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author:

王健 (王健.) [1] | 潘伶 (潘伶.) [2] | 王帅 (王帅.) [3] | 张昊 (张昊.) [4]

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Abstract:

传统的除尘系统脱除粗颗粒效率高,而脱除超细颗粒效率非常低,我国燃煤电厂脱除超细颗粒效率无法达到国家标准。湿式相变凝并技术是脱除烟气中超细颗粒的新技术。考虑颗粒性质以及通风因子,改进了超细颗粒凝并长大数学模型。将改进的数学模型写入颗粒群平衡模型中,模拟对比了超细颗粒在管束型相变凝并器和波纹板型相变凝并器内的长大特性及脱除效率。结果表明,两种相变凝并器都能明显提高超细颗粒的脱除效率,但管束型相变凝并器对烟气的冷却效果比波纹板型相变凝并器好。管束型相变凝并器能促进颗粒长大7.71倍,是波纹板型相变凝并器的1.4倍。管束型相变凝并器对颗粒数量浓度脱除效率高达64.7%,而波纹板型相变凝并器对颗粒数量浓度脱除效率为27.2%。

Keyword:

凝并长大 相变凝并器 脱除 超细颗粒 颗粒群平衡模型

Community:

  • [ 1 ] 福州大学机械工程及自动化学院,福建福州350108

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Source :

化工学报

ISSN: 0438-1157

Year: 2020

Issue: 11

Volume: 71

Page: 5090-5098

Cited Count:

WoS CC Cited Count:

SCOPUS Cited Count:

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count: -1

30 Days PV: 1

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