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Vanadium-Based Mixed-Oxide Catalysts for Selective Oxidation of Hydrogen Sulfide to Sulfur

机译:钒基混合氧化物催化剂,用于将硫化氢选择性氧化为硫

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The selective oxidation of hydrogen sulfide to sulfur was studied over three vanadium-based mixed-oxide catalysts, including the binary oxides of vanadium-molybdenum, vanadium-bismuth, and vanadium—magnesium. The catalytic reaction was carried out in a fixed-bed reactor in the temperature range 200-300℃. Strong synergistic phenomena in catalytic activity and selectivity were observed for the binary oxides. Under identical reaction conditions, the performances of the binary oxide catalysts within certain composition ranges were superior to those of the corresponding single-oxide catalysts. These synergistic phenomena suggest that the new compounds Mo_6V_9O_(40), BiVO_4/Bi_4V_6O_(21), and MgV_2O formed in the binary oxides are much better than the corresponding single-oxide catalysts for the selective oxidation of hydrogen sulfide. The maximum sulfur yield obtained with the vanadium-based binary mixed-oxide catalysts was 97%, which was much higher than that obtained with pure vanadium oxide (78%).
机译:在三种钒基混合氧化物催化剂上研究了硫化氢选择性氧化为硫的方法,其中包括钒钼,钒铋和钒镁的二元氧化物。催化反应在200-300℃的固定床反应器中进行。观察到二元氧化物在催化活性和选择性方面有很强的协同作用。在相同的反应条件下,在某些组成范围内的二元氧化物催化剂的性能优于相应的单氧化物催化剂。这些协同现象表明,二元氧化物中形成的新化合物Mo_6V_9O_(40),BiVO_4 / Bi_4V_6O_(21)和MgV_2O比相应的单氧化物催化剂对硫化氢的选择性氧化要好得多。用钒基二元混合氧化物催化剂获得的最大硫收率为97%,比用纯钒氧化物(78%)获得的高得多。

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