2021
DOI: 10.3390/catal11091037
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Optimized Synthesis Routes of MnOx-ZrO2 Hybrid Catalysts for Improved Toluene Combustion

Abstract: In this contribution, the three Mn-Zr catalysts with MnxZr1−xO2 hybrid phase were synthesized by two-step precipitation route (TP), conventional coprecipitation method (CP) and ball milling process (MP). The components, textural and redox properties of the Mn-Zr hybrid catalysts were studied via XRD, BET, XPS, HR-TEM, H2-TPR. Regarding the variation of synthesis routes, the TP and CP routes offer a more obvious advantage in the adjustment of the concentration of MnxZr1−xO2 solid solution compared to the MP pro… Show more

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Cited by 6 publications
(16 citation statements)
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“…The positive synergistic effect due to the addition of a small amount of zirconia on the MnO x and the solar multi-catalytic approach led to obtaining a low toluene T 90 , considering the absence of noble metals co-catalysts. The obtained value of T 90 with the MnO x -5% ZrO 2 sample (180 • C) is comparable or lower with respect to the other MnO xbased catalysts reported in the literature (in the range 200 • C-270 • C considering an initial toluene concentration of 1000 ppm [20,37]).…”
Section: Photocatalytic Thermocatalytic and Photothermo-catalytic Removal Of Toluene In Gas Phasesupporting
confidence: 64%
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“…The positive synergistic effect due to the addition of a small amount of zirconia on the MnO x and the solar multi-catalytic approach led to obtaining a low toluene T 90 , considering the absence of noble metals co-catalysts. The obtained value of T 90 with the MnO x -5% ZrO 2 sample (180 • C) is comparable or lower with respect to the other MnO xbased catalysts reported in the literature (in the range 200 • C-270 • C considering an initial toluene concentration of 1000 ppm [20,37]).…”
Section: Photocatalytic Thermocatalytic and Photothermo-catalytic Removal Of Toluene In Gas Phasesupporting
confidence: 64%
“…In both the mixed oxides, the signals related to ZrO2 are absent, probably due to the low amount of hosted oxide and/or to the good dispersion of zirconium oxide on manganese oxide. The ion radius of Zr 4+ (0.84 Å) is similar of Mn 2+ (0.83 Å), and this can favour the ionic exchange between these cations [20,23]. On the contrary, the smaller radius of Mn 3+ (0.64 Å) makes the Zr 4+ /Mn 3+ exchange more difficult.…”
Section: Structural Morphological Textural and Optical Properties Of The Samplesmentioning
confidence: 99%
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