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Fe Oxides Loaded on Carbon Cloth by Hydrothermal Process as an Effective and Reusable Heterogenous Fenton Catalyst

机译:水热法将Fe氧化物负载在碳布上作为一种有效且可重复使用的非均相Fenton催化剂

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摘要

Iron based heterogeneous Fenton catalysts are attracting much attention for its economic and environmental friendly characteristics. In this study, iron oxides loaded carbon cloth (assigned as [email?protected] ) was prepared using hydrothermal hydrolysis of Fe(NO 3 ) 3 . The specific surface area of [email?protected] determined by N 2 adsorption–desorption Brunauer–Emmett–Teller method was up to 1325.5 m 2 /g, which increased by 81.8% compared with that of native carbon cloth mainly due to the loading of iron oxide. XPS (X-ray photoelectron spectroscopy) spectra confirmed that the iron oxide on the carbon surface included mainly FeOOH. Its heterogeneous Fenton-like activity was determined using Acid Red G as a model substrate for degradation. [email?protected] maintained high and relatively stable activity during 11 tests, and it showed high COD (Chemical Oxygen Demand) removal efficiency and high apparent H 2 O 2 utilization efficiency. The homogeneous Fenton reaction using the amount of leached Fe(III) suggested that the surficial reaction on [email?protected] was dominant. The stability and the mechanism for gradual decrease of activity during the first 4 tests were also discussed.
机译:铁基非均质Fenton催化剂因其经济和环境友好的特性而备受关注。在这项研究中,使用Fe(NO 3)3进行水热水解制备了载有氧化铁的碳布(指定为[email?protected])。通过N 2吸附-解吸Brunauer-Emmett-Teller方法测定的[受电子邮件保护]的比表面积高达1325.5 m 2 / g,比天然碳布增加81.8%,这主要是由于碳布的负载氧化铁。 XPS(X射线光电子能谱)光谱证实碳表面上的氧化铁主要包含FeOOH。使用酸性红G作为降解的模型底物,确定了其异类的芬顿样活性。 [受电子邮件保护]在11次测试中保持了较高且相对稳定的活性,并且显示出较高的COD(化学需氧量)去除效率和较高的表观H 2 O 2利用率。使用一定量的浸出的Fe(III)进行均相Fenton反应,表明在[电子邮件保护的]表面反应占主导地位。还讨论了在前4个测试中活性逐渐降低的稳定性和机理。

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