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Precious metal catalysts in the clean-up of biomass gasification gas part 2: Performance and sulfur tolerance of rhodium based catalysts

机译:生物质气化气体净化中的贵金属催化剂第2部分:铑基催化剂的性能和耐硫性

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Rh, Pt, and Pt-Rh catalysts on modified commercial zirconia support (m-ZrO2) were screened for the clean-up of gasification gas from tar, methane, and ammonia both in the absence and presence of H2S while varying the Rh metal content from 0.5 to 5 w-%. Our goal was to optimize the composition of the Rh/m-ZrO2 catalyst in view of the production of ultra clean gas applicable for liquid biofuels synthesis. In the presence of 100 ppm sulfur, increasing Rh concentration from 0.5 to 5 w-% did not greatly improve the activity of the catalyst. The bimetallic Pt/Rh/m-ZrO2 catalyst was also less active than the 0.5 w-% Rh/m-ZrO2 catalyst. Furthermore, the Rh/m-ZrO2 catalyst regained its performance at the set point of 800 °C when the sulfur feed was turned off even after exposures to 500-1000 ppm sulfur. Our data allow us to suggest that in the presence of sulfur, the active sites responsible for the reforming reactions are poisoned, but less impact occurs on sites responsible for oxidation reactions. Furthermore, the screening experiments allow to suggest that the Rh/m-ZrO2 catalyst could be applicable to hot gas cleaning in the presence of sulfur (>50 ppm) at above 800 °C using a moderate gas hourly space velocity of approximately 3400 1/h. Since biomass gasification gas generally contains sulfur, the 0.5 w-% Rh/m-ZrO2 catalyst could be a promising option for gasification gas clean-up applications at temperatures above 800 °C where it reduces tar to very low levels.
机译:筛选了在改性的商业氧化锆载体(m-ZrO2)上的Rh,Pt和Pt-Rh催化剂,以在不存在和存在H2S的情况下,在改变Rh金属含量的情况下,从焦油,甲烷和氨中净化气化气。从0.5到5 w-%。考虑到生产适用于液体生物燃料合成的超纯净气体,我们的目标是优化Rh / m-ZrO2催化剂的组成。在100ppm硫的存在下,Rh浓度从0.5增加到5w-%并没有大大提高催化剂的活性。双金属Pt / Rh / m-ZrO2催化剂的活性也低于0.5 w-%Rh / m-ZrO2催化剂。此外,即使在暴露于500-1000 ppm硫的情况下关闭硫源,Rh / m-ZrO2催化剂也能在800℃的设定点恢复其性能。我们的数据使我们建议,在存在硫的情况下,负责重整反应的活性部位会中毒,但对负责氧化反应的部位的影响较小。此外,筛选实验表明,Rh / m-ZrO2催化剂可适用于在800°C以上的硫(> 50 ppm)存在下使用大约3400 1 /的中等气体时空速度进行热气净化。 H。由于生物质气化气体通常包含硫,因此对于在高于800°C的温度下将焦油降至极低水平的气化气体净化应用而言,0.5 w%Rh / m-ZrO2催化剂可能是一个有前途的选择。

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