Super-efficient Reduction of 4-nitrophenol Using Raw Pelagic Clays as Catalysts

Natural clays are often employed as substrates for heterogeneous catalysts. However, the direct use of raw clays as catalysts has received less research attention. The objective of the present study was to help fill this gap by investigating catalytic properties of raw pelagic clays (PC) collected f...

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Veröffentlicht in:Clays and clay minerals 2023-12, Vol.71 (6), p.745-759
Hauptverfasser: Zhang, Peiping, Liu, Tongtong, Sun, Xue, Liang, Qing, Zhang, Wei, Ning, Weikun, Li, Wenqing, Shi, Xuefa, Miao, Shiding
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Sprache:eng
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Zusammenfassung:Natural clays are often employed as substrates for heterogeneous catalysts. However, the direct use of raw clays as catalysts has received less research attention. The objective of the present study was to help fill this gap by investigating catalytic properties of raw pelagic clays (PC) collected from the Indian Ocean. The raw PC were discovered to be efficient catalysts in the reduction of 4-nitrophenol (4-NP) in the presence of NaBH 4 . The effects of parameters including pH values, dosages of PC, and initial concentration of 4-NP and NaBH 4 on the conversion or degradation rate of 4-NP have been investigated. The 4-NP was observed to be completely degraded within 480 s under conditions of 0.10 mM 4-NP, 25.0 mM NaBH 4 , and 0.20 g/L PC at an initial pH value of 7.0. The apparent rate constant was evaluated to be 27.53 × 10 –3  s –1 . Unlike previous pseudo-first order kinetics experiments, the induction period and degradation stages were observed to occur simultaneously during the PC catalysis. The S-shaped kinetics for 4-NP conversion was found to be perfectly matched by Fermi's function, and the enzyme-like catalysis by PC was appointed to describe the kinetics. Species of Fe(III), Mn(IV), and Mn(III) in PC were found to be essential, and were partly reduced to Fe(0) and Mn(II) by NaBH 4 in our reaction, contributing to rapid conversion of 4-NP to 4-aminophenol (4-AP). The raw PC was converted to magnetic PC (m-PC) particles, which made PC particles separate easily for cycling use. This discovery would also have applications in continuous flow-fluid catalysis.
ISSN:0009-8604
1552-8367
DOI:10.1007/s42860-023-00266-0