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光催化流化聚团动态尺度评估方法

耿启金 崔文文 刘莹 杨金美 王元芳 杨华蕾 丁加中 臧家兴 孙厚伟

化工进展2024,Vol.43Issue(12):6583-6588,6.
化工进展2024,Vol.43Issue(12):6583-6588,6.DOI:10.16085/j.issn.1000-6613.2024-1269

光催化流化聚团动态尺度评估方法

Evaluation method for dynamic scale of photocatalytic fluidized agglomerates

耿启金 1崔文文 2刘莹 1杨金美 1王元芳 1杨华蕾 2丁加中 2臧家兴 2孙厚伟2

作者信息

  • 1. 潍坊学院化学化工与环境工程学院,山东 潍坊 261061
  • 2. 潍坊鑫洋化工有限公司,山东 潍坊 261108
  • 折叠

摘要

Abstract

For the multi-phase fluidization coupling photocatalysis multi-scaled system,it is a hard nut to crack the evaluation of fluidized agglomerates dynamic scale only by the macro/micro-methods,since the fluidized agglomerates are dynamic,multi-scaled distributed,and changed instantaneously.In this case,the evaluation methods for dynamic scale of photocatalytic fluidized agglomerates in multi-phase fluidization were summarized from modern installment detection,mathematic model,and numerical simulation,evaluation and detection methods of bed voidage,etc.The superiority and limitations of these methods in practice were further analyzed.Finally,the creative thought and method of evaluation of fluidized agglomerates dynamic scale in photocatalysis coupling multi-phase fluidization system were put forward as follows.Combining microscopic information and macroscopic parameters in the multi-phase fluidization coupling photocatalysis multi-scaled system,using the key parameters,such as the number of molecules as the correlation index,by introducing the constructed collision probability function and bed voidage distribution function into the photocatalytic reaction kinetics equation containing fluidized agglomerate reactivity characteristic parameters,the novel agglomerate dynamic scale and photocatalytic reactivity integrated model concerning macro-and micro-information could be achieved by substitution method,iterative method,and fitting technology.

关键词

聚团/动态尺度/评估方法/多相流/光催化

Key words

agglomerate/dynamic scale/evaluation method/multi-phase fluidization/photocatalysis

分类

资源环境

引用本文复制引用

耿启金,崔文文,刘莹,杨金美,王元芳,杨华蕾,丁加中,臧家兴,孙厚伟..光催化流化聚团动态尺度评估方法[J].化工进展,2024,43(12):6583-6588,6.

基金项目

山东省科技型中小企业创新能力提升工程项目(2022TSGC1227) (2022TSGC1227)

国家重点研发计划(2021YFB3801400,2021YFB3801402). (2021YFB3801400,2021YFB3801402)

化工进展

OA北大核心CSTPCD

1000-6613

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