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高级旋转流体力学生化反应器在中试规模下的消毒特性。

Disinfection characteristics of an advanced rotational hydrodynamic cavitation reactor in pilot scale.

机构信息

Key Laboratory of High Efficiency and Clean Mechanical Manufacture, Ministry of Education, School of Mechanical Engineering, Shandong University, Jinan 250061, China; National Demonstration Center for Experimental Mechanical Engineering Education, Shandong University, Jinan 250061, China.

School of Public Health, Shandong University, Jinan 250061, China.

出版信息

Ultrason Sonochem. 2021 May;73:105543. doi: 10.1016/j.ultsonch.2021.105543. Epub 2021 Apr 3.

Abstract

Hydrodynamic cavitation is a promising technique for water disinfection. In the present paper, the disinfection characteristics of an advanced hydrodynamic cavitation reactor (ARHCR) in pilot scale were studied. The effects of various flow rates (1.4-2.6 m/h) and rotational speeds (2600-4200 rpm) on the removal of Escherichia coli (E. coli) were revealed and analyzed. The variation regularities of the log reduction and reaction rate constant at various cavitation numbers were established. A disinfection rate of 100% was achieved in only 4 min for 15 L of simulated effluent under 4200 rpm and 1.4 m/h, with energy efficiency at 0.0499 kWh/L. A comprehensive comparison with previously introduced HCRs demonstrates the superior performance of the presented ARHCR system. The morphological changes in E. coli were studied by scanning electron microscopy. The results indicate that the ARHCR can lead to serious cleavage and surface damages to E. coli, which cannot be obtained by conventional HCRs. Finally, a possible damage mechanism of the ARHCR, including both the hydrodynamical and sonochemical effects, was proposed. The findings of the present study can provide strong support to the fundamental understanding and applications of ARHCRs for water disinfection.

摘要

水动力空化是一种有前途的水消毒技术。本文研究了先进水动力空化反应器(ARHCR)在中试规模下的消毒特性。揭示并分析了不同流速(1.4-2.6 m/h)和转速(2600-4200 rpm)对大肠杆菌(E. coli)去除的影响。建立了在不同空化数下对数减少和反应速率常数的变化规律。在 4200 rpm 和 1.4 m/h 的条件下,对于 15 L 的模拟废水,仅需 4 分钟即可达到 100%的消毒率,能量效率为 0.0499 kWh/L。与之前介绍的 HCR 进行全面比较,证明了所提出的 ARHCR 系统具有优越的性能。通过扫描电子显微镜研究了大肠杆菌的形态变化。结果表明,ARHCR 可导致大肠杆菌严重的断裂和表面损伤,而传统的 HCR 则无法实现。最后,提出了一种可能的 ARHCR 破坏机制,包括水动力和超声化学效应。本研究的结果可为 ARHCR 用于水消毒的基础理解和应用提供有力支持。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f50a/8059091/3e2132973627/ga1.jpg

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