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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >The effect of HZSM-5 catalyst particle size on gasoline selectivity in methanol to gasoline conversion process
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The effect of HZSM-5 catalyst particle size on gasoline selectivity in methanol to gasoline conversion process

机译:HZSM-5催化剂粒径对甲醇汽油选择性汽油转化过程的影响

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Experimental parameters were optimized by the analysis of variance (ANOVA) by D-optimal experimental design using three levels of pressure, temperature, weight hourly space velocity (WHSV) and catalyst particle size. The effects of the above parameters on the gasoline selectivity in methanol to gasoline conversion (MTG) were studied. Given the effect of catalyst particle size on MTG process, three HZSM-5 catalysts with particle sizes of 90, 2000 and 4000 nm were synthesized and the effect of this important parameter was studied along with those of other parameters. Fischer test results showed that catalyst particle size and temperature are the most and least effective parameters, respectively, in the ranges studied. The most important two-way interaction variable was that of temperature and WHSV. The optimal conditions to achieve maximum gasoline selectivity in maximum conversion are pressure = 9.40 bar, temperature = 392 degrees C, WHSV = 1 h(-1) and particle size = 994 nm. In addition, by implementing industrial conditions in the equation proposed by the experimental design, the optimal catalyst particle size was found to lie in the 2500-3300 nm range. (C) 2017 Elsevier B.V. All rights reserved.
机译:通过使用三个压力,温度,重量小时空速(WHSV)和催化剂粒度的D级别的实验设计,通过D-Optal实验设计的方差(ANOVA)分析进行了实验参数。研究了上述参数对甲醇中汽油选择性以汽油转化(MTG)的影响。鉴于催化剂粒度对MTG方法的影响,合成了具有90,2000和4000nm的三种HZSM-5催化剂,并研究了该重要参数的效果以及其他参数的效果。 Fischer测试结果表明,在所研究的范围内,催化剂粒度和温度分别是最且最低有效的参数。最重要的双向交互变量是温度和WHSV的变化。在最大转化率下实现最大汽油选择性的最佳条件是压力= 9.40巴,温度= 392℃,WHSV = 1 H(-1)和粒径= 994nm。此外,通过在实验设计提出的等式中实施工业条件,发现最佳催化剂粒度位于2500-3300nm范围内。 (c)2017 Elsevier B.v.保留所有权利。

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