Feature of catalysis on bimetallic alloys Zr with V, Mo, and Fe in the reaction of methanol oxidation

Feature of catalysis on bimetallic alloys Zr with V, Mo, and Fe in the reaction of methanol oxidation

Catalytic behaviors of bimetallic catalysts-alloys of zirconium with vanadium, molybdenum, and iron was investigated in the oxidative dehydrogenation of methanol. The conditions for the formation of the catalyst’s active surface were revealed. The conversionof methanol into formaldehyde, dimethyl ether, and dimethoxymethane on bimetallic catalysts was studied. The characterization of catalysts was performed by XRD, XPS, and SEM. It was shown that the activity of samples increases after $О_2+ Н_2$ treatment and was associated with segregation of the active components of alloys (V, Mo) on the surface of catalysts and realization of their optimal oxidation state under catalysis conditions.

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  • 1. Nierhoff A, Conradsen C, McCarthy D, Johonsson TP, Chorkendoff I. Adsorbate induced surface alloy formation investigated by near ambient pressure X-ray photoelectron spectroscopy. Catalysis Today: Heterogeneous Catalysis and Surface Science 2015; 244: 130-135. doi: 10.1016/j.cattod.2014.06.024
  • 2. Vedyagin AA, Shubin YV, Volodin AM, Stoyanovskii VO, Kenzhin RM et al. Stabilization of active sites in alloyed Pd-Rh catalysts on$Al_2O_3$ support. Catalysis Today 2014; 238: 80-86. doi: 10.1016/j.cattod.2014.02.056
  • 3. Brailovsky SM., Temkin ON, Trofimov IV. Oxidation of alcohols on metals of the copper subgroup. Problems of kinetics and catalysis. Digest of Articles, Moscow, “Science” 1985; 19: 146-175. (in Russian)
  • 4. Millar G, Collins M. Industrial production of formaldehyde using polycrystalline Ag- catalyst. Industrial & Engineering Chemistry Research 2017; 56 (33): 9247-9265. doi: 10.1021/acs.iecr.7b02388
  • 5. Zhukov AB, Rumyantsev RN, Ilyin AA, Ilyin AP. Oxidation of methanol to formaldehyde at industrial conditions using various Fe-Mocatalysts. Chemistry and Chemical Technology 2016; 59 (5): 65-71. (in Russian)
  • 6. Sun J, Yang G, Yoneyama Y, Tsubaki N. Catalysis chemistry of DME synthesis. ACS Catalysis 2014; 4 (10): 3346-3356. doi: 10.1021/ cs500967j
  • 7. Bateny H, Able C. Development of heterogeneous catalysts for the dehydration of methanol to DME. Catalysis in Industry 2018; 10 (4): 6-30. (in Russian)
  • 8. Nikonova OA, Capron M, Fang G, Faye J, Gulaim A. et.al. Novel approach rhenium oxide catalysts for selective oxidation to DMM. Journal of Catalysis 2011; 279 (2): 310-318. doi: 10.1016/j.jcat.2011.01.028
  • 9. Faye J, Capron M, Takahashi A, Paul S, Katrynoik B, et.al. Effect of oxomolybdate species dispersion on direct methanol oxidation to dimethoxymethane over MoOx/$TiO_2$ catalysts. Energy Science & Engineering 2015; 3 (2): 115-125. doi: 10.1002/ese3.53
  • 10. Chen S, Ma X. The role of oxygen species in the selective oxidation of methanol to dimethoxymethane over VOx /TS-1 catalyst. Journal of Industrial and Engineering Chemistry 2017; 45: 296-300. doi: 10.1016/j.jiec.2016.09.037
  • 11. Meng Y, Wang T, Chen S, Zhao Y, Ma X et al. Selective oxidation of methanol to DMM on $V_2 O_5–MoO_3/γ–Al_2O_3$ catalysts. Applied Catalysis B: Environmental 2014; (160): 161-172. doi: 10.1016/j.apcatb.2014.05.008
  • 12. Zhao H, Bennici S, Shen J, Auroux A. Nature of surface sites of $V_2O_5–TiO_2/SO_4 ^{2-}$catalysts and reactivity in selective oxidation of methanol to DMM. Journal of Catalysis 2010; 272 (1): 176-189. doi: 10.1016/j.jcat.2010.02.028
  • 13. Wang G, Xu H, Lu K, Ding Z et.al. One-pot synthesis of $VOx/Al_2O_3$ as efficient catalysts for propane dehydrogenation. Turkish Journal of Chemistry 2020; 44 (1): 112-124. doi: 10.3906/kim-1907-53
  • 14. Ellert OG, Tsodikov MV, Nikolaev SA, Novotortsev MV. Bimetallic nanoalloys in heterogeneous catalysis of industrially important reactions - synergism and structural organization of active components. Russian Chemical Reviews 2014; 83 (8): 718-732.
