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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 >Gas hydrodynamics of a novel MTO high-speed loop reactor: The bypassing and backmixing along with average residence time
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Gas hydrodynamics of a novel MTO high-speed loop reactor: The bypassing and backmixing along with average residence time

机译:新型MTO高速环堆的气体流体动力学:绕过和背光以及平均停留时间

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摘要

Methanol to olefins (MTO) is an attractive technique. In order to optimize the hydrodynamics of gas-solid phase and the olefins yield and selectivity, a novel MTO high-speed loop reactor (HSLR) is developed. The gas hydrodynamics of bypassing, backmixing and average residence time are explored in a large scale cold model setup. In addition, comparison between the gas backmixing as well as gas residence time in the HSLR and that in the traditional non-draft-tube fluidized bed or free fluidized bed (FFB) is made. Experimental results show that the gas bypassing fractions are closely related to the gas velocity. Based on the axial profiles of Dga and Peclet number, the gas backmixing in the HSLR is much lower than that in the FFB. Moreover, the average gas residence time in the HSLR is considerably short, indicating distinct transport capacity of gas. Furthermore, the proper operating conditions in the HSLR are given. (C) 2019 Published by Elsevier B.V.
机译:甲醇向烯烃(MTO)是一种有吸引力的技术。 为了优化气体固相的流体动力学和烯烃产率和选择性,开发了一种新型MTO高速回路反应器(HSLR)。 在大规模的冷模型设置中探讨了旁路,背悬和平均停留时间的气体流体动力学。 另外,在HSLR中的气体反光和气体停留时间之间进行比较,并且在传统的非拔射管流化床或自由流化床(FFB)中进行比较。 实验结果表明,气体旁路馏分与气体速度密切相关。 基于DGA和PECLED编号的轴向剖面,HSLR中的气体背混在FFB中远低得多。 此外,HSLR中的平均气体停留时间很短,表明气体的不同传输能力。 此外,给出了HSLR中的正确操作条件。 (c)2019年由elestvier b.v发布。

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