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Sonia Gil

Researcher at Claude Bernard University Lyon 1

Publications -  45
Citations -  1363

Sonia Gil is an academic researcher from Claude Bernard University Lyon 1. The author has contributed to research in topics: Catalysis & Catalytic oxidation. The author has an hindex of 18, co-authored 39 publications receiving 989 citations. Previous affiliations of Sonia Gil include University of Castilla–La Mancha & University of Lyon.

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Manganese oxide-based catalysts for toluene oxidation

TL;DR: In this article, four different catalysts based on manganese oxide were prepared: a perovskite (LaMnO 3 ), via sol-gel method; Mn 2 O 3, rapid method; and an octahedral molecular sieve (OMS-2) by two different preparation methods, via solid state and hydrothermal method.
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Catalytic oxidation of vinyl chloride emissions over Co-Ce composite oxide catalysts

TL;DR: In this article, a series of Co-Ce composite oxide catalysts with different molar ratios were evaluated for the catalytic oxidation of vinyl chloride present in air, which was selected as a model reaction for chlorinated VOCs abatement from industrial exhaust.
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Relationship between catalytic deactivation and physicochemical properties of LaMnO3 perovskite catalyst during catalytic oxidation of vinyl chloride

TL;DR: In this article, a LaMnO3 perovskite oxide catalyst prepared by co-precipitation was evaluated for vinyl chloride (VC) oxidation over consecutive catalytic cycles and in steady-state conditions.
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Gas phase hydrogenation of nitrobenzene over acid treated structured and amorphous carbon supported Ni catalysts

TL;DR: In this paper, carbon supported nickel (1%, w/w) catalysts have been prepared by deposition-precipitation with urea, and three supports were treated with HNO3+H2SO4 to generate oxygen-containing surface groups that served as anchoring sites for Ni introduction.
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Catalytic oxidation of 1,2-dichloropropane over supported LaMnOx oxides catalysts

TL;DR: In this article, the performance of LaMnO3 perovskites supported on Al2O3, TiO2, YSZ and CeO2 was evaluated in the catalytic oxidation of 1,2-dichloropropane (1,2)-DCP, which was selected as a model reaction for chlorinated volatile organic compounds (CVOCs) abatement.