  • 15. Forzatti, P, Tronconi E, Elmi AS, Busca G. Methanol oxidation over vanadia-based catalysts. Applied Catalysis A General 1997; 157: 387- 408. doi: 10.1016/S0926-860X(97)00026-4
  • 16. Al-Ghamdi SA, De Lasa H. Propylene production via propane oxidative dehydrogenation over $VOx/γ-Al_2 O_3$ catalyst. Fuel 2014; 128: 120-140. doi: 10.1016/S0926-860X(97)00026-4
  • 17. Tatibouet JM. Methanol oxidation as a catalytic surface probe. Applied Catalysis A General 1997; 148: 213-252. doi: 10.1016/S0926- 860X(96)00236-0
  • 18. Olthof B, Khodakov A, Bell AT, Iglesia E. Effects of support composition and pretreatment conditions on the structure of vanadia dispersedon $SiO_2, Al_2O_3, TiO_2, ZrO_2 and HfO_2$. Journal of Physical Chemistry B 2000; 104: 1516-1528. doi: 10.1021/jp9921248
  • 19. Chen S, Ma F, Xu A, Wang L, Chen F, Lu W. Study on the structure, acidic properties of V-Zr nanocrystal catalysts in the oxidative dehydrogenation of propane. Applied Surface Science 2014; 289: 316-325. doi: 10.1016/j.apsusc.2013.10.158
  • 20. Solsona B, Dejoz A, Garcia T, Concepción P, Lopez Nieto JM et al. Molybdenum-vanadium supported on mesoporous alumina catalysts for the oxidative dehydrogenation of ethane. Catalysis Today 2006; 117: 228-233. doi: 10.1016/j.cattod.2006.05.025
  • 21. Lin X, Hoel CA, Sachtler WMH, Poeppelmeier KR, Weitz E. Oxidative dehydrogenation (ODH) of ethane with $O_2$ as oxidant on selected transition metal-loaded zeolites. Journal of Catalysis 2009; 265: 54-62. doi: 10.1016/j.jcat.2009.04.007
  • 22. Blasco T, López Nieto JM. Oxidative dyhydrogenation of short chain alkanes on supported vanadium oxide catalysts. Applied Catalysis A: General 1997: 157 (1-2): 117-142. doi: 10.1016/S0926-860X(97)00029-X
  • 23. Wachs IE, Chen Y, Jehng JM, Briand LE, Tanaka T. Molecular structure and reactivity of the group V metal oxides. Catalysis Today 2003; 78: 13-24. doi: 10.1016/S0920-5861(02)00337-1
  • 24. Shah PR, BaldychevI, Vohs JM, Gorte RJ. Comparison of redox isotherms for Vanadia supported on zirconia and titania. Applied Catalysis A 2009; 361: 13-17. doi: 10.1016/j.apcata.2009.03.036
  • 25. Baldychev I, Gorte RJ, Vohs JM. The impact of redox properties on the reactivity of $V_2O_5/Al_2O_3$ catalysts. Journal of Catalysis 2010; 269: 397-403. doi: 10.1016/j.jcat.2009.11.022
  • 26. Hess, C. Nanostructured vanadium oxide model catalysts for selective oxidation reactions. ChemPhysChem 2009; 10: 319-326. doi: 10.1002/cphc.200800585
  • 27. Haber J, Witko M, Tokarz R. Vanadium pentoxide I. Structures and properties. Applied Catalysis A: General 1997; 157 (1-2): 3-22. doi: 10.1016/S0926-860X(97)00017-3
  • 28. Israei E, Wachs B, Weckhuysen M. Structure and reactivity of surface vanadium oxide species on oxide supports. Applied Catalysis A: General 1997; 157 (1-2): 67-90. doi: 10.1016/S0926-860X(97)00021-5
  • 29. Komandur VR, Kondakindi C, Reddy R, Kishan J, Niemantsverdriet W et al. Structure and catalytic properties of molybdenum oxide catalysts supported on zirconia Journal of Catalysis 2004; 226 (1): 283-291. doi: 10.1016/j.jcat.2004.04.028
  • 30. Ranga C, Lodeng R, Alexiadis VI, Rajkhova T, Detavernier C et al. Effect of composition and preparation of supported $MoO_3$ catalysts for anisole hydride oxygenation. Chemical Engineering Journal 2018; 335 (1): 120-132. doi: 10.1016/j.cej.2017.10.090
  • 31. Meng Y, Wang T, Shuang C, Zhao Y, Ma X et al. Selective oxidation of methanol to dimethoxymethane on $V_2 O_5–MoO_3/γ-Al_2O_3$ catalysts Applied Catalysis B: Environmental 2014, 160-161: 161-172. doi: 10.1016/j.apcatb.2014.05.008
  • 32. Efendi AG, Magerramova LG, Aliyeva AM, Kojarova LI, Melikova IH. Catalysis for selective oxidation of methanol to formaldehyde and dimethoxymethane. Science Technical Journal, Scientific Works 2018; 4: 122-127 (in Azerbaijani).
  • 33. Alieva AM, Efendi AJ, Magerramova LG, Babayev EM, Kozharova LI et al. Ways of production alternative kinds of fuels on the basis of methanol. Oil Refining and Petrochemistry 2019; 2: 27-32 (In Russian).
Turkish Journal of Chemistry-Cover
  • ISSN: 1300-0527
  • Yayın Aralığı: Yılda 6 Sayı
  • Yayıncı: TÜBİTAK
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