Aimin Wang
Beijing Jiaotong University
14 Papers
26 Citations
Aimin Wang is an academic researcher from Beijing Jiaotong University. The author has contributed to research in topics: Chemistry & Mineralization (soil science). The author has an hindex of 10, co-authored 14 publications.
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Papers
Partial degradation of levofloxacin for biodegradability improvement by electro-Fenton process using an activated carbon fiber felt cathode.
TL;DR: An ultra-performance liquid chromatography coupled with time-of-flight mass spectrometry was used to identify about eight aromatic intermediates formed in 60 min of EF treatment, and a plausible mineralization pathway for LEVO by EF treatment was proposed.
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Chitosan-derived nitrogen-doped carbon electrocatalyst for a sustainable upgrade of oxygen reduction to hydrogen peroxide in UV-assisted electro-Fenton water treatment
Giorgia Daniel,Yanyu Zhang,Yanyu Zhang,Sonia Lanzalaco,Federico Brombin,Tomasz Kosmala,Gaetano Granozzi,Aimin Wang,Enric Brillas,Ignasi Sirés,Christian Durante +10 more
TL;DR: The urgency to move from critical raw materials to highly available and renewable feedstock is currently driving the scientific and technical developments as discussed by the authors, within this context, the abundance of natural resources is abundant.
Electro-Fenton degradation of antibiotic ciprofloxacin (CIP): Formation of Fe3+-CIP chelate and its effect on catalytic behavior of Fe2+/Fe3+ and CIP mineralization
TL;DR: In this paper, the effect of the chelation of Fe 3+ with a fluoroquinolone (FQ) antibiotic ciprofloxacin (CIP) on the catalytic behavior of Fe 2+ /Fe 2+ and the degradation and mineralization of CIP in electro-Fenton (EF) process using activated carbon fiber (ACF) felt cathode was investigated.
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Efficient mineralization of antibiotic ciprofloxacin in acid aqueous medium by a novel photoelectro-Fenton process using a microwave discharge electrodeless lamp irradiation.
TL;DR: P plausible degradation sequences for CIP degradation in MDEL-PEF process including all detected products were proposed and suitable conditions were ascertained.
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Efficient mineralization of the antibiotic trimethoprim by solar assisted photoelectro-Fenton process driven by a photovoltaic cell.
TL;DR: A reasonable pathway of TMP degradation in SPEF process was proposed and 10 aromatic intermediates generated from hydroxylation, carbonylation and demethylation reactions were identified and two inorganic ions measured.
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