glass. This alloy exhibited a superior surface stability and reusability while activating persulfate as indicated by it being used for 30 times while maintaining an acceptable methylene blue (MB) degradation rate. The produced SiO2 layer on the ribbon surface expanded strongly from the fresh use to the 20th use, providing stable protection of the buried Fe. MB degradation and kinetic study revealed 100% of the dye degradation with a kinetic rate k = 0.640 within 20 min under rational parameter control. The dominant reactive species for dye molecule decomposition in the first 10 min of the reaction was hydroxyl radicals (∙OH, Eo = 2.7 V) and in the last 10 min was sulfate radicals (SO4∙−), respectively. Empirical operating variables for dye degradation in this work were under catalyst dosage 0.5 g/L, light irradiation 7.7 μW/cm2, and persulfate concentration 1.0 mmol/L. The amorphous Fe78Si9B13 alloy in this work will open a new gate for wastewater remediation.
机译:稳定性和可重复使用性是用于废水处理的高级催化剂的重要特征。在这项工作中,Fe78Si9B13金属玻璃首次成功地从过硫酸盐中成功激活了具有高氧化电位(Eo = 2.5–3.1 V)的硫酸根(SO4∙-)。该合金表现出优异的表面稳定性和可重复使用性,同时活化过硫酸盐(如使用30次所示),同时保持可接受的亚甲基蓝(MB)降解速率。带状表面上产生的SiO2层从新鲜使用到第20次使用都有很大的膨胀,为埋入铁提供了稳定的保护。 MB降解和动力学研究表明,在合理的参数控制下,20分钟内100%的染料降解,动力学速率k = 0.640。在反应的前10分钟,染料分子分解的主要反应物种为羟基自由基(∙OH,Eo = 2.7 V),而在最后10分钟为硫酸根(SO4∙-)。在这项工作中,染料降解的经验操作变量是在催化剂用量0.5 g / L,光辐照7.7μW/ cm2和过硫酸盐浓度1.0 mmol / L的条件下进行的。这项工作中的非晶态Fe78Si9B13合金将为废水修复打开新的大门。

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