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Method for Determining Optimum Operational Conditions of Microbubble Scrubber Using Image Processing

机译:使用图像处理确定微泡洗涤器的最佳操作条件的方法

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摘要

This paper presents an image-processing-based model for calculating the interfacial-area concentration (IAC) of a low-pressure microbubble (LPMB) scrubber, which facilitates the determination of operational conditions of the scrubber via flow-pattern analysis. The LPMB scrubber maximizes the interfacial area of two-phase systems using the bubbly flow. Microbubbles have received attention due to their microscopic sizes, high residence time, and high mass-transfer efficiency. The LPMB scrubber maintains a negative outlet pressure to generate gas flow, which in turn generates microbubbles interrupting gas flow with three blocking plates in the atomizer. This gas flow generates a bubbly flux with different bubble sizes. To obtain bubble characteristics, we analyzed 20 atomizer images where this complex flux occurs. Bubble size, number of bubbles, gas void fraction, and IAC were calculated using an Open-CV Python algorithm. To validate the most appropriate bubble flow patterns, case studies were conducted at pressure difference of 240, 360, and 450 mmAq. The 360 mmAq condition had the lowest percentage of bubbles smaller than 50 mu m, but the total number of bubbles, void fraction, and IAC were the highest. The results obtained in this study confirm that using an LPMB scrubber in an oxidizing solution facilitates reductions of 92.6, 93.9, and 99.9% in NOx, SOx, and dust, respectively. These results could be used to validate the bubble reactivity of other two-phase systems intended for commercial and practical applications.
机译:本文介绍了一种基于图像处理的模型,用于计算低压微泡(LPMB)洗涤器的界面面积浓度(IAC),这有利于通过流动模式分析确定洗涤器的操作条件。 LPMB洗涤器利用气泡流动最大化两相系统的界面区域。由于它们的微观尺寸,高停留时间和高的传质效率,微泡已经受到关注。 LPMB洗涤器保持负面出口压力以产生气流,这又产生了中断气流的微泡,其中三个封端板在雾化器中。这种气流产生具有不同气泡尺寸的气泡通量。为了获得气泡特征,我们分析了20个雾化器图像,其中发生这种复杂的助熔剂。使用Open-CV Python算法计算泡沫尺寸,气泡,气体空隙率和IAC。为了验证最合适的泡沫流动模式,在240,360和450 mMAQ的压力差下进行案例研究。 360 mMAQ条件具有小于50μm的最低百分比,但是气泡总数,空隙部分和IAC是最高的。本研究中获得的结果证实,在氧化溶液中使用LPMB洗涤器,促进NOx,SOX和灰尘中的92.6,93.9和99.9%的降低。这些结果可用于验证用于商业和实际应用的其他两相系统的气泡反应性。

著录项

  • 来源
    《Journal of environment informatics》 |2021年第2期|83-92|共10页
  • 作者单位

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea|Yonsei Univ Dept Chem & Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea|Yonsei Univ Dept Chem & Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea|Yonsei Univ Dept Chem & Biomol Engn 50 Yonsei Ro Seoul 03722 South Korea;

    Hankook Engn Co Ltd 252 Gokcheon Geomdan Ro Ulsan 44965 South Korea;

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea;

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea;

    Korea Inst Ind Technol Green Mat & Proc R&D Grp Ulsan 44413 South Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    air pollutant removal; image processing; interfacial-area concentration; low-pressure microbubble; two-phase flow;

    机译:空气污染物去除;图像处理;界面面积浓度;低压微泡;两相流量;

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