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A seven lumped kinetic model for industrial catalyst in DMTO process

机译:DMTO工艺中工业催化剂的七集总动力学模型

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Methanol to olefins (MTO) represents an important process for ethylene and propylene production from abundant natural materials, e.g. natural gas or biomass. This paper reports a lumped kinetic model for the MTO process over an industrial MTO catalyst, i.e. DMTO catalyst. The kinetic model takes into account seven lumps, i.e. methane, ethylene, propylene, propane, C-4, C-5(+) (including C-5, C-6 hydrocarbons and ethane) and coke. And a selective deactivation model was proposed to quantify the product selectivity and abrupt activity change in the MTO process. The kinetics under temperatures of 450 degrees C, 475 degrees C, and 490 degrees C, water/methanol mole ratio in the feed of 0, 2 and 4, and weight hour space velocity (WHSV) between 30 and 955 g(MeOH) g(cat)(-1) h(-1) was studied. Experiments with small WHSV of 2.1 and 2.8 g(MeOH) g(cat)(-1) h(-1) were further carried out to study the catalyst deactivation. The kinetic parameters were calculated by use of a nonlinear least square method, with special attention to the coke distribution along the axial distance. The proposed kinetic model is able to predict the product concentrations measured in the fixed bed reactor reasonable well, with relative deviations less than 5% for major species such as ethylene, propylene, butylenes and methanol. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:甲醇制烯烃(MTO)代表了从丰富的天然材料(例如甲烷)生产乙烯和丙烯的重要过程。天然气或生物质。本文报告了在工业MTO催化剂即DMTO催化剂上进行MTO过程的集总动力学模型。动力学模型考虑了七块,即甲烷,乙烯,丙烯,丙烷,C-4,C-5(+)(包括C-5,C-6碳氢化合物和乙烷)和焦炭。并提出了一种选择性失活模型来量化MTO过程中产物的选择性和突然的活性变化。在450摄氏度,475摄氏度和490摄氏度的温度下的动力学,进料中0、2和4的水/甲醇摩尔比以及30至955 g(MeOH)g的重时空速(WHSV) (cat)(-1)h(-1)进行了研究。用2.1和2.8 g(MeOH)g(cat)(-1)h(-1)的小WHSV进行的实验进一步研究了催化剂失活。通过使用非线性最小二乘法计算动力学参数,并特别注意焦炭沿轴向距离的分布。所提出的动力学模型能够很好地预测在固定床反应器中测得的产物浓度,对于主要物质如乙烯,丙烯,丁烯和甲醇,相对偏差小于5%。 (C)2015化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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