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Preparation and characterization of bimetallic Fe-Cu allophane nanoclays and their activity in the phenol oxidation by heterogeneous electro-Fenton reaction

机译:双金属Fe-Cu铝脲烷纳米粘土的制备,表征及其在非均相电Fenton反应中酚氧化中的活性

摘要

Bimetallic (Fe-Cu) allophane nanoclays were synthesized using a two-step wet impregnation method with different Fe/Cu ratios. The catalytic activities of bimetallic (Fe-Cu) allophane were studied for phenol oxidation by heterogeneous electro-Fenton reaction (HEF) at different initial pHs (3.0 and 5.5), and were compared with Fe-allophane and Cu-allophane catalysts. A glassy carbon electrode modified with the bimetallic allophane nanoclays was used as working electrode. FTIR, SEM, X-ray diffraction, XPS, Mössbauer spectroscopy and N adsorption-desorption were used to characterize the catalysts, and indicated the formation of small copper oxide particles stabilized by iron oxide species. Phenol conversion by HEF process at initial pH 3.0 was near 100% for all bimetallic (Fe-Cu) allophane nanoclays in less than 2 h of reaction, following an exponential decay. The chemical oxygen demand (COD) removal was less than 47% for Cu-allophane and 65% for Fe-allophane, whereas for the bimetallic (Fe-Cu) allophane nanoclays the COD removal decreased with the amount of copper oxide in the catalyst, achieving an 80% COD removal with FeCu catalyst. These results showed the synergetic effect between the Fe and Cu ions present in the bimetallic (Fe-Cu) allophane nanoclays. Similarly, when the reactions were performed at initial pH 5.5 the phenol conversion was near 100% after 4 h for Fe-allophane and bimetallic (Fe-Cu) allophane with lower copper content. In the bimetallic (Fe-Cu) allophane clays the leaching of iron and copper into the solution was less than 1.25 mg/L and 0.638 mg/L, respectively, indicative of the high stability of the bimetallic (Fe-Cu) allophane catalysts.
机译:采用两步湿法浸渍法,以不同的Fe / Cu比合成了双金属(Fe-Cu)脲铝烷纳米粘土。研究了双金属(Fe-Cu)铝脲烷在不同初始pH(3.0和5.5)下通过非均相电Fenton反应(HEF)催化苯酚氧化的催化活性,并与Fe-铝脲烷和Cu-铝脲烷催化剂进行了比较。用双金属铝脲烷纳米粘土改性的玻璃碳电极用作工作电极。 FTIR,SEM,X射线衍射,XPS,Mössbauer光谱和N吸附-脱附用于表征催化剂,并表明形成了由氧化铁物质稳定的小氧化铜颗粒。对于所有双金属(Fe-Cu)铝脲烷纳米粘土,在不到2小时的反应后,通过HEF工艺进行的苯酚转化率均接近100%,呈指数衰减。 Cu-Allophane和Fe-Allophane的化学需氧量(COD)去除率低于47%,而双金属(Fe-Cu)Allophane纳米粘土的COD去除率随催化剂中氧化铜的含量而降低, FeCu催化剂可实现80%的COD去除率。这些结果表明在双金属(Fe-Cu)铝脲烷纳米粘土中存在的Fe和Cu离子之间具有协同作用。类似地,当反应在初始pH 5.5下进行时,具有较低铜含量的Fe-Allophane和双金属(Fe-Cu)Allophane在4小时后苯酚转化率接近100%。在双金属(Fe-Cu)铝脲烷粘土中,铁和铜向溶液中的浸出分别小于1.25 mg / L和0.638 mg / L,表明双金属(Fe-Cu)铝脲烷催化剂具有很高的稳定性。

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