2017
DOI: 10.1016/j.apcatb.2017.02.032
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In-situ incorporation of iron-copper bimetallic particles in electrospun carbon nanofibers as an efficient Fenton catalyst

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Cited by 142 publications
(44 citation statements)
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“…The initial methyl orange concentration is usually considered one of the most critical parameters affecting the degradation rate . To elucidate the importance of the initial concentration, the methyl orange concentrations of 20 mg/l, 40 mg/l, and 60 mg/L were investigated.…”
Section: Resultsmentioning
confidence: 99%
“…The initial methyl orange concentration is usually considered one of the most critical parameters affecting the degradation rate . To elucidate the importance of the initial concentration, the methyl orange concentrations of 20 mg/l, 40 mg/l, and 60 mg/L were investigated.…”
Section: Resultsmentioning
confidence: 99%
“…The adsorption of a large amount of nitrogen at a relative higher than P/P0=0.5 leads to a obvious hysteresis loop, which was related to the existence of large mesopores and macropores among N‐HCNFs. Due to few presence of micropore volumes, no obvious adsorption in low pressure region . Brunauer‐emmet‐teller (BET) surface area of the obtained N‐HCNFs were 199.429, 377.502, 255.527 and 294.128 m 2 g −1 for PUP01, PUP02, PUP03 and PUP04.…”
Section: Figurementioning
confidence: 99%
“…They are used to activate H 2 O 2 and produce highly reactive and nonselective hydroxyl radicals ( • OH). In addition, the catalytic activity of the metal complex is enhanced when it is encapsulated in a support matrix such as a zeolite or mesoporous material , . Recently, heterogeneous copper catalysts have attracted considerable attention due to their ability to adapt to a wide range of pH, i.e., 10–12.…”
Section: Introductionmentioning
confidence: 99%
“…OH). In addition, the catalytic activity of the metal complex is enhanced when it is encapsulated in a support matrix such as a zeolite or mesoporous material [5,9]. Recently, heterogeneous copper catalysts have attracted considerable attention due to their ability to adapt to a wide range of pH, i.e., 10-12. Copper also decomposes H 2 O 2 in a Fenton-like reaction to give hydroxyl radicals, similar to iron-based catalysts.…”
Section: Introductionmentioning
confidence: 99%