FeSiBPY非晶合金带在降解不同结构染料中的优异催化性能

IF 2.3 4区 化学 Q3 CHEMISTRY, PHYSICAL
Li Ji, Ran Yu, Wangpeng Qiu, Jin Liu
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引用次数: 0

摘要

Fe78Si7B12.4P2Y0.6非晶合金带在处理不同结构的染料时表现出优异的降解性能。Fe78Si7B12.4P2Y0.6非晶态合金带可以在10 min内几乎完全降解Orange II偶氮染料、孔雀石绿(MG)二氨基三苯甲烷染料及其混合染料。降解前后的表面形貌和电子结构分析表明,密集分布的纳米孔结构和Fe-P和Fe-B之间形成的原电池有助于提高类芬顿过程的降解性能。MG染料的反应速率常数为0.269 min−1,高于橙ⅱ偶氮染料的0.123 min−1,说明在相同的反应条件下,不同的染料结构对合金的降解性能有一定的影响。此外,还考察了Fe78Si7B12.4P2Y0.6非晶合金带在不同的类芬顿反应条件下对MG染料的降解性能,包括不同的初始染料浓度、温度、pH值和催化剂添加量。结果表明,最佳反应条件为:Ccat = 6 g/L, CMG染料= 10 mg/L, CH2O2 = 10 mM, pH = 3,温度= 65℃。本研究对促进铁基非晶合金的工业应用具有重要的现实意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Excellent Catalytic Performance of FeSiBPY Amorphous Alloy Ribbons in the Degradation of Different Structure Dyes

Fe78Si7B12.4P2Y0.6 amorphous alloy ribbons are proved to show excellent degradation performance in the treatment of dyes with diverse structures. The Fe78Si7B12.4P2Y0.6 amorphous alloy ribbons can degrade Orange II azo dye, Malachite green (MG) diamino-triphenylmethane dye and their mixed dye almost completely within 10 min. Analysis of the surface morphologies and electronic structure before and after degradation reveals that the densely distributed nano-porous structure and the galvanic cell formed between Fe–P and Fe-B contribute to enhancing the degradation performance in Fenton-like process. The reaction rate constant of MG dye is 0.269 min−1, which is higher than that of orange II azo dye (0.123 min−1), indicating that different dye structure have certain effects on the degradation performance of the alloy under the same reaction conditions. Furthermore, the degradation performance of Fe78Si7B12.4P2Y0.6 amorphous alloy ribbons on MG dye was also evaluated under various Fenton-like reaction conditions, including different initial dye concentrations, temperatures, pH levels, and catalyst additions. The results showed that the optimum reaction conditions: Ccat = 6 g/L, CMG dye = 10 mg/L, CH2O2 = 10 mM, pH = 3, T = 65 ℃. This study has great practical significance for promoting the industrial application of Fe-based amorphous alloys.

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来源期刊
Catalysis Letters
Catalysis Letters 化学-物理化学
CiteScore
5.70
自引率
3.60%
发文量
327
审稿时长
1 months
期刊介绍: Catalysis Letters aim is the rapid publication of outstanding and high-impact original research articles in catalysis. The scope of the journal covers a broad range of topics in all fields of both applied and theoretical catalysis, including heterogeneous, homogeneous and biocatalysis. The high-quality original research articles published in Catalysis Letters are subject to rigorous peer review. Accepted papers are published online first and subsequently in print issues. All contributions must include a graphical abstract. Manuscripts should be written in English and the responsibility lies with the authors to ensure that they are grammatically and linguistically correct. Authors for whom English is not the working language are encouraged to consider using a professional language-editing service before submitting their manuscripts.
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