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首页> 外文期刊>Journal of Chemical Engineering of Japan >Development of a Ni-Loaded Brown Coal Char Catalyst for Fluidized Bed Biomass Gasification at Low Reaction Temperatures
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Development of a Ni-Loaded Brown Coal Char Catalyst for Fluidized Bed Biomass Gasification at Low Reaction Temperatures

机译:用于低反应温度下流化床生物质气化的镍负载棕煤焦催化剂的开发

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References(28) Cited-By(8) The use of nickel-loaded brown coal char (Ni/BCC) as a catalyst for tar reforming has been studied under mild conditions in a laboratory-scale fluidized bed gasifier using steam as the gasifying agent and nitrogen as the product gas carriers. Characterization of the catalyst was performed in a fixed-bed reactor under various conditions such as Ni/BCC particle size in the range of 0.5 to 2 mm and pyrolysis temperature in the range of 823 to 1023 K in order to investigate the effect of both catalyst particle size and pyrolysis temperature on crystallite size of Ni/BCC. The Ni/BCC catalyst was consumed at various steam feed rate so as to determine the effect of steam feed rate on the size of the catalyst. The XRD pattern of the catalyst showed that the size of the Ni particles increases as the particle size of the catalyst decreases, pyrolysis temperature increases, and steam feed rate increases. SEM images and BET surface area were used to characterize the surface structure and surface area of the Ni/BCC catalyst, respectively. The space velocity and catalytic tar reforming temperature as a function of gas yields were investigated. The catalyst showed high and stable catalytic activity and produced a high-quality product gas with space velocities of 10000 and 4000 h−1 at 923 and 873 K, respectively.
机译:参考文献(28)(8)被引用的载有镍的褐煤焦(Ni / BCC)作为焦油重整的催化剂已在温和条件下在实验室规模的流化床气化炉中使用蒸汽作为气化剂进行了研究和氮气作为产品气体载体。在固定床反应器中,在各种条件下(例如Ni / BCC粒度在0.5至2 mm范围内,热解温度在823至1023 K范围内)进行催化剂的表征,以研究两种催化剂的效果Ni / BCC的晶粒尺寸和热解温度对微晶尺寸的影响。 Ni / BCC催化剂以各种蒸汽进料速率消耗,从而确定蒸汽进料速率对催化剂尺寸的影响。催化剂的XRD图谱表明,Ni颗粒的尺寸随着催化剂的颗粒尺寸的减小,热解温度的升高以及蒸汽进料速率的增加而增大。 SEM图像和BET表面积分别用于表征Ni / BCC催化剂的表面结构和表面积。研究了空速和催化焦油重整温度随气体产率的变化。该催化剂显示出高而稳定的催化活性,并在923 K和873 K处分别产生了10000和4000 h-1的空速的高质量产物气。

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