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首页> 外文期刊>Applied Surface Science >Fe2O3-loaded activated carbon fiber/polymer materials and their photocatalytic activity for methylene blue mineralization by combined heterogeneous-homogeneous photocatalytic processes
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Fe2O3-loaded activated carbon fiber/polymer materials and their photocatalytic activity for methylene blue mineralization by combined heterogeneous-homogeneous photocatalytic processes

机译:Fe2O3负载的活性炭纤维/聚合物材料及其对非均相-均相光催化合成亚甲基蓝的光催化活性

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Fe2O3-supported activated carbon felts (Fe-ACFTs) were prepared by impregnating the felts consisted of activated carbon fibers (ACFs) with either polyester fibers (PS-A20) or polyethylene pulp (PE-W15) in Fe(III) nitrate solution and calcination at 250 degrees C for 1 h. The prepared Fe-ACFTs with 31-35 wt% Fe were characterized by N-2-adsorption, scanning electron microscopy, and X-ray diffraction. The Fe-ACFT(PS-A20) samples with 5-31 wt% Fe were microporous with specific surface areas (S-BET) ranging from 750 to 150 m(2)/g, whereas the Fe-ACFT(PE-W15) samples with 2-35 wt% Fe were mesoporous with S-BET ranging from 830 to 320 m2/g. The deposition of iron oxide resulted in a decrease in the SBET and methylene blue (MB) adsorption capacity while increasing the photodegradation of MB. The optimum MB degradation conditions included 0.98 mM oxalic acid, pH =3, 0.02-0.05 mM MB, and 100 mg/L photocatalyst. The negative impact of MB desorption during the photodegradation reaction was more pronounced for mesoporous PE-W15 samples and can be neglected by adding oxalic acid in cyclic experiments. Almost complete and simultaneous mineralization of oxalate and MB was achieved by the combined heterogeneous-homogeneous photocatalytic processes. The leached Fe ions in aqueous solution [Fe-f(3+]) were measured after 60min for every cycle and found to be about 2 ppm in all four successive cycles. The developed photocatalytic materials have shown good performance even at low content of iron oxide (2-5 wt% Fe-ACFT). Moreover, it is easy to re-impregnate the ACF when the content of iron oxide is reduced during the cyclic process. Thus, low leaching of Fe ions and possibility of cyclic usage are the advantages of the photocatalytic materials developed in this study. (C) 2017 Elsevier B.V. All rights reserved.
机译:Fe2O3负载的活性炭毡(Fe-ACFTs)通过将由活性炭纤维(ACFs)组成的毡浸渍在硝酸Fe(III)溶液中的聚酯纤维(PS-A20)或聚乙烯纸浆(PE-W15)中制成,在250摄氏度下煅烧1小时。通过N-2-吸附,扫描电子显微镜和X射线衍射对制备的具有31-35wt%的Fe的Fe-ACFT进行表征。具有5-31 wt%铁的Fe-ACFT(PS-A20)样品具有微孔,比表面积(S-BET)为750至150 m(2)/ g,而Fe-ACFT(PE-W15)铁含量为2-35%(重量)的样品具有830-320 m2 / g的S-BET介孔。氧化铁的沉积导致SBET和亚甲基蓝(MB)吸附能力下降,同时增加MB的光降解。最佳的MB降解条件包括0.98 mM草酸,pH = 3、0.02-0.05 mM MB和100 mg / L光催化剂。对于中孔PE-W15样品,在光降解反应过程中MB解吸的负面影响更为明显,在循环实验中通过添加草酸可以忽略不计。通过结合非均相-均相光催化过程,草酸盐和MB几乎同时完成了矿化作用。在每个循环60分钟后测量水溶液[Fe-f(3+])中的浸出Fe离子,发现在所有四个连续循环中浸出的Fe离子约为2 ppm。所开发的光催化材料即使在低含量的氧化铁(2-5 wt%Fe-ACFT)下也表现出良好的性能。而且,当在循环过程中减少氧化铁的含量时,容易重新浸渍ACF。因此,Fe离子的低浸出和循环使用的可能性是本研究开发的光催化材料的优势。 (C)2017 Elsevier B.V.保留所有权利。

